Multi-power-supply-module wood-heating ice-melting snow-melting water-making device
By designing a multi-power module diesel heating, melting, ice and snow water making device, the problems of high energy consumption, unenvironmental protection and unstable power supply in the existing technology are solved, and the portability, energy consumption reduction and water quality guarantee of the device are achieved, and the application needs of harsh areas such as plateaus are met.
Patent Information
- Application Number
- CN202510349202.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-24
- Publication Date
- 2025-05-13
AI Technical Summary
The existing ice and snow melting technology has problems such as high energy consumption, unenvironmental protection, unstable power supply and water quality pollution, and it is difficult to meet the needs of ice and snow melting water-making equipment in cold areas, especially harsh areas such as plateaus.
A multi-power module diesel heating, melting, ice and snow water making device is designed, adopting a modular design, including ice and snow melting components, diesel heating bracket components and purified water components, with multi-power adaptability, waste heat utilization and multi-stage water purification treatment functions.
It realizes the portability, energy consumption reduction, water quality assurance and multi-power adaptability of the device, and meets the application needs in harsh environments such as plateaus.
Smart Images

Figure CN119983643A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of ice-melting, snow-melting and water-making equipment, and in particular to a multi-power module diesel-heating ice-melting, snow-melting and water-making device. Background Art
[0002] In cold regions, obtaining fresh water resources has always been a challenging task. In low-temperature environments, a large amount of water resources exist in the form of ice and snow. How to efficiently, safely and environmentally friendly convert these ice and snow into usable water resources has become the focus of many scientific researchers and related industries for a long time.
[0003] Traditional ice and snow melting technologies mainly include open fire boiling ice and snow and electric heating snow melting. The operation method of open fire boiling ice and snow is extremely primitive. It is not only extremely inefficient, but also consumes a lot of time and manpower. There are serious fire safety hazards during the operation. In addition, the combustion process will produce a large amount of exhaust gas, which will cause serious pollution to the environment and is not in line with modern environmental protection concepts. Although electric heating snow melting is more convenient to operate than open fire, it faces the problem of excessive energy consumption. At a time when energy is becoming increasingly tight and costs are rising, this high-energy consumption technology has high application costs and poor economic efficiency. More importantly, electric heating snow melting is completely dependent on a stable power supply. Once the power supply in the area is unstable, such as in remote mountainous areas, the wild and other areas where power outages often occur, the technology cannot be used normally, which seriously limits its scope of application.
[0004] There are also many drawbacks in the application of existing wood-fired heating equipment in the field of ice and snow melting. First, its power supply stability is insufficient. In actual use scenarios, due to the influence of various factors such as power quality, line failure, equipment aging, etc., wood-fired heating equipment often has intermittent power supply, which makes it impossible to continue the ice and snow melting operation stably, greatly reducing work efficiency. Secondly, existing wood-fired heating equipment generally lacks multi-power switching function. When the only power supply fails, such as power outage, power interface damage, etc., or the power supply is insufficient, such as battery exhaustion, insufficient generator power, etc., the equipment will stop running immediately and cannot continue to complete the ice and snow melting task, which greatly affects the reliability and practicality of the equipment.
[0005] In plateau areas, the problems of wood heating equipment are more prominent. The air in plateau areas is thin and the oxygen content is low, which seriously affects the combustion process of ordinary wood heating equipment, resulting in insufficient power. In order to maintain the operation of the equipment, fuel consumption has to be increased, which in turn causes a sharp increase in energy consumption and a significant reduction in thermal efficiency. According to actual tests, in plateau areas above 3,000 meters above sea level, the thermal efficiency of ordinary wood heating equipment can be reduced by 30%-40% compared with plains, but energy consumption increases by 50%-60%. In addition, most of the existing wood heating equipment is bulky and heavy, and the overall weight generally exceeds 100Kg. Under the complex terrain conditions in plateau areas, such as rugged mountain roads and steep slopes, a single person cannot move the equipment at all, which seriously limits the flexible application and portability of the equipment in plateau areas, and cannot meet the needs of scenes such as border outposts and field scientific research camps that have high requirements for equipment portability.
[0006] In addition, due to the harsh environmental conditions such as plateaus, the water produced by melting ice and snow using existing diesel heating equipment is often accompanied by diesel odors and other odors, and the water quality is poor. This is because during the operation of the equipment, the exhaust gas generated by combustion may come into contact with the melted snow water, causing the snow water to be contaminated. According to tests, the content of harmful substances in this type of water produced by melting ice and snow far exceeds the national drinking water standards. In some cases, it is even difficult to meet the basic living water requirements and cannot be used in daily life scenarios such as washing and cleaning.
[0007] In summary, the current ice-melting and snow-melting technologies and equipment have many problems in practical applications, and it is difficult to meet the demand for efficient, environmentally friendly, portable and water-quality ice-melting and snow-melting water-making equipment in cold areas, especially in harsh environmental areas such as plateaus. It is of great practical significance and urgency to develop a new ice-melting and snow-melting water-making device that can overcome the above-mentioned defects. Summary of the invention
[0008] In order to solve the above problems, especially to address the deficiencies in the prior art, the present invention provides a multi-power module diesel heating ice-melting and snow-melting water-making device that can solve the above problems.
[0009] To achieve the above purpose, the present invention adopts the following technical means:
[0010] A multi-power module diesel heating ice-melting and snow-melting water making device, comprising an ice-melting and snow-melting component, a diesel heating bracket component, and a water purification component, wherein the diesel heating bracket component and the water purification component are respectively connected to the ice-melting and snow-melting component;
[0011] The ice-melting and snow-melting component comprises an ice-melting and snow-melting frame, the top of which is inlaid with an ice-melting and snow-melting chamber, a plurality of groups of hot air masks plugged into the ice-melting and snow-melting chamber are arranged in the ice-melting and snow-melting frame, a circulating water tank is arranged at the bottom of the ice-melting and snow-melting chamber, a circulating water pump is connected in the circulating water tank, the circulating water pump is connected to a circulating water pipe arranged below the hot air mask, a nozzle is connected to the bottom of the circulating water pipe, a waste heat coil is connected to the inner side wall of the ice-melting and snow-melting chamber, and a water supply valve communicated with the circulating water tank and an ice-melting electric control component electrically connected to the circulating water pump are connected to the side wall of the ice-melting and snow-melting frame;
[0012] The diesel heater bracket assembly includes a bracket frame for carrying the ice-melting and snow-melting assembly, and the bracket frame is connected with a diesel heater electric control assembly, a diesel heater fan, a power conversion assembly, a diesel heater power regulation module, a diesel heater mobile power supply, and a fuel tank. The diesel heater electric control assembly and the fuel tank are respectively connected to the diesel heater fan, and the diesel heater fan is connected to the diesel heater power regulation module. The air outlet of the diesel heater fan is connected to the hot air mask, and the exhaust port of the diesel heater fan is connected to the ice-melting and snow-melting frame. The power conversion assembly and the diesel heater mobile power supply are respectively connected to the diesel heater power regulation module;
[0013] The water purification component includes a carrying box and a box cover hinged to the carrying box, and a control console is connected to the opening of the carrying box. The control console is connected to a drinking water valve, a domestic water valve, a water inlet valve connected to a water supply valve, a water production conversion valve, a manual water conversion valve, a water purification control switch, a water purification power conversion switch, and a water purification charging connector. A manual pump, an electric pump, a water purification module, a water purification PLC controller, a water purification power regulation module, and a water purification mobile power supply are connected to the carrying box. The water inlet valve is respectively connected to the manual pump and the electric pump through the manual water conversion valve, and the drinking water valve, the domestic water valve, the water production conversion valve, the manual pump, and the electric pump are respectively connected to the water purification module. The water purification charging connector and the water purification mobile power supply are respectively connected to the water purification power regulation module through the water purification power conversion switch, and the electric pump, the water purification control switch, and the water purification power regulation module are respectively connected to the water purification PLC controller.
[0014] A further solution of the present invention is that the side wall of the ice-melting and snow-melting frame is connected with symmetrically distributed lifting handles, exhaust valves, and a discharge valve connected to a circulating water tank;
[0015] The ice-melting and snow-melting frame is connected with a multi-directional air duct connector, and the air outlet of the diesel heater is connected to multiple groups of hot air masks through the air duct connector;
[0016] The waste heat coil is filled with phase change material or heat transfer oil.
[0017] A further solution of the present invention is that a liquid level sensor is connected to the side wall of the circulating water tank, and the liquid level sensor is electrically connected to the ice melting electronic control component; and a filter plate is connected to the circulating water tank.
[0018] A further solution of the present invention is that the ice-melting electric control component includes an ice-melting electric control box connected to the ice-melting and snow-melting frame, the ice-melting electric control box is hinged with an ice-melting electric control door, the ice-melting electric control door is connected to an ice-melting control switch, the ice-melting electric control box is connected with a power connection line, an ice-melting power supply regulating module, an ice-melting mobile power supply, and an ice-melting PLC controller, the power connection line and the ice-melting mobile power supply are respectively connected to the ice-melting power supply regulating module, the ice-melting control switch and the ice-melting power supply regulating module are respectively connected to the ice-melting PLC controller, and the liquid level sensor and the circulating water pump are respectively connected to the ice-melting PLC controller.
[0019] A further solution of the present invention is that casters are respectively connected to the corners of the bottom of the bracket frame, and the bracket frame is connected to a heat dissipation protection plate corresponding to the diesel heating power supply adjustment module and the diesel heating mobile power supply.
[0020] A further solution of the present invention is that the diesel heater electric control assembly includes a diesel heater electric control box connected to the bracket frame, the diesel heater electric control box is connected with a diesel heater control switch and a diesel heater PLC controller, the diesel heater control switch is connected to the diesel heater PLC controller, and the diesel heater PLC controller is connected to the diesel heater fan;
[0021] The power conversion assembly includes a conversion frame connected to the bracket frame, and the conversion frame is connected to an AC connection switch, an AC power interface, a mobile power connection switch, a DC power interface, and a DC connection switch. The AC power interface is connected to a diesel heating power regulation module via the AC connection switch, and the diesel heating mobile power supply is connected to the diesel heating power regulation module via the mobile power connection switch. The DC power interface and the DC connection switch are connected to the diesel heating power regulation module.
[0022] A further solution of the present invention is that the oil tank is connected to an oil level gauge and a refueling port.
[0023] A further solution of the present invention is that a handle and a shoulder strap are connected to the side of the carrying box.
[0024] A further solution of the present invention is that a pipeline between the manual water-flow conversion valve and the manual pump is connected to a pressure gauge embedded in the control panel, and a rotating rod of the manual pump passes through the control panel.
[0025] A further solution of the present invention is that the water purification module includes a PP cotton pre-filter element, a granular activated carbon filter element, a UF membrane filter element, a RO membrane filter element, and a post-activated carbon filter element, the PP cotton pre-filter element is connected to the granular activated carbon filter element through a pipeline, the granular activated carbon filter element is connected to the UF membrane filter element through a pipeline, the water outlet of the UF membrane filter element is connected to the domestic water valve, the UF membrane filter element is connected to the RO membrane filter element through a pipeline, the water production conversion valve is connected to the pipeline between the UF membrane filter element and the RO membrane filter element, the RO membrane filter element is connected to the post-activated carbon filter element through a pipeline, and the post-activated carbon filter element is connected to the drinking water valve;
[0026] The wastewater outlet of the RO membrane filter element is connected to a wastewater collecting tank arranged in the carrying box through a pipeline;
[0027] A heating sleeve is connected to the pipe between the post-activated carbon filter element and the drinking water valve, and the heating sleeve is connected to the water purification PLC controller.
[0028] Beneficial effects of the present invention:
[0029] 1. The present invention is easy to carry through modular design.
[0030] The modular design concept is adopted to divide the entire device into three components: ice and snow melting, firewood heating support, and water purification. This design makes the device simple and quick to assemble and disassemble, and it can also be easily built and stored in complex environments such as the wild.
[0031] The weight of a single module is less than 30 kg, which greatly reduces the difficulty of carrying. In areas with complex terrain and inconvenient transportation such as plateaus, a single person can easily carry each module, meeting the stringent requirements for equipment portability in outdoor activities. For example, in scenes such as field exploration and border patrol, personnel can conveniently carry the device and obtain water at any time.
[0032] 2. The present invention has adaptability to multiple power sources.
[0033] It has powerful power adaptability and can be connected to the mains, vehicle power, mobile power, and can also be used with solar panels. The power conversion component in the diesel heating bracket assembly can flexibly switch between multiple power sources.
[0034] When in different scenarios, you can choose according to the actual power supply conditions. In a camp with mains power supply, you can connect to the mains for stable operation; when working in the field, you can switch to the vehicle power supply; if you are in a remote area without conventional power supply, you can use solar panels and mobile power supplies to ensure the normal operation of the equipment. This multi-power adaptability greatly improves the applicability and reliability of the equipment in different environments.
[0035] 3. The present invention can be highly efficient and energy-saving.
[0036] Innovative use of waste heat coils can fully absorb the exhaust heat generated by the diesel heater and part of the heat blown out by the hot air mask, achieving secondary utilization of waste heat and significantly improving energy utilization.
[0037] At the same time, the device is equipped with a meltwater spraying system. When the circulating water tank is full of water, the circulating water pump starts, and the nozzle sprays water onto the ice and snow in the ice-melting and snow-melting chamber, using the heat conduction of water to accelerate the melting of ice and snow. This design improves the efficiency of ice-melting and snow-melting while reducing energy consumption. Compared with traditional ice-melting and snow-melting equipment, energy consumption is greatly reduced, and it is more energy-saving and environmentally friendly.
[0038] 4. The present invention can ensure water quality.
[0039] The produced snowmelt water directly enters the water purification component, and the water purification module can flexibly realize UF (ultrafiltration) or RO (reverse osmosis) mode water purification through the water production conversion valve.
[0040] The UF mode can effectively filter impurities, colloids, bacteria, etc. in the water, and produce water that meets the needs of domestic water, which can be used for washing, cleaning, etc.; the RO mode further removes heavy metal ions, microorganisms, etc. in the water, and produces drinking water that meets the GB5749-2022 standard, ensuring the safety of drinking water for users. Whether it is domestic water or drinking water needs, this device can provide high-quality water sources.
[0041] 5. The present invention is easy to operate.
[0042] The one-button operation design is adopted, and each component is equipped with a corresponding control switch. The diesel heating electric control component, ice melting electric control component, water purification control switch, etc., make it possible for operators to easily start, operate and switch modes of the equipment without complicated training by simply operating these switches.
[0043] This simple and easy-to-understand operation method lowers the technical threshold for operators. Even non-professionals can quickly get started and quickly use the equipment to obtain the required water in various emergency or daily scenarios.
[0044] 6. The present invention has plateau adaptability.
[0045] The diesel heater is used for heating, and the diesel heater is precisely controlled by the diesel heater electric control component. The diesel heater can automatically adjust the operating parameters according to environmental factors such as altitude, providing reliable ice and snow melting and water production guarantee for people in plateau areas. BRIEF DESCRIPTION OF THE DRAWINGS
[0046] Figure 1 It is a structural schematic diagram of the present invention;
[0047] Figure 2It is a structural schematic diagram of the ice-melting and snow-melting assembly and the wood-heating support assembly of the present invention;
[0048] Figure 3 A top view of the ice-melting and snow-melting assembly of the present invention;
[0049] Figure 4 It is a cross-sectional view of the ice-melting and snow-melting assembly of the present invention;
[0050] Figure 5 It is a structural schematic diagram of the water purification component of the present invention;
[0051] Figure 6 It is an internal view of the water purification component of the present invention;
[0052] Figure 7 It is a structural schematic diagram of the ice melting electric control component of the present invention;
[0053] Figure 8 This is a schematic diagram of the structure of the diesel heater electric control component of the present invention;
[0054] Fig. 9 It is a schematic diagram of the structure of the power conversion component of the present invention;
[0055] Fig.10 This is a schematic diagram of the structure of the water purification module of the present invention;
[0056] Fig.11 It is a structural schematic diagram of the heating sleeve of the present invention;
[0057] Reference numerals:
[0058] Ice and snow melting frame 101, water supply valve 102, lifting handle 103, ice and snow melting chamber 104, circulating water pipe 105, nozzle 106, waste heat coil 107, hot air mask 108, liquid level sensor 109, filter plate 110, circulating water tank 111, circulating water pump 112, ice melting electric control component 113, exhaust valve 114, discharge valve 115, air duct connector 116, bracket frame 201, diesel heating electric control component 202, diesel heating fan 203, casters 204, power converter Replacement component 205, diesel heating power supply adjustment module 206, diesel heating mobile power supply 207, heat dissipation protection plate 208, fuel tank 209, oil level gauge 210, refueling port 211, carrying box 301, handle 302, shoulder strap 303, drinking water valve 304, domestic water valve 305, water inlet valve 306, water production conversion valve 307, manual water conversion valve 308, pressure gauge 309, manual pump 310, electric pump 311, water purification control switch 312, water purification power conversion switch 313, water purification charging connector 314, water purification module 315, heating sleeve 316, wastewater collection tank 317, water purification PLC controller 318, water purification power supply adjustment module 319, water purification mobile power supply 320, control panel 321, box cover 322, ice melting electric control box 1131, ice melting electric control door 1132, ice melting control switch 1133, power connection line 1134, ice melting power supply adjustment module 1135, ice melting mobile power supply 1136, ice melting PLC controller 1137. Diesel heating electric control box 2021. Diesel heating control switch 2022. Diesel heating PLC controller 2023. Converter rack 2051. AC connection switch 2052. AC power interface 2053. Mobile power connection switch 2054. DC power interface 2055. DC connection switch 2056. PP cotton pre-filter element 3151. Granular activated carbon filter element 3152. UF membrane filter element 3153. RO membrane filter element 3154. Post-activated carbon filter element 3155. DETAILED DESCRIPTION
[0059] The technical solution of the present invention will be described clearly and completely below in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.
[0060] Example 1
[0061] like Figures 1 to 6 As shown, a multi-power module diesel heating ice-melting and snow-melting water-making device includes an ice-melting and snow-melting component, a diesel heating bracket component, and a water purification component. The diesel heating bracket component and the water purification component are respectively connected to the ice-melting and snow-melting component;
[0062] The ice-melting and snow-melting component comprises an ice-melting and snow-melting frame 101, the top of which is inlaid with an ice-melting and snow-melting chamber 104, a plurality of hot air masks 108 plugged into the ice-melting and snow-melting chamber 104 are arranged in the ice-melting and snow-melting frame 101, a circulating water tank 111 is provided at the bottom of the ice-melting and snow-melting chamber 104, a circulating water tank 111 is connected to a circulating water pump 112, the circulating water pump 112 is connected to a circulating water pipe 105 arranged below the hot air mask 108, a nozzle 106 is connected to the bottom of the circulating water pipe 105, a waste heat coil 107 is connected to the inner side wall of the ice-melting and snow-melting chamber 104, and a water supply valve 102 communicated with the circulating water tank 111 and an ice-melting electric control component 113 electrically connected to the circulating water pump 112 are connected to the side wall of the ice-melting and snow-melting frame 101;
[0063] The diesel heater bracket assembly includes a bracket frame 201 for carrying the ice-melting and snow-melting assembly, and the bracket frame 201 is connected with a diesel heater electric control assembly 202, a diesel heater fan 203, a power conversion assembly 205, a diesel heater power regulation module 206, a diesel heater mobile power supply 207, and a fuel tank 209. The diesel heater electric control assembly 202 and the fuel tank 209 are respectively connected to the diesel heater fan 203, the diesel heater fan 203 is connected to the diesel heater power regulation module 206, the air outlet of the diesel heater fan 203 is connected to the hot air mask 108, the exhaust port of the diesel heater fan 203 is connected to the ice-melting and snow-melting frame 101, and the power conversion assembly 205 and the diesel heater mobile power supply 207 are respectively connected to the diesel heater power regulation module 206;
[0064] The water purification component includes a carrying box 301 and a box cover 322 hinged to the carrying box 301. The opening of the carrying box 301 is connected to a control console 321. The control console 321 is connected to a drinking water valve 304, a domestic water valve 305, a water inlet valve 306 connected to the water supply valve 102, a water production conversion valve 307, a manual water conversion valve 308, a water purification control switch 312, a water purification power conversion switch 313, and a water purification charging connector 314. The carrying box 301 is connected to a manual pump 310, an electric pump 311, a water purification module 315, a water purification PLC controller 318, and a water purification power regulation module 319, water purification mobile power supply 320, the water inlet valve 306 is connected with the manual pump 310 and the electric pump 311 respectively through the manual water conversion valve 308, the drinking water valve 304, the domestic water valve 305, the water production conversion valve 307, the manual pump 310, and the electric pump 311 are connected with the water purification module 315 respectively, the water purification charging connector 314 and the water purification mobile power supply 320 are connected with the water purification power supply regulating module 319 respectively through the water purification power supply conversion switch 313, and the electric pump 311, the water purification control switch 312, and the water purification power supply regulating module 319 are connected with the water purification PLC controller 318 respectively.
[0065] How it works
[0066] Power supply and startup:
[0067] The power conversion component 205 in the diesel heater bracket component can select a suitable power source from the diesel heater mobile power source 207, the external AC power of the mains, and the external DC power source to power the diesel heater fan 203. For example, in a camping scene, if there is no mains electricity nearby, the diesel heater mobile power source 207 can be selected; if there is a temporary camp with mains electricity access, switch to the mains electricity. After the power source is selected, the diesel heater fan 203 is started through the diesel heater electric control component 202.
[0068] Melting ice and snow:
[0069] Hot air heating: After the diesel heater 203 is started, the generated warm air enters the hot air mask 108 through the air outlet, and is then evenly blown into the ice-melting and snow-melting chamber 104. The hot air directly acts on the ice or snow cubes placed in the ice-melting and snow-melting chamber 104, providing the heat required for melting the ice and snow.
[0070] Waste heat utilization: The exhaust gas generated by the diesel heater 203 is discharged into the ice-melting and snow-melting frame 101 through the tail gas port, and the heat in the exhaust gas is absorbed by the waste heat coil 107. At the same time, the waste heat coil 107 also absorbs a part of the heat blown out from the hot air mask 108. The heat absorbed by the waste heat coil 107 further assists the melting of ice and snow in the ice-melting and snow-melting chamber 104, thereby improving energy utilization.
[0071] Melting water spraying accelerates melting: As the ice and snow gradually melt, the circulating water tank 111 at the bottom of the ice-melting and snow-melting chamber 104 begins to store water. When the circulating water tank 111 is full of water, the ice-melting electronic control component 113 controls the circulating water pump 112 to start. The circulating water pump 112 pumps the water out of the tank and transports it to the nozzle 106 through the circulating water pipe 105. The nozzle 106 sprays the water onto the ice and snow in the ice-melting and snow-melting chamber 104. This process utilizes the high specific heat capacity of water. On the one hand, the sprayed water itself carries heat to accelerate the melting of ice and snow; on the other hand, the impact of water flow can destroy the ice and snow structure, promote the melting process, and improve the efficiency of ice and snow melting.
[0072] Water purification:
[0073] Water transportation: Melted water from ice and snow flows out through the water supply valve 102 on the side wall of the ice and snow melting frame 101, and enters the purified water system through the water inlet valve 306 on the purified water component control console 321.
[0074] Selection and delivery of water purification mode: Automatic or manual water purification mode can be selected through the manual water conversion valve 308. In the automatic mode, the manual water conversion valve 308 is turned to connect the electric pump 311 with the water inlet valve 306, and the water purification control switch 312 is turned on. The electric pump 311 starts and delivers the water to be purified to the purified water module 315; in the manual mode, the manual water conversion valve 308 is turned to connect the manual pump 310 with the water inlet valve 306, and the manual pump 310 is manually operated to deliver the water to be purified to the purified water module 315.
[0075] Purification mode and water output: The water purification module 315 is provided with a water conversion valve 307, which can realize water purification in UF (ultrafiltration) or RO (reverse osmosis) mode. In UF mode, the water purification module 315 mainly filters impurities, colloids, bacteria, etc. in the water, and the purified water is discharged through the domestic water valve 305 for daily washing, cleaning and other living purposes; in RO mode, the water purification module 315 further removes tiny impurities such as heavy metal ions and microorganisms in the water, and the purified water is discharged through the drinking water valve 304, which meets the drinking water standards.
[0076] Power management and control (water purification component):
[0077] The water purification power supply regulating module 319 of the water purification component can obtain electric energy from the water purification mobile power supply 320 or the external power supply connected through the water purification charging connector 314 through the water purification power supply conversion switch 313. For example, when working outdoors for a long time, if it is inconvenient to connect to the external power supply, the water purification mobile power supply 320 can be used for power supply; if there is a suitable external power supply, it can be switched to the external power supply to provide stable power supply for the water purification component. The electric pump 311, the water purification control switch 312, and the water purification power supply regulating module 319 are respectively connected to the water purification PLC controller 318, and the water purification PLC controller 318 intelligently controls the operation of the water purification component according to the preset program to ensure that the entire purification process is stable and efficient.
[0078] Example 2
[0079] like Figures 1 to 6 As shown, a multi-power module diesel heating ice-melting and snow-melting water-making device includes an ice-melting and snow-melting component, a diesel heating bracket component, and a water purification component. The diesel heating bracket component and the water purification component are respectively connected to the ice-melting and snow-melting component;
[0080] The ice-melting and snow-melting component comprises an ice-melting and snow-melting frame 101, the top of which is inlaid with an ice-melting and snow-melting chamber 104, a plurality of hot air masks 108 plugged into the ice-melting and snow-melting chamber 104 are arranged in the ice-melting and snow-melting frame 101, a circulating water tank 111 is provided at the bottom of the ice-melting and snow-melting chamber 104, a circulating water tank 111 is connected to a circulating water pump 112, the circulating water pump 112 is connected to a circulating water pipe 105 arranged below the hot air mask 108, a nozzle 106 is connected to the bottom of the circulating water pipe 105, a waste heat coil 107 is connected to the inner side wall of the ice-melting and snow-melting chamber 104, and a water supply valve 102 communicated with the circulating water tank 111 and an ice-melting electric control component 113 electrically connected to the circulating water pump 112 are connected to the side wall of the ice-melting and snow-melting frame 101;
[0081] The diesel heater bracket assembly includes a bracket frame 201 for carrying the ice-melting and snow-melting assembly, and the bracket frame 201 is connected with a diesel heater electric control assembly 202, a diesel heater fan 203, a power conversion assembly 205, a diesel heater power regulation module 206, a diesel heater mobile power supply 207, and a fuel tank 209. The diesel heater electric control assembly 202 and the fuel tank 209 are respectively connected to the diesel heater fan 203, the diesel heater fan 203 is connected to the diesel heater power regulation module 206, the air outlet of the diesel heater fan 203 is connected to the hot air mask 108, the exhaust port of the diesel heater fan 203 is connected to the ice-melting and snow-melting frame 101, and the power conversion assembly 205 and the diesel heater mobile power supply 207 are respectively connected to the diesel heater power regulation module 206;
[0082] The water purification component includes a carrying box 301 and a box cover 322 hinged to the carrying box 301. The opening of the carrying box 301 is connected to a control console 321. The control console 321 is connected to a drinking water valve 304, a domestic water valve 305, a water inlet valve 306 connected to the water supply valve 102, a water production conversion valve 307, a manual water conversion valve 308, a water purification control switch 312, a water purification power conversion switch 313, and a water purification charging connector 314. The carrying box 301 is connected to a manual pump 310, an electric pump 311, a water purification module 315, a water purification PLC controller 318, and a water purification power regulation module 319, water purification mobile power supply 320, the water inlet valve 306 is connected with the manual pump 310 and the electric pump 311 respectively through the manual water conversion valve 308, the drinking water valve 304, the domestic water valve 305, the water production conversion valve 307, the manual pump 310, and the electric pump 311 are connected with the water purification module 315 respectively, the water purification charging connector 314 and the water purification mobile power supply 320 are connected with the water purification power supply regulating module 319 respectively through the water purification power supply conversion switch 313, and the electric pump 311, the water purification control switch 312, and the water purification power supply regulating module 319 are connected with the water purification PLC controller 318 respectively.
[0083] The side wall of the ice-melting and snow-melting frame 101 is connected with symmetrically distributed lifting handles 103, an exhaust valve 114, and a discharge valve 115 connected to the circulating water tank 111;
[0084] A multi-directional air duct connector 116 is connected to the ice and snow melting frame 101, and the air outlet of the diesel heater 203 is connected to multiple sets of hot air masks 108 through the air duct connector 116;
[0085] The waste heat coil 107 is filled with phase change material or heat transfer oil.
[0086] The advantages of the above settings are:
[0087] Lifting handles 103: The symmetrically distributed lifting handles 103 facilitate the handling, movement or adjustment of the ice-melting and snow-melting frame 101. When the device needs to be transferred or the ice-melting and snow-melting frame needs to be maintained or cleaned, the lifting handles can provide convenient gripping points, which facilitate the operator to exert force, making the operation more convenient and labor-saving. At the same time, the symmetrical distribution also ensures the balance of the ice-melting and snow-melting frame during the handling process, preventing equipment damage or danger due to uneven force.
[0088] Exhaust valve 114: The exhaust valve 114 can control the exhaust gas emission generated by the diesel heater 203. By adjusting the opening of the exhaust valve, the amount of exhaust gas entering the ice and snow melting frame 101 can be controlled, so as to accurately adjust the degree of utilization of the waste heat of the exhaust gas. When more heat is needed to melt ice and snow, the exhaust valve can be opened appropriately to allow more exhaust gas to enter and improve the efficiency of waste heat utilization; conversely, when the speed of ice and snow melting is too fast or too much heat is not needed, the exhaust valve can be closed to avoid excess heat. At the same time, the speed and direction of exhaust gas emission can also be controlled to reduce pollution to the surrounding environment.
[0089] Drain valve 115: Drain valve 115 is connected to circulating water tank 111, and its main function is to discharge water in the circulating water tank when necessary. For example, when there are too many impurities in the water in the circulating water tank, the water quality deteriorates, or when the water in the water tank needs to be emptied during equipment maintenance and repair, or when the water level needs to be adjusted during ice and snow melting, the water can be discharged through the drain valve, which is convenient for the maintenance and management of the circulating water system and ensures the normal operation of the ice and snow melting system.
[0090] Air duct connector 116: The multi-directional air duct connector 116 connects the air outlet of the diesel heater 203 with the multiple sets of hot air masks 108, so that the hot air can be evenly distributed to various positions in the ice-melting and snow-melting frame 101. This can ensure that the ice and snow in the ice-melting and snow-melting chamber 104 can be evenly heated, improve the efficiency and effect of ice-melting and snow-melting, avoid local overheating or overcooling, make the entire ice-melting and snow-melting process more stable and efficient, and also reduce local damage to the equipment caused by uneven heat distribution, thereby extending the service life of the equipment.
[0091] Benefits of filling phase change materials
[0092] Efficient heat storage: Phase change materials undergo phase changes when the temperature changes, and can absorb or release a large amount of latent heat. When the ambient temperature around the waste heat coil rises, the phase change material absorbs heat and undergoes phase changes to store the heat; when the ambient temperature drops, the phase change material releases heat to stabilize the temperature in the ice and snow melting frame 101, thereby improving the efficiency of waste heat utilization and reducing heat loss.
[0093] Temperature control: helps maintain temperature stability during ice and snow melting. The phase change material basically maintains a constant temperature during the phase change process, which can reduce the temperature fluctuation in the ice and snow melting chamber 104, avoid the adverse effect of ice and snow melting due to excessively high or low temperature, provide a relatively stable heat source for ice and snow melting, and improve the quality and efficiency of ice and snow melting.
[0094] Benefits of filling with thermal oil
[0095] Good thermal conductivity: The heat transfer oil has a high thermal conductivity coefficient, and can quickly and effectively transfer the heat absorbed by the waste heat coil 107 to the ice-melting and snow-melting chamber 104, thereby improving the heat transfer efficiency and making the ice-melting and snow-melting process proceed faster.
[0096] Strong temperature adaptability: Thermal oil can work in a wide temperature range and can adapt to the waste heat recovery requirements under different working conditions. Whether starting the ice and snow melting equipment in a low temperature environment or operating under high temperature waste heat conditions, thermal oil can maintain good performance and ensure the stable operation of the ice and snow melting system.
[0097] High safety: The flash point and ignition point of thermal oil are relatively high, and it is not easy to burn or explode. Compared with some other flammable heat transfer media, it has higher safety and reduces the safety risks of ice and snow melting equipment during operation.
[0098] The side wall of the circulating water tank 111 is connected with a liquid level sensor 109 , and the liquid level sensor 109 is electrically connected to the ice melting electric control component 113 ; the circulating water tank 111 is connected with a filter plate 110 .
[0099] The advantages of the above settings are:
[0100] Benefits of Liquid Level Sensor 109
[0101] Real-time monitoring of water level: The liquid level sensor 109 can monitor the water level in the circulating water tank 111 in real time, and convert the water level information into an electrical signal and transmit it to the ice melting electric control component 113. This enables the operator or the control system to understand the water level status in the circulating water tank at any time, so as to take corresponding measures in time.
[0102] Preventing dry operation: By being electrically connected to the ice-melting electronic control component 113, when the water level is too low, the ice-melting electronic control component can automatically stop the operation of related equipment, such as the circulating water pump, etc., according to the signal of the liquid level sensor, to prevent the equipment from being damaged due to operation in a dry state, thereby protecting the equipment safety and extending the service life of the equipment.
[0103] Ensure stable ice melting effect: The appropriate water level is crucial for the stable operation of the ice melting and snow melting system. The liquid level sensor can ensure that the circulating water tank always maintains an appropriate amount of water, thereby ensuring that the circulating water system can circulate normally, providing a stable cooling or heat transfer medium for the ice melting and snow melting process, and maintaining the stability of the ice melting and snow melting effect.
[0104] Benefits of filter plate 110
[0105] Filtering impurities: The water in the circulating water tank 111 may be mixed with various impurities during the circulation process, such as dust, rust, etc. The filter plate 110 can filter the circulating water, prevent impurities from circulating in the system, prevent impurities from clogging pipes, nozzles or other components, and ensure the smooth flow of the circulating water system.
[0106] Protect equipment: By filtering impurities, the wear and corrosion of impurities on circulating water pumps, heat exchangers and other equipment is reduced, the incidence of equipment failure is reduced, the maintenance cycle and service life of the equipment are extended, and the maintenance cost is reduced.
[0107] Improve ice and snow melting efficiency: Clean circulating water can better transfer heat and avoid impurities adhering to the heat transfer surface and affecting the heat transfer efficiency, thus helping to improve the overall efficiency of ice and snow melting.
[0108] like Figure 7 As shown, the ice-melting electric control component 113 includes an ice-melting electric control box 1131 connected to the ice-melting and snow-melting frame 101, the ice-melting electric control box 1131 is hinged with an ice-melting electric control door 1132, the ice-melting electric control door 1132 is connected to an ice-melting control switch 1133, the ice-melting electric control box 1131 is connected with a power connection line 1134, an ice-melting power supply regulating module 1135, an ice-melting mobile power supply 1136, and an ice-melting PLC controller 1137, the power connection line 1134 and the ice-melting mobile power supply 1136 are respectively connected to the ice-melting power supply regulating module 1135, the ice-melting control switch 1133 and the ice-melting power supply regulating module 1135 are respectively connected to the ice-melting PLC controller 1137, and the liquid level sensor 109 and the circulating water pump 112 are respectively connected to the ice-melting PLC controller 1137.
[0109] The advantages of the above settings are:
[0110] Convenience of operation and maintenance
[0111] Independent electric control box: The ice-melting electric control box 1131 brings together related electric control components for easy installation, wiring and maintenance. The hinged ice-melting electric control door 1132 allows operators to open the box to inspect, repair and debug the internal components.
[0112] Integrated control: The ice-melting control switch 1133, power connection line 1134, ice-melting power regulation module 1135, ice-melting mobile power supply 1136 and ice-melting PLC controller 1137 are integrated in the ice-melting electric control box, realizing centralized control of the ice-melting and snow-melting system, improving the stability and reliability of the system and reducing external interference.
[0113] Power management flexibility
[0114] Dual power supply: The ice-melting power supply regulating module 1135 can obtain power from the ice-melting mobile power supply 1136, and can also obtain external AC power through the power connection line 1134 when the ice-melting mobile power supply is insufficient. This dual power supply design improves the flexibility and reliability of the system's power supply. In some places where the mains power cannot be connected or the mains power is unstable, the ice-melting mobile power supply can be used as an independent power supply guarantee system; and when the mobile power supply is insufficient, the external AC power supply can be replenished in time to ensure that the ice-melting and snow-melting system continues to work stably.
[0115] Power regulation function: The ice-melting power regulation module 1135 can regulate the input power supply and provide stable voltage and current according to the actual needs of the ice-melting and snow-melting system, thereby protecting the electrical equipment in the system from voltage fluctuations, extending the service life of the equipment, and improving the energy efficiency of the system.
[0116] Automation
[0117] PLC controller integration: The ice-melting PLC controller 1137 serves as the control core of the system, connecting the ice-melting control switch 1133, the ice-melting power supply adjustment module 1135, the liquid level sensor 109, the circulating water pump 112 and other devices together to achieve automatic control. Through the preset program, the PLC controller can automatically control the operation of the circulating water pump according to the signal of the liquid level sensor, and adjust the ice-melting power supply according to the instructions of the ice-melting control switch, so as to achieve intelligent management of the ice-melting and snow-melting process, reduce manual intervention, and improve work efficiency and control accuracy.
[0118] System status monitoring and feedback: The PLC controller can monitor the operating status and related parameters of each device in real time, such as liquid level, power status, etc., and make corresponding adjustments and controls based on this information. Once an abnormal situation occurs, such as low liquid level or power failure, the PLC controller can issue an alarm in time and take corresponding protective measures to ensure safe and stable operation of the system.
[0119] Example 3
[0120] like Figures 1 to 6 As shown, a multi-power module diesel heating ice-melting and snow-melting water-making device includes an ice-melting and snow-melting component, a diesel heating bracket component, and a water purification component. The diesel heating bracket component and the water purification component are respectively connected to the ice-melting and snow-melting component;
[0121] The ice-melting and snow-melting component comprises an ice-melting and snow-melting frame 101, the top of which is inlaid with an ice-melting and snow-melting chamber 104, a plurality of hot air masks 108 plugged into the ice-melting and snow-melting chamber 104 are arranged in the ice-melting and snow-melting frame 101, a circulating water tank 111 is provided at the bottom of the ice-melting and snow-melting chamber 104, a circulating water tank 111 is connected to a circulating water pump 112, the circulating water pump 112 is connected to a circulating water pipe 105 arranged below the hot air mask 108, a nozzle 106 is connected to the bottom of the circulating water pipe 105, a waste heat coil 107 is connected to the inner side wall of the ice-melting and snow-melting chamber 104, and a water supply valve 102 communicated with the circulating water tank 111 and an ice-melting electric control component 113 electrically connected to the circulating water pump 112 are connected to the side wall of the ice-melting and snow-melting frame 101;
[0122] The diesel heater bracket assembly includes a bracket frame 201 for carrying the ice-melting and snow-melting assembly, and the bracket frame 201 is connected with a diesel heater electric control assembly 202, a diesel heater fan 203, a power conversion assembly 205, a diesel heater power regulation module 206, a diesel heater mobile power supply 207, and a fuel tank 209. The diesel heater electric control assembly 202 and the fuel tank 209 are respectively connected to the diesel heater fan 203, the diesel heater fan 203 is connected to the diesel heater power regulation module 206, the air outlet of the diesel heater fan 203 is connected to the hot air mask 108, the exhaust port of the diesel heater fan 203 is connected to the ice-melting and snow-melting frame 101, and the power conversion assembly 205 and the diesel heater mobile power supply 207 are respectively connected to the diesel heater power regulation module 206;
[0123] The water purification component includes a carrying box 301 and a box cover 322 hinged to the carrying box 301. The opening of the carrying box 301 is connected to a control console 321. The control console 321 is connected to a drinking water valve 304, a domestic water valve 305, a water inlet valve 306 connected to the water supply valve 102, a water production conversion valve 307, a manual water conversion valve 308, a water purification control switch 312, a water purification power conversion switch 313, and a water purification charging connector 314. The carrying box 301 is connected to a manual pump 310, an electric pump 311, a water purification module 315, a water purification PLC controller 318, and a water purification power regulation module 319, water purification mobile power supply 320, the water inlet valve 306 is connected with the manual pump 310 and the electric pump 311 respectively through the manual water conversion valve 308, the drinking water valve 304, the domestic water valve 305, the water production conversion valve 307, the manual pump 310, and the electric pump 311 are connected with the water purification module 315 respectively, the water purification charging connector 314 and the water purification mobile power supply 320 are connected with the water purification power supply regulating module 319 respectively through the water purification power supply conversion switch 313, and the electric pump 311, the water purification control switch 312, and the water purification power supply regulating module 319 are connected with the water purification PLC controller 318 respectively.
[0124] Casters 204 are respectively connected to the corners of the bottom of the bracket frame 201, and the bracket frame 201 is connected to a heat dissipation protection plate 208 corresponding to the diesel-heating power supply adjustment module 206 and the diesel-heating mobile power supply 207.
[0125] The advantages of the above settings are:
[0126] Benefits of caster 204 setting
[0127] Easy to move: casters are installed at the bottom corners of the bracket frame 201, making the entire device easy to move. The ice and snow melting device can be easily moved to different locations as needed, such as performing ice melting operations in different areas, or moving it to a suitable storage location when not in use, which improves the flexibility and convenience of the device.
[0128] Save manpower: Compared with fixed equipment without casters, it does not require a lot of manpower to carry or drag when moving, which reduces labor intensity and improves work efficiency.
[0129] Benefits of setting up the heat dissipation protection plate 208
[0130] Heat dissipation function: The diesel-heated power conditioning module 206 and the diesel-heated mobile power supply 207 generate heat during operation, and the heat dissipation protection plate 208 can help dissipate the heat to prevent the equipment from overheating and causing performance degradation, shortened life, or even failure. Good heat dissipation can ensure that the power conditioning module and the mobile power supply operate within a suitable temperature range, thereby improving their stability and reliability.
[0131] Protective function: The protective plate can protect the diesel-heating power supply regulating module 206 and the diesel-heating mobile power supply 207, prevent collision, scratching or entry of dust, water vapor, etc. by external objects, avoid equipment damage or short circuit due to external factors, and extend the service life of the equipment.
[0132] like Figure 8 As shown, the diesel heater electric control assembly 202 includes a diesel heater electric control box 2021 connected to the bracket frame 201, and the diesel heater electric control box 2021 is connected with a diesel heater control switch 2022 and a diesel heater PLC controller 2023, the diesel heater control switch 2022 is connected to the diesel heater PLC controller 2023, and the diesel heater PLC controller 2023 is connected to the diesel heater fan 203;
[0133] like Fig. 9As shown, the power conversion component 205 includes a conversion frame 2051 connected to the bracket frame 201, and the conversion frame 2051 is connected to an AC connection switch 2052, an AC power interface 2053, a mobile power connection switch 2054, a DC power interface 2055, and a DC connection switch 2056. The AC power interface 2053 is connected to the diesel heating power supply regulation module 206 through the AC connection switch 2052, the diesel heating mobile power supply 207 is connected to the diesel heating power supply regulation module 206 through the mobile power connection switch 2054, and the DC power interface 2055 and the DC connection switch 2056 are connected to the diesel heating power supply regulation module 206.
[0134] The advantages of the above settings are:
[0135] The benefits of diesel heating electric control component 202 setting
[0136] Centralized control: The diesel heater electric control box 2021 integrates the diesel heater control switch 2022 and the diesel heater PLC controller 2023, realizing centralized control of the diesel heater fan 203. The diesel heater control switch 2022 can conveniently turn on and off the diesel heater fan 203, and the diesel heater PLC controller 2023 can accurately control and monitor its operating status, which improves the convenience of operation and the stability of equipment operation.
[0137] Automatic control: The diesel heater PLC controller 2023 can automatically control the operation of the diesel heater fan 203 according to preset programs and parameters. For example, it can automatically adjust the fan speed and working hours according to factors such as ambient temperature and the need for melting ice and snow, thereby realizing automatic control and improving the efficiency and effect of melting ice and snow. At the same time, it reduces manual intervention, labor intensity and the possibility of human operating errors.
[0138] Benefits of Power Conversion Component 205
[0139] Power supply flexibility: By setting the AC connection switch 2052, AC power interface 2053, mobile power connection switch 2054, DC power interface 2055 and DC connection switch 2056, the diesel heating power supply adjustment module 206 can flexibly obtain multiple power supplies. It can not only access external AC power through the AC power interface 2053, but also obtain the power of the diesel heating mobile power supply 207 through the mobile power connection switch 2054, and also obtain external DC power through the DC power interface 2055 and the DC connection switch 2056. This multi-power supply access method increases the flexibility and reliability of the equipment power supply, and can adapt to different working scenarios and power supply conditions.
[0140] Power management: Different power connection switches can realize independent control and management of different power sources. For example, when the diesel-heated mobile power source 207 is fully charged, the diesel-heated mobile power source 207 can be used first to power the diesel-heated power adjustment module 206 to reduce dependence on external power sources; when the diesel-heated mobile power source 207 is insufficiently charged, an external AC or DC power source can be selected according to actual conditions to ensure the normal operation of the device. This power management method helps to rationally utilize energy, reduce usage costs, and at the same time improve the adaptability and stability of the device in various complex environments.
[0141] The oil tank 209 is connected to an oil level gauge 210 and a fuel filling port 211 .
[0142] The advantages of the above settings are:
[0143] Convenient refueling: The setting of the refueling port 211 provides a convenient passage for adding fuel to the fuel tank 209. Its position and design are usually carefully considered, which is convenient for operators to approach and operate, and can quickly and accurately add fuel to the fuel tank, reducing the trouble and time cost during the refueling process.
[0144] Real-time monitoring of oil volume: The oil level gauge 210 can display the oil volume information in the oil tank 209 in real time. This allows the operator to know the remaining amount of fuel in the tank at any time, so as to arrange the refueling plan in advance, avoid equipment shutdown due to insufficient fuel, and ensure the continuous and stable operation of the ice and snow melting equipment. At the same time, observing the oil volume changes through the oil level gauge can also help the operator to judge the fuel consumption of the equipment, timely discover possible abnormal problems such as fuel leakage, and take timely measures for maintenance and treatment to ensure the normal operation and safety of the equipment.
[0145] Example 4
[0146] like Figures 1 to 6 As shown, a multi-power module diesel heating ice-melting and snow-melting water-making device includes an ice-melting and snow-melting component, a diesel heating bracket component, and a water purification component. The diesel heating bracket component and the water purification component are respectively connected to the ice-melting and snow-melting component;
[0147] The ice-melting and snow-melting component comprises an ice-melting and snow-melting frame 101, the top of which is inlaid with an ice-melting and snow-melting chamber 104, a plurality of hot air masks 108 plugged into the ice-melting and snow-melting chamber 104 are arranged in the ice-melting and snow-melting frame 101, a circulating water tank 111 is provided at the bottom of the ice-melting and snow-melting chamber 104, a circulating water tank 111 is connected to a circulating water pump 112, the circulating water pump 112 is connected to a circulating water pipe 105 arranged below the hot air mask 108, a nozzle 106 is connected to the bottom of the circulating water pipe 105, a waste heat coil 107 is connected to the inner side wall of the ice-melting and snow-melting chamber 104, and a water supply valve 102 communicated with the circulating water tank 111 and an ice-melting electric control component 113 electrically connected to the circulating water pump 112 are connected to the side wall of the ice-melting and snow-melting frame 101;
[0148] The diesel heater bracket assembly includes a bracket frame 201 for carrying the ice-melting and snow-melting assembly, and the bracket frame 201 is connected with a diesel heater electric control assembly 202, a diesel heater fan 203, a power conversion assembly 205, a diesel heater power regulation module 206, a diesel heater mobile power supply 207, and a fuel tank 209. The diesel heater electric control assembly 202 and the fuel tank 209 are respectively connected to the diesel heater fan 203, the diesel heater fan 203 is connected to the diesel heater power regulation module 206, the air outlet of the diesel heater fan 203 is connected to the hot air mask 108, the exhaust port of the diesel heater fan 203 is connected to the ice-melting and snow-melting frame 101, and the power conversion assembly 205 and the diesel heater mobile power supply 207 are respectively connected to the diesel heater power regulation module 206;
[0149] The water purification component includes a carrying box 301 and a box cover 322 hinged to the carrying box 301. The opening of the carrying box 301 is connected to a control console 321. The control console 321 is connected to a drinking water valve 304, a domestic water valve 305, a water inlet valve 306 connected to the water supply valve 102, a water production conversion valve 307, a manual water conversion valve 308, a water purification control switch 312, a water purification power conversion switch 313, and a water purification charging connector 314. The carrying box 301 is connected to a manual pump 310, an electric pump 311, a water purification module 315, a water purification PLC controller 318, and a water purification power regulation module 319, water purification mobile power supply 320, the water inlet valve 306 is connected with the manual pump 310 and the electric pump 311 respectively through the manual water conversion valve 308, the drinking water valve 304, the domestic water valve 305, the water production conversion valve 307, the manual pump 310, and the electric pump 311 are connected with the water purification module 315 respectively, the water purification charging connector 314 and the water purification mobile power supply 320 are connected with the water purification power supply regulating module 319 respectively through the water purification power supply conversion switch 313, and the electric pump 311, the water purification control switch 312, and the water purification power supply regulating module 319 are connected with the water purification PLC controller 318 respectively.
[0150] A handle 302 and a shoulder strap 303 are connected to the side of the carrying box 301 .
[0151] The advantages of the above settings are:
[0152] Convenient to carry: The setting of the handle 302 allows people to drag the carrying box by holding the handle 302. When the carrying box needs to be moved a short distance or placed from one place to another, it provides a point of force for easy application, which is convenient for one or more people to carry, reduces the pressure on the hands during carrying, and improves the convenience of carrying.
[0153] Easy to carry: The design of the shoulder strap 303 takes into account the need to carry the carrying case 301 for a long time. People can carry the shoulder strap on their shoulders, so that the weight of the carrying case 301 is distributed on the shoulders and back, and the weight is borne by the overall strength of the human body. Compared with simply carrying it with hands, it is more labor-saving and can free up both hands, making it easier to carry other items or perform other operations at the same time, increasing the convenience and flexibility of carrying, and is particularly suitable for scenarios where long-distance movement is required or hands need to be freed up to do other things.
[0154] Improved flexibility of use: The handle 302 and the shoulder strap 303 are provided at the same time, so that the user can flexibly choose the method of carrying or carrying according to actual needs and scenarios. For example, the handle 302 can be used for short-distance movement on flat ground; the shoulder strap 303 can be used for long-distance travel or walking on complex terrain, thereby improving the flexibility and adaptability of the carrying box.
[0155] The pipeline between the manual water switching valve 308 and the manual pump 310 is connected to a pressure gauge 309 embedded in the control console 321 , and the rotating rod of the manual pump 310 passes through the control console 321 .
[0156] The advantages of the above settings are:
[0157] Precisely control pressure: By observing the reading of the pressure gauge 309, the user can accurately understand the pressure in the pipeline. When operating the manual pump 310, the swing speed of the manual pump can be accurately controlled according to the feedback of the pressure gauge, thereby adjusting the pressure in the pipeline to reach and maintain it within the required value range. This is very important for some systems or operations that have strict requirements on pressure, and helps to ensure the stable operation of the system and the accuracy of the work.
[0158] Avoid abnormal pressure: It can prevent the pressure from being too high or too low due to the manual pump swinging too fast or too slow. Too high pressure may damage the pipeline, equipment, etc., and even cause safety accidents; too low pressure may cause the system to not work properly. Through real-time monitoring of the pressure gauge and control of the manual pump speed, these problems can be effectively avoided to ensure the safety and normal operation of the system.
[0159] Improve operational efficiency: The user can quickly adjust the swing speed of the manual pump according to the indication of the pressure gauge to achieve the optimal pressure state. This can reduce debugging time and operational errors, improve work efficiency, and make the entire operation process smoother and more efficient.
[0160] Easy to troubleshoot: If the system has abnormal pressure, the pressure gauge can be used as an intuitive detection tool to help users quickly determine the problem. Combining the operation of the manual pump and the changes in the pressure gauge readings, it is easier to analyze whether it is a pump problem, a pipeline problem, or a problem with other components, providing an important basis for troubleshooting and maintenance.
[0161] like Figure 10-11 As shown, the water purification module 315 includes a PP cotton pre-filter element 3151, a granular activated carbon filter element 3152, a UF membrane filter element 3153, a RO membrane filter element 3154, and a post-activated carbon filter element 3155. The PP cotton pre-filter element 3151 is connected to the granular activated carbon filter element 3152 through a pipeline, the granular activated carbon filter element 3152 is connected to the UF membrane filter element 3153 through a pipeline, the water outlet of the UF membrane filter element 3153 is connected to the domestic water valve 305, the UF membrane filter element 3153 is connected to the RO membrane filter element 3154 through a pipeline, the water production conversion valve 307 is connected to the pipeline between the UF membrane filter element 3153 and the RO membrane filter element 3154, the RO membrane filter element 3154 is connected to the post-activated carbon filter element 3155 through a pipeline, and the post-activated carbon filter element 3155 is connected to the drinking water valve 304;
[0162] The wastewater outlet of the RO membrane filter element 3154 is connected to a wastewater collection tank 317 disposed in the carrying box 301 through a pipeline;
[0163] The pipe between the post-activated carbon filter element 3155 and the drinking water valve 304 is sleeved with a heating sleeve 316 , and the heating sleeve 316 is connected to a water purification PLC controller 318 .
[0164] The advantages of the above settings are:
[0165] Multi-stage filtration, excellent water quality:
[0166] PP cotton pre-filter element 3151: can intercept large particles of impurities, preliminarily purify water quality, and reduce the filtering burden of subsequent filter elements.
[0167] Granular activated carbon filter element 3152: can absorb discoloration, odor and some organic matter in water, and improve the sensory properties of water.
[0168] UF membrane filter element 3153: can filter out bacteria, colloids, etc., further improving water quality.
[0169] RO membrane filter element 3154: removes tiny impurities such as salt and heavy metal ions in water to achieve a higher purity of water.
[0170] Post-activated carbon filter 3155: further improves the taste of water and ensures that the purified water tastes good. This multi-stage filtration combination can effectively remove various impurities in the water and ensure that the purified water meets high water quality standards.
[0171] Flexible water supply to meet diverse needs:
[0172] Domestic water: The outlet of the UF membrane filter element 3153 is connected to the domestic water valve 305. The water filtered by the UF membrane filter element can be used as domestic water for washing vegetables and dishes, etc. Its water quality can meet the general use needs in daily life.
[0173] Drinking water: The water treated by the RO membrane filter element 3154 and the post-activated carbon filter element 3155 is connected to the drinking water valve 304 and can be used as direct drinking water to meet the high requirements of human drinking water quality. This setting can provide water of corresponding water quality according to different water needs, realize the rational use of water resources, and improve the efficiency of water use.
[0174] The water production process is controllable and easy to adjust: the water production conversion valve 307 is connected to the pipeline between the UF membrane filter element 3153 and the RO membrane filter element 3154. By controlling the water production conversion valve, the water production process can be flexibly adjusted. Users can choose different filtering modes according to actual needs, such as using only the UF membrane filter element for coarse filtration to produce water for living scenarios with low requirements for water quality; or turning on the RO membrane filter element for deep filtration to produce water to obtain higher purity drinking water, which is convenient for users to adjust according to water quality and water demand.
[0175] Wastewater collection, environmental protection and energy saving: The wastewater outlet of the RO membrane filter element 3154 is connected to the wastewater collection tank 317 through a pipe to collect the wastewater generated during the RO membrane filtration process. Although this wastewater cannot be directly used as drinking water or domestic water, it can be used for other purposes that do not require high water quality, such as flushing toilets, mopping the floor, etc., avoiding the waste caused by direct discharge of wastewater, reflecting the concept of environmental protection and energy saving.
[0176] Heating water for convenient drinking: The pipe between the post-activated carbon filter 3155 and the drinking water valve 304 is connected with a heating sleeve 316, and the heating sleeve is connected to the water purification PLC controller 318. The water purification PLC controller 318 can accurately control the heating temperature so that the drinking water reaches a suitable drinking temperature, providing convenience for users, meeting the needs of users to drink hot water at any time, and improving the user experience.
[0177] The examples given in the present invention are not intended to limit the implementation methods. For those skilled in the art, other different forms of changes or modifications can be made based on the above description. It is not necessary and impossible to list all the implementation methods here, and the obvious changes or modifications derived therefrom are still within the protection scope of the present invention.
Claims
1. A multi-power module diesel heating ice-melting and snow-melting water-making device, characterized in that: It includes an ice-melting and snow-melting component, a wood-fired heating bracket component, and a water purification component, wherein the wood-fired heating bracket component and the water purification component are respectively connected to the ice-melting and snow-melting component; The ice-melting and snow-melting component comprises an ice-melting and snow-melting frame (101), the top of the ice-melting and snow-melting frame (101) is inlaid with an ice-melting and snow-melting chamber (104), a plurality of groups of hot air masks (108) plugged into the ice-melting and snow-melting chamber (104) are arranged in the ice-melting and snow-melting frame (101), a circulating water tank (111) is provided at the bottom of the ice-melting and snow-melting chamber (104), a circulating water pump (112) is connected to the circulating water tank (111), and the circulating water pump (112) is connected to a circulating water pipe (105) arranged below a hot air mask (108); a nozzle (106) is connected to the bottom of the circulating water pipe (105); an inner wall of the ice-melting and snow-melting chamber (104) is connected to a waste heat coil (107); a side wall of the ice-melting and snow-melting frame (101) is connected to a water supply valve (102) in communication with a circulating water tank (111) and an ice-melting electric control component (113) electrically connected to a circulating water pump (112); The diesel heater support assembly comprises a support frame (201) for carrying an ice-melting and snow-melting assembly. The support frame (201) is connected with a diesel heater electric control assembly (202), a diesel heater fan (203), a power conversion assembly (205), a diesel heater power regulation module (206), a diesel heater mobile power supply (207), and a fuel tank (209). The diesel heater electric control assembly (202) and the fuel tank (209) are respectively connected to the diesel heater fan (203). The diesel heater fan (203) is connected to the diesel heater power regulation module (206). The air outlet of the diesel heater fan (203) is connected to a hot air mask (108). The exhaust port of the diesel heater fan (203) is connected to the ice-melting and snow-melting frame (101). The power conversion assembly (205) and the diesel heater mobile power supply (207) are respectively connected to the diesel heater power regulation module (206). The water purification assembly comprises a carrying box (301) and a box cover (322) hingedly connected to the carrying box (301); the opening of the carrying box (301) is connected to a control panel (321); the control panel (321) is connected to a drinking water valve (304), a domestic water valve (305), a water inlet valve (306) connected to a water supply valve (102), a water production conversion valve (307), a manual water conversion valve (308), a water purification control switch (312), a water purification power conversion switch (313), and a water purification charging connector (314); the carrying box (301) is connected to a manual pump (310), an electric pump (311), a water purification module (315), a water purification PLC controller (318), and a water purification power supply adjustment module (319), a mobile power supply for water purification (320), the water inlet valve (306) is respectively connected to a manual pump (310) and an electric pump (311) through a manual water conversion valve (308), the drinking water valve (304), the domestic water valve (305), the water production conversion valve (307), the manual pump (310), and the electric pump (311) are respectively connected to a water purification module (315), the water purification charging connector (314) and the mobile power supply for water purification (320) are respectively connected to a water purification power supply regulating module (319) through a water purification power supply conversion switch (313), and the electric pump (311), the water purification control switch (312), and the water purification power supply regulating module (319) are respectively connected to a water purification PLC controller (318).
2. The multi-power module diesel heating ice-melting and snow-melting water making device according to claim 1 is characterized in that: The side wall of the ice-melting and snow-melting frame (101) is connected with symmetrically distributed lifting handles (103), an exhaust valve (114), and a discharge valve (115) connected to the circulating water tank (111); The ice-melting and snow-melting frame (101) is connected to a multi-directional air duct connector (116), and the air outlet of the diesel heater (203) is connected to a plurality of groups of hot air masks (108) through the air duct connector (116); The waste heat coil (107) is filled with phase change material or heat transfer oil.
3. The multi-power module diesel heating ice-melting and snow-melting water making device according to claim 2 is characterized in that: A liquid level sensor (109) is connected to the side wall of the circulating water tank (111), and the liquid level sensor (109) is electrically connected to an ice-melting electric control component (113); a filter plate (110) is connected to the circulating water tank (111).
4. The multi-power module diesel heating ice-melting and snow-melting water making device according to claim 3 is characterized in that: The ice-melting electric control assembly (113) comprises an ice-melting electric control box (1131) connected to the ice-melting and snow-melting frame (101); the ice-melting electric control box (1131) is hinged with an ice-melting electric control door (1132); the ice-melting electric control door (1132) is connected to an ice-melting control switch (1133); the ice-melting electric control box (1131) is connected with a power connection line (1134), an ice-melting power supply adjustment module (1135), and an ice-melting mobile power supply (1136). ), an ice-melting PLC controller (1137), the power connection line (1134) and the ice-melting mobile power supply (1136) are respectively connected to the ice-melting power supply regulating module (1135), the ice-melting control switch (1133) and the ice-melting power supply regulating module (1135) are respectively connected to the ice-melting PLC controller (1137), and the liquid level sensor (109) and the circulating water pump (112) are respectively connected to the ice-melting PLC controller (1137).
5. The multi-power module diesel heating ice-melting and snow-melting water making device according to claim 1 is characterized in that: Casters (204) are respectively connected to the corners of the bottom of the support frame (201), and the support frame (201) is connected to a heat dissipation protection plate (208) corresponding to a diesel-heating power supply adjustment module (206) and a diesel-heating mobile power supply (207).
6. The multi-power module diesel heating ice-melting and snow-melting water making device according to claim 5 is characterized in that: The diesel heater electric control component (202) comprises a diesel heater electric control box (2021) connected to the support frame (201); a diesel heater control switch (222) and a diesel heater PLC controller (2023) are connected to the diesel heater electric control box (2021); the diesel heater control switch (222) is connected to the diesel heater PLC controller (223); and the diesel heater PLC controller (2023) is connected to the diesel heater fan (203); The power conversion assembly (205) comprises a conversion frame (2051) connected to the support frame (201); the conversion frame (2051) is connected to an AC connection switch (2052), an AC power interface (2053), a mobile power connection switch (2054), a DC power interface (2055), and a DC connection switch (2056); the AC power interface (2053) is connected to a diesel-heating power supply adjustment module (206) via the AC connection switch (2052); the diesel-heating mobile power supply (207) is connected to the diesel-heating power supply adjustment module (206) via the mobile power connection switch (2054); and the DC power interface (2055) and the DC connection switch (2056) are connected to the diesel-heating power supply adjustment module (206).
7. The multi-power module diesel heating ice-melting and snow-melting water making device according to claim 1 is characterized in that: The oil tank (209) is connected to an oil level gauge (210) and a refueling port (211).
8. The multi-power module diesel heating ice-melting and snow-melting water making device according to claim 1 is characterized in that: The side of the carrying box (301) is connected with a handle (302) and a shoulder strap (303).
9. The multi-power module diesel heating ice-melting and snow-melting water making device according to claim 1, characterized in that: The pipeline between the manual water-flow conversion valve (308) and the manual pump (310) is connected to a pressure gauge (309) embedded in the control panel (321), and the rotating rod of the manual pump (310) passes through the control panel (321).
10. The multi-power module diesel heating ice-melting and snow-melting water making device according to claim 1, characterized in that: The water purification module (315) comprises a PP cotton pre-filter element (3151), a granular activated carbon filter element (3152), a UF membrane filter element (3153), an RO membrane filter element (3154), and a post-activated carbon filter element (3155), wherein the PP cotton pre-filter element (3151) is connected to the granular activated carbon filter element (3152) via a pipeline, the granular activated carbon filter element (3152) is connected to the UF membrane filter element (3153) via a pipeline, and the UF membrane filter element (3154) is connected to the UF membrane filter element (3155). The water outlet of the UF membrane filter element (3153) is connected to the domestic water valve (305), the UF membrane filter element (3153) is connected to the RO membrane filter element (3154) through a pipeline, the water production conversion valve (307) is connected to the pipeline between the UF membrane filter element (3153) and the RO membrane filter element (3154), the RO membrane filter element (3154) is connected to the post-activated carbon filter element (3155) through a pipeline, and the post-activated carbon filter element (3155) is connected to the drinking water valve (304); The wastewater outlet of the RO membrane filter element (3154) is connected to a wastewater collection tank (317) disposed in the carrying box (301) via a pipeline; The pipe between the post-activated carbon filter element (3155) and the drinking water valve (304) is sleeved with a heating sleeve (316), and the heating sleeve (316) is connected to a water purification PLC controller (318).