Energy-saving water mixing tank type water power module management system

By introducing a mixing tank management system into the hydraulic module, the mixed water supply control of different types of water is realized, which solves the problem of shortened equipment life caused by single water supply in the existing technology and improves the equipment's performance and lifespan.

CN117190072BActive Publication Date: 2026-02-27QINGDAO FLOW CONTROL TECH CO LTD
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Patent Information

Application Number
CN202311041040.6
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-08-18
Publication Date
2026-02-27
Estimated Expiration
2043-08-18

AI Technical Summary

Technical Problem

Existing hydraulic modules typically supply water only and require manual control, which reduces their effectiveness and shortens their lifespan.

Method used

The system adopts an energy-saving mixing tank-type hydraulic module management system, which includes a hydraulic mechanism, a main controller, a protection system, and an operating system. It can mix different types of water and reduces manual intervention and extends equipment life through high and low temperature, water shortage automatic protection, and high and low pressure protection.

Benefits of technology

This improved the performance of the hydraulic module, reduced the workload of staff, and extended the service life of the equipment.

✦ Generated by Eureka AI based on patent content.

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    Figure CN117190072B_ABST
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Abstract

The application relates to the technical field of hydraulic module management, and discloses an energy-saving water mixing tank type hydraulic module management system which comprises a hydraulic mechanism and a control cabinet, and the inside of the control cabinet is provided with a management module; the management module comprises a general controller, a protection system and an operating system; the protection system comprises a high-temperature and low-temperature protection unit, a water shortage automatic protection unit and a high-pressure and low-pressure protection unit; the operating system comprises a single-pump and double-pump automatic switching unit, a water pump operation frequency adjusting unit, a water pump control unit and a valve control operating unit; through the hydraulic mechanism, the general controller, the protection system and the operating system, the first pipe assembly and the second pipe assembly are externally connected with a central air conditioner water system air conditioner water, cooling water, sanitary hot water circulating conveying and other water medium conveying, and various types of water can be guided into the water mixing tank for mixing and use, the use effect of the hydraulic module is improved, the labor intensity of workers is reduced, and the service life of the hydraulic module equipment is prolonged.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of water mixing device management, and particularly relates to an energy-saving water mixing tank type water power module management system. BACKGROUND

[0002] Water system transportation and distribution refers to the process of transporting water from water sources to different users or target locations. It involves a series of facilities, pipelines and equipment for collecting, treating, storing and distributing water resources. The design and operation of water system transportation and distribution need to consider factors such as water supply, water quality, pipeline layout, water pressure management, etc. to ensure that water resources can be effectively transported to the places where they are needed and meet people's daily water demand.

[0003] The water power module is suitable for circulating transportation of central air conditioning water, cooling water, sanitary hot water and other water media. It can be used with any water circulating central air conditioning unit and is suitable for application with geothermal heat pump, air source heat pump, split solar energy, gas boiler and conventional clean water and water supply fields, etc. HVAC products.

[0004] According to the related technology in the above, the inventors believe that the following defects exist: the existing water power module usually performs single water supply when in use, cannot effectively manage and control the water supply, needs manual control by workers every time the water supply is performed, reduces the use effect of the water power module, and causes transportation to the equipment of the water power module, reduces the service life of the water power module equipment; therefore, an energy-saving water mixing tank type water power module management system is proposed. SUMMARY

[0005] (I) Technical problems solved

[0006] In view of the deficiencies of the prior art, the present application provides an energy-saving water mixing tank type water power module management system, which can transport different types of water and can guide different types of water into the water mixing tank for mixing use according to the demand, improves the use effect of the water power module, reduces the labor intensity of workers, and prolongs the service life of the water power module equipment.

[0007] (II) Technical solutions

[0008] The application adopts the following technical scheme: an energy-saving water mixing tank type water power module management system, which comprises a water power mechanism arranged on a bottom plate and a control cabinet connected with the water power mechanism, and a management module for managing and controlling the water power mechanism is arranged in the control cabinet; wherein the management module comprises a general controller arranged in the control cabinet, a protection system connected with the general controller and an operation system in communication with the general controller, and the general controller manages and controls the water power mechanism through the operation system; the protection system comprises a high / low temperature protection unit, an automatic water shortage protection unit and a high / low pressure protection unit, the high / low temperature protection unit can protect the high / low temperature inside the water mixing tank, the automatic water shortage protection unit can automatically supply water when the water mixing tank is short of water, and the high / low pressure protection unit can protect the water mixing tank from being pressurized or depressurized; and the operation system comprises a single / double pump automatic switching unit, a water pump operation frequency adjusting unit, a water pump control unit and a valve control operation unit.

[0009] Preferably, a standby power supply device connected with the general controller is arranged in the control cabinet, and the protection system further comprises a power supply protection unit connected with the standby power supply device, the standby power supply device can enable the water power mechanism and the general controller to work for a period of time after power failure, and the power supply protection unit can effectively protect the standby power supply device.

[0010] Preferably, the water power mechanism comprises a water mixing tank, a water tank arranged on one side of the control cabinet, a water pump assembly detachably arranged on the bottom plate and a pipeline assembly vertically arranged on the bottom plate, the water mixing tank is used for mixing different liquids, a first pipeline assembly is arranged on the water mixing tank, and a second pipeline assembly is arranged on the water tank, wherein the water pump assembly comprises a first water pump detachably arranged on one side of the water mixing tank, a second water pump detachably arranged on one side of the water tank and two groups of third water pumps arranged on the inner side of the pipeline assembly; the pipeline assembly comprises a first connecting pipe arranged on the two sides of the third water pump respectively and a second connecting pipe vertically fixed with the first connecting pipe, the second water pump and the third water pump can be externally connected with a central air conditioning water system air conditioning water, cooling water, sanitary hot water circulation conveying and other water medium conveying, and can be used with any water circulation central air conditioning unit, and the first water pump can discharge the water inside the water mixing tank to clean the water mixing tank.

[0011] Preferably, the first pipeline assembly comprises a first water pipe symmetrically fixed on the upper part of the outer wall of the water mixing tank, a second water pipe fixed on the lower part of one side wall of the water mixing tank and a third water pipe fixed on the lower part of the other side wall of the water mixing tank, one end of the third water pipe is connected with the first water pump, a fourth water pipe is arranged on the first water pump, the second water pipe is arranged in a "Z" type elbow pipe, and the first water pipe can be in communication with the second connecting pipe.

[0012] Preferably, the second pipeline assembly comprises a first conduit fixed on the water tank near the third water pump, a second conduit arranged on one side of the first conduit, and a third conduit fixed on the other side of the water tank, one end of the second conduit is communicated with the second water pump, the second water pump is provided with a fourth conduit communicated with the second water pipe, the third conduit is arranged in a "U" type elbow, and the third conduit is provided with a fifth conduit communicated with the water mixing tank.

[0013] Preferably, the third water pump is symmetrically provided with water guide pipes, both ends of the water guide pipes are respectively communicated with two groups of first connecting pipes, and the third water pump is communicated with the first water pipe through the first connecting pipes and the water mixing tank.

[0014] Preferably, both ends of the first water pipe, one end of the second connecting pipe, one end of the second water pipe, one end of the fourth water pipe and one end of the first conduit can be externally connected with equipment.

[0015] Preferably, the valve control operation unit comprises a plurality of groups of control valves, the plurality of groups of control valves are respectively arranged on the pipeline assembly, the first pipeline assembly and the second pipeline assembly, and the total controller controls the opening and closing of the pipeline assembly, the first pipeline assembly and the second pipeline assembly through the control valves.

[0016] Preferably, the water shortage automatic protection unit comprises a water level sensor arranged on the water mixing tank, the high-temperature and low-temperature protection unit comprises a temperature sensor arranged on the water mixing tank, and the high-pressure and low-pressure protection unit comprises a pressure sensor arranged on the water mixing tank.

[0017] Preferably, the water pump control unit can control the opening and closing of the first water pump, the second water pump and the third water pump, the water pump operation frequency adjusting unit can control the output power of the first water pump, the second water pump and the third water pump, and the single-dual pump automatic switching unit can control one group of third water pumps or two groups of third water pumps to work.

[0018] (Three) beneficial effects

[0019] Compared with the prior art, the application provides an energy-saving water mixing tank type water power module management system, which has the following beneficial effects:

[0020] The energy-saving water mixing tank type water power module management system can be externally connected with central air conditioning water, cooling water, sanitary hot water circulation and other water medium delivery of the central air conditioning water system through the first pipeline assembly and the second pipeline assembly, and can guide various types of water into the water mixing tank for mixing use according to requirements, thereby improving the use effect of the water power module, reducing the labor intensity of workers, and prolonging the service life of the water power module equipment. BRIEF DESCRIPTION OF DRAWINGS

[0021] Fig. 1 is a schematic diagram of the whole structure of the present application;

[0022] Fig. 2 is a schematic diagram of the local structure of the hydraulic mechanism in the present application.

[0023] Fig. 3 is a schematic diagram of the local structure of the management module in the present application

[0024] In the figure: 1, control cabinet; 2, water mixing tank; 3, water tank; 4, first water pump; 5, second water pump; 6, third water pump; 7, first connecting pipe; 8, second connecting pipe; 9, first water pipe; 10, second water pipe; 11, third water pipe; 12, fourth water pipe; 13, first guide pipe; 14, second guide pipe; 15, third guide pipe; 16, fourth guide pipe; 17, water guide pipe; 18, control valve; 19, water level sensor; 20, temperature sensor. DETAILED DESCRIPTION

[0025] In the following, the present application will be further described in conjunction with the accompanying drawings and specific embodiments, and it should be noted that the following described embodiments or technical features can be combined in any manner to form new embodiments without conflict.

[0026] Embodiment 1: Please refer to Figs. 1-3 The energy-saving water mixing tank type hydraulic module management system of the present embodiment comprises a hydraulic mechanism arranged on a bottom plate and a control cabinet 1 connected with the hydraulic mechanism, and a management module for managing and controlling the hydraulic mechanism is arranged inside the control cabinet 1; wherein the management module comprises a general controller arranged inside the control cabinet 1, a protection system connected with the general controller, and an operation system in communication with the general controller, and the general controller manages and controls the hydraulic mechanism through the operation system; the protection system comprises a high / low temperature protection unit, an automatic water shortage protection unit, and a high / low pressure protection unit, the high / low temperature protection unit can protect the high / low temperature inside the water mixing tank 2 from rising or falling, the automatic water shortage protection unit can automatically supply water when the water mixing tank 2 is short of water, and the high / low pressure protection unit can protect the water mixing tank 2 from being pressurized or depressurized; the operation system comprises a single / double pump automatic switching unit, a water pump running frequency adjusting unit, a water pump control unit, and a valve control operation unit.

[0027] The hydraulic module integrates water pumps, valves, safety components, automatic water supply, bypass water supply, system cleaning and sewage components, and control, discards the original complex machine room and complicated control system, has compact design, and occupies an area of only 1-2 square meters per single unit.

[0028] The hydraulic module has the functions of one machine room, and can shorten the construction of more than 2 machine rooms to the installation of one unit in 2 hours, thereby saving more than 70% of the construction time and material cost.

[0029] The original various components and equipment of the hydraulic module in the machine room are integrated in a closed unit, reducing the damage of human and environment to the equipment, improving the service life of the equipment by more than 40%, and reducing the maintenance and repair costs.

[0030] The core components of the hydraulic module are designed and selected by professionals, and are strictly tested and debugged. The pipelines in the unit are all made of galvanized pipes and copper materials, ensuring the excellent and reliable performance of the whole machine.

[0031] The hydraulic module system can communicate with the main machine and indoor terminal for intelligent control, and can realize the function of automatic switching in seasons, real-time monitoring during operation, and improving the stability of the whole engineering system by more than 30% compared with the traditional distributed machine room technology.

[0032] The inside of the control cabinet 1 is provided with a backup power supply device connected with the general controller, and the protection system further includes a power protection unit connected with the backup power supply device. The backup power supply device can enable the hydraulic mechanism and the general controller to work for a period of time after power failure, and the power protection unit can effectively protect the backup power supply device.

[0033] The hydraulic mechanism includes a water mixing tank 2, a water tank 3 arranged on one side of the control cabinet 1, a water pump assembly detachably installed on the bottom plate, and a pipeline assembly vertically installed on the bottom plate. The water mixing tank 2 is used for mixing different liquids, and the water mixing tank 2 is provided with a first pipeline assembly. The water tank 3 is provided with a second pipeline assembly. The water pump assembly includes a first water pump 4 detachably installed on one side of the water mixing tank 2, a second water pump 5 detachably installed on one side of the water tank 3, and two groups of third water pumps 6 arranged on the inner side of the pipeline assembly. The pipeline assembly includes a first connecting pipe 7 arranged on both sides of the third water pump 6 and a second connecting pipe 8 vertically fixed with the first connecting pipe 7. The second water pump 5 and the third water pump 6 can be externally connected to the central air conditioning water system, cooling water, sanitary hot water circulation and other water medium delivery through the first pipeline assembly and the second pipeline assembly, and can be used with any water circulation central air conditioning unit. The first water pump 4 can discharge the water in the water mixing tank 2 to clean the water mixing tank 2.

[0034] The first pipeline assembly includes a first water pipe 9 symmetrically fixed on the upper part of the outer wall of the water mixing tank 2, a second water pipe 10 fixed on the lower part of one side wall of the water mixing tank 2, and a third water pipe 11 fixed on the lower part of the other side wall of the water mixing tank 2. One end of the third water pipe 11 is connected with the first water pump 4. The first water pump 4 is provided with a fourth water pipe 12. The second water pipe 10 is arranged in a "Z" type elbow pipe. The first water pipe 9 can be communicated with the second connecting pipe 8.

[0035] The second pipe assembly comprises a first pipe 13 fixed on the water tank 3 near the third water pump 6, a second pipe 14 arranged on one side of the first pipe 13, and a third pipe 15 fixed on the other side of the water tank 3, one end of the second pipe 14 being communicated with the second water pump 5, the second water pump 5 being provided with a fourth pipe 16 communicated with the second water pipe 10, the third pipe 15 being arranged in a "U" shape, and the third pipe 15 being provided with a fifth pipe communicated with the water mixing tank 2.

[0036] The third water pump 6 is symmetrically provided with water guide pipes 17, both ends of the water guide pipes 17 being communicated with the two groups of first connecting pipes 7 respectively, and the third water pump 6 being communicated with the water mixing tank 2 through the first connecting pipes 7 and the first water pipe 9.

[0037] Both ends of the first water pipe 9, one end of the second connecting pipe 8, one end of the second water pipe 10, one end of the fourth water pipe 12, and one end of the first pipe 13 can be externally connected with devices.

[0038] The valve control operation unit comprises a plurality of groups of control valves 18, the plurality of groups of control valves 18 being arranged on the pipe assembly, the first pipe assembly, and the second pipe assembly respectively, and the total controller controls the opening and closing of the pipe assembly, the first pipe assembly, and the second pipe assembly through the control valves 18.

[0039] The water shortage automatic protection unit comprises a water level sensor 19 arranged on the water mixing tank 2, the high-temperature and low-temperature protection unit comprises a temperature sensor 20 arranged on the water mixing tank 2, and the high-pressure and low-pressure protection unit comprises a pressure sensor arranged on the water mixing tank 2.

[0040] The water pump control unit can control the start and stop of the first water pump 4, the second water pump 5, and the third water pump 6, the water pump operation frequency adjusting unit can control the output power of the first water pump 4, the second water pump 5, and the third water pump 6, and the single and double pump automatic switching unit can control one group of third water pumps 6 or two groups of third water pumps 6 to work.

[0041] The implementation principle of the energy-saving water mixing tank type water power module management in the embodiment is as follows: the first water pump 4 is connected with the third water pipe 11 and the fourth water pipe 12 respectively, the second water pump 5, the second pipe 14, and the second water pipe 10 are communicated, and the two groups of third water pumps 6 are communicated with the first water pipe 9 and the second connecting pipe 8 respectively, the start or stop of the first water pump 4, the second water pump 5, and the third water pump 6 is controlled through the water pump control unit, so that the water power module supplies water or guides various types of water into the water mixing tank 2 for mixing use.

[0042] The energy-saving water mixing tank type water power module management system can circulate and transport the central air conditioner water, cooling water, sanitary hot water and other water medium through the first pipeline assembly and the second pipeline assembly by the water power mechanism, the total controller, the protection system and the operation system, and can guide various water into the water mixing tank 2 for mixing use according to the requirement, so that the use effect of the water power module is improved, the labor intensity of the staff is reduced, and the service life of the water power module equipment is prolonged.

[0043] The above-mentioned embodiments are only preferred embodiments of the present application, and cannot be used to limit the protection scope of the present application. Any non-essential changes and replacements made by those skilled in the art on the basis of the present application shall fall within the protection scope of the present application.

Claims

1. An energy-saving water mixing tank type hydraulic module management system comprising a hydraulic mechanism provided on a base plate and a control cabinet (1) connected with the hydraulic mechanism, characterized in that, The inside of the control cabinet (1) is provided with a management module for managing and controlling the water power mechanism; The management module comprises a general controller arranged in the inside of the control cabinet (1), a protection system connected with the general controller, and an operation system in communication with the general controller; The protection system comprises a high-temperature and low-temperature protection unit, a water shortage automatic protection unit, and a high-pressure and low-pressure protection unit; The operation system comprises a single and double pump automatic switching unit, a water pump operation frequency adjusting unit, a water pump control unit, and a valve control operation unit; The inside of the control cabinet (1) is provided with a standby power supply device connected with the general controller, and the protection system further comprises a power supply protection unit connected with the standby power supply device; The water power mechanism comprises a water mixing tank (2), a water tank (3) arranged on one side of the control cabinet (1), a water pump assembly detachably mounted on the bottom plate, and a pipeline assembly vertically mounted on the bottom plate, the water mixing tank (2) is provided with a first pipeline assembly, and the water tank (3) is provided with a second pipeline assembly, wherein: The water pump assembly comprises a first water pump (4) detachably mounted on one side of the water mixing tank (2), a second water pump (5) detachably mounted on one side of the water tank (3), and two groups of third water pumps (6) arranged on the inner side of the pipeline assembly; The pipeline assembly comprises a first connecting pipe (7) arranged on both sides of the third water pump (6) respectively, and a second connecting pipe (8) vertically fixed with the first connecting pipe (7); The first pipeline assembly comprises a first water pipe (9) symmetrically fixed on the upper part of the outer wall of the water mixing tank (2), a second water pipe (10) fixed on the lower part of one side wall of the water mixing tank (2), and a third water pipe (11) fixed on the lower part of the other side wall of the water mixing tank (2), one end of the third water pipe (11) is connected with the first water pump (4), the first water pump (4) is provided with a fourth water pipe (12), the second water pipe (10) is arranged as a "Z" type elbow pipe, and the first water pipe (9) can be in communication with the second connecting pipe (8); The second pipeline assembly comprises a first guide pipe (13) fixed on one side of the water tank (3) close to the third water pump (6), a second guide pipe (14) arranged on one side of the first guide pipe (13), and a third guide pipe (15) fixed on the other side of the water tank (3), one end of the second guide pipe (14) is in communication with the second water pump (5), the second water pump (5) is provided with a fourth guide pipe (16) in communication with the second water pipe (10), the third guide pipe (15) is arranged as a "U" type elbow pipe, and the third guide pipe (15) is provided with a fifth guide pipe in communication with the water mixing tank (2).

2. An energy saving hydronic modular tank management system as set forth in claim 1, characterized in that, The third water pump (6) is symmetrically provided with a water guide pipe (17), both ends of the water guide pipe (17) are respectively in communication with the two groups of first connecting pipes (7), and the third water pump (6) can be in communication with the water mixing tank (2) through the first connecting pipe (7) and the first water pipe (9).

3. An energy saving hydronic modular tank management system as set forth in Claim 2, wherein, Both ends of the first water pipe (9), one end of the second connecting pipe (8), one end of the second water pipe (10), one end of the fourth water pipe (12), and one end of the first guide pipe (13) can be externally connected with equipment.

4. An energy saving hydronic modular tank management system as set forth in claim 2, wherein, The valve control operation unit comprises a plurality of sets of control valves (18), and the control valves (18) are respectively arranged on the pipeline assemblies, the first pipeline assembly and the second pipeline assembly. The total controller controls the opening and closing of the pipeline assemblies, the first pipeline assembly and the second pipeline assembly through the control valves (18).

5. An energy saving hydronic modular tank management system as set forth in claim 3, wherein, The water shortage automatic protection unit comprises a water level sensor (19) arranged on the water mixing tank (2), the high-low temperature protection unit comprises a temperature sensor (20) arranged on the water mixing tank (2), and the high-low pressure protection unit comprises a pressure sensor arranged on the water mixing tank (2).

6. An energy saving hydronic modular tank management system as set forth in Claim 4, wherein, The water pump control unit can control the opening and closing of the first water pump (4), the second water pump (5) and the third water pump (6), the water pump operation frequency adjusting unit can control the output power of the first water pump (4), the second water pump (5) and the third water pump (6), and the single-double pump automatic switching unit can control one set of third water pumps (6) or two sets of third water pumps (6) to work.

Citation Information

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