Combined water and electricity separation water supply system

By designing a combined water-electricity separation water supply system, the problem of limited installation of water supply systems in old residential areas and other places has been solved, and flexible installation and construction optimization have been achieved to adapt to the needs of different installation locations.

CN116084509BActive Publication Date: 2025-09-05SHANGHAI ZHONGHAN DUKE PUMP MFG CO LTD
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Patent Information

Application Number
CN202310212272.7
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-03-07
Publication Date
2025-09-05
Estimated Expiration
2043-03-07

AI Technical Summary

Technical Problem

Traditional water supply systems are limited in installation in old residential areas and other places. Aging equipment leads to water pollution and it is impossible to replace them with new water supply systems.

Method used

A combined water-electricity separation water supply system is designed, including a control cabinet and water supply equipment. The control cabinet is installed above the water supply equipment and has temperature and humidity detection and water immersion detection functions. It can adapt to the requirements of different installation locations by delaying the system operation.

Benefits of technology

It solves the problem of limited area of ​​traditional pump room, reduces construction difficulty, optimizes installation method and realizes flexible installation solution.

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Abstract

An embodiment of the present invention provides a combined water-electricity separation water supply system, which includes a control cabinet and water supply equipment, wherein the control cabinet is arranged above the water supply equipment. The control cabinet includes an upper shell and a controller located inside the upper shell, and the water supply equipment includes a lower shell, a water pump located inside the lower shell, a temperature and humidity detection device, and a water immersion detection device located outside the lower shell. The temperature and humidity detection device is used to monitor the temperature and humidity inside the water supply equipment in real time, and the water immersion detection device is used to detect when the liquid level of the water pump exceeds the limit and stop the system operation by delaying. In this way, the embodiment of the present invention can solve the problem that the traditional pump room area is limited and large-scale integrated water supply equipment cannot be installed on site, reduce construction difficulty, and optimize the installation method.
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Description

Technical Field

[0001] The present invention relates to the technical field of water supply systems, and in particular to a combined water-electricity separation water supply system. Background Art

[0002] Water supply refers to the provision of water resources through public facilities, commercial organizations, community efforts or individuals, and water is usually transported through pumps and pipes. Water supply systems mainly obtain water from various sources that have been properly treated, including groundwater, surface water (lakes and rivers), and desalinated seawater. Water treatment steps generally include: purification, chlorination, and sometimes the addition of fluoridation agents. Treated water resources are collected into reservoirs by gravity or by pumping, and supplied through water towers or through ground facilities. After the water is used, the wastewater is generally discharged into the sewer system and treated in sewage treatment plants before being discharged into rivers, lakes, oceans, or reused for landscape, irrigation or industrial water.

[0003] In recent years, with the continuous improvement of people's living standards, water supply systems in schools, communities, and other places have become increasingly common, and the various demands on water supply systems have also received increasing attention. As a livelihood project, water supply has varying degrees of impact on the lives of residents, and water supply systems play a vital role in their lives.

[0004] However, at present, the installation area of ​​water supply systems in some places is limited. In particular, the equipment in old residential areas is prone to aging problems, and water pollution requires the replacement of new water supply systems. Due to the limitations of traditional pump room areas, general water supply systems cannot be installed. Summary of the Invention

[0005] An embodiment of the present application provides a combined water-electricity separation water supply system, which is used to solve the problem raised in the above-mentioned background technology that the installation area of ​​the water supply system in some places is limited at this stage, especially in old residential areas where equipment is prone to aging, and water pollution requires replacement of a new water supply system. Due to the limitations of the traditional pump room area, the general water supply system cannot be installed.

[0006] In order to achieve the above objectives, the embodiments of the present invention provide the following technical solutions:

[0007] An embodiment of the present invention provides a combined water-electricity separation water supply system, the water supply system comprising:

[0008] Control cabinet and water supply equipment;

[0009] The control cabinet is installed above the water supply equipment;

[0010] The control cabinet includes an upper shell and a controller located inside the upper shell;

[0011] The water supply equipment includes a lower shell, a water pump located inside the lower shell, a temperature and humidity detection device, and a water immersion detection device located outside the lower shell;

[0012] The temperature and humidity detection device is used to monitor the temperature and humidity inside the water supply equipment in real time;

[0013] The water immersion detection device is used to detect when the liquid level of the water pump exceeds the limit and stop the system operation by delaying.

[0014] On the basis of the above technical solution, the present invention can also be improved as follows.

[0015] In a possible implementation, when the installation location is not restricted, the control cabinet and the water supply equipment are fixedly connected by bolts;

[0016] When the installation location is limited, the control cabinet and water supply equipment are installed separately.

[0017] In one possible implementation, the control cabinet includes a control panel;

[0018] The control panel is arranged on one surface of the upper shell, and the control panel is connected to the controller;

[0019] The control panel is used to set parameters and display data after communicating with the controller.

[0020] In one possible implementation, the control cabinet further includes a heat dissipation device;

[0021] The heat dissipation device includes a first fan and an air intake filter, and the first fan and the air intake filter are arranged on the side surface inside the upper shell;

[0022] The heat sink is used to dissipate the heat in the control cabinet through convection.

[0023] In a possible implementation, the temperature and humidity detection device includes a first bracket and a first sensor;

[0024] The first bracket is fixed on the side surface inside the lower shell, and the first sensor is fixedly connected to the first bracket;

[0025] The first sensor is used to detect the temperature and humidity in the water supply equipment, and to dissipate heat or dehumidify the water by the heater according to the set value and the feedback value.

[0026] In one possible implementation, the water supply system further includes a second fan;

[0027] The second fan is provided on the side surface inside the lower housing;

[0028] The second fan is used to determine whether to start the second fan according to the temperature and humidity detected by the first sensor.

[0029] In one possible implementation, the water immersion detection device includes a second bracket and a second sensor;

[0030] The second bracket is fixed to the side surface of the lower shell, and the second sensor is fixedly connected to the second bracket;

[0031] The second sensor is used to detect when the liquid level of the water pump exceeds the limit, and the system operation is stopped by delaying. The second sensor also sends a fault alarm message which is transmitted to the central control platform through the controller.

[0032] In a possible implementation, the water supply equipment further includes sound insulation cotton;

[0033] The sound insulation cotton is arranged inside the lower shell, and the sound insulation cotton fits closely with the inside of the lower shell;

[0034] Sound insulation cotton is used to reduce the noise generated during the operation of water supply equipment.

[0035] In a possible implementation, the water supply device further includes a visualization glass;

[0036] The visualization glass is arranged in the lower shell;

[0037] The visual glass is used to observe the operation of the water pump inside the lower housing.

[0038] In a possible implementation, the water supply system further includes a base;

[0039] The base is arranged under the water supply equipment;

[0040] At least two forklift holes are provided on the base;

[0041] The combined water and electricity separation water supply system is fixed by reinforcing the inside of the forklift hole.

[0042] An embodiment of the present invention provides a combined water-electricity separation water supply system, which includes a control cabinet and water supply equipment, wherein the control cabinet is arranged above the water supply equipment. The control cabinet includes an upper shell and a controller located inside the upper shell, and the water supply equipment includes a lower shell, a water pump located inside the lower shell, a temperature and humidity detection device, and a water immersion detection device located outside the lower shell. The temperature and humidity detection device is used to monitor the temperature and humidity inside the water supply equipment in real time, and the water immersion detection device is used to detect when the liquid level of the water pump exceeds the limit and stop the system operation by delaying. In this way, the embodiment of the present invention can solve the problem that the traditional pump room area is limited and large-scale integrated water supply equipment cannot be installed on site, reduce construction difficulty, and optimize the installation method. BRIEF DESCRIPTION OF THE DRAWINGS

[0043] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the following is a brief introduction to the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative work.

[0044] Figure 1 A schematic diagram of the combined external structure of a combined water-electricity separation water supply system provided by one embodiment of the present invention;

[0045] Figure 2 A schematic diagram of the combined internal structure of a combined water-electricity separation water supply system provided by one embodiment of the present invention;

[0046] Figure 3 A schematic diagram of a combined side structure of a combined water-electricity separation water supply system provided by one embodiment of the present invention;

[0047] Figure 4 A schematic diagram of a separated external structure of a combined water-electricity separation water supply system provided by one embodiment of the present invention;

[0048] Figure 5 A schematic diagram of the separated internal structure of a combined water-electricity separation water supply system provided in one embodiment of the present invention;

[0049] Figure 6 A schematic diagram of a separated side structure of a combined water-electricity separation water supply system provided in one embodiment of the present invention.

[0050] Description of reference numerals:

[0051] 100-Combined water and electricity separation water supply system;

[0052] 200-control cabinet;

[0053] 210 - Upper housing; 211 - Nameplate; 212 - Upper housing door lock; 213 - Upper housing logo; 214 - Travel switch; 215 - Fluorescent lamp; 216 - Upper housing lifting ring; 217 - Upper housing mounting plate; 218 - Wire duct;

[0054] 220-controller; 221-control panel;

[0055] 230- heat dissipation device; 231- first fan; 232- air intake filter;

[0056] 300-water supply equipment;

[0057] 310-lower housing; 311-lower housing door lock; 312-lower housing logo; 313-lower housing lifting ring; 314-sound insulation cotton; 315-visual glass;

[0058] 320-water pump; 321-motor; 322-motor cover; 323-pressure tank;

[0059] 330-channel steel base;

[0060] 340-water inlet pipe; 341-first pipe; 342-second pipe; 343-water inlet two-piece ball valve; 344-inlet flange;

[0061] 350 - outlet pipe; 351 - third pipe; 352 - fourth pipe; 353 - outlet two-piece ball valve; 354 ​​- internal and external thread union; 355 - T-type check valve; 356 - outlet flange;

[0062] 360-support rod;

[0063] 370-pressure gauge; 371-exhaust valve; 372-one-piece ball valve;

[0064] 380 - temperature and humidity detection device; 381 - first bracket; 382 - first sensor; 383 - second fan;

[0065] 390 - water immersion detection device; 391 - second bracket; 392 - second sensor;

[0066] 400-base;

[0067] 410-Forklift hole. DETAILED DESCRIPTION

[0068] As described in the background technology, at the current stage, the installation area of ​​the water supply system is limited in some places, especially in old residential areas where equipment is prone to aging problems and water pollution requires replacement of new water supply systems. Due to the limitations of traditional pump room areas, general water supply systems cannot be installed.

[0069] In response to the above technical problems, an embodiment of the present invention provides a combined water-electricity separation water supply system, wherein the water supply system includes a control cabinet and water supply equipment, wherein the control cabinet is arranged above the water supply equipment. The control cabinet includes an upper shell and a controller located inside the upper shell, and the water supply equipment includes a lower shell, a water pump located inside the lower shell, a temperature and humidity detection device, and a water immersion detection device located outside the lower shell. The temperature and humidity detection device is used to monitor the temperature and humidity inside the water supply equipment in real time, and the water immersion detection device is used to detect when the liquid level of the water pump exceeds the limit, and stop the system operation by delaying. In this way, the embodiment of the present invention can solve the problem that the traditional pump room area is limited and large-scale integrated water supply equipment cannot be installed on site, reduce construction difficulty, and optimize the installation method.

[0070] In order to make the above-mentioned purposes, features and advantages of the embodiments of the present invention more obvious and easy to understand, the technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the embodiments described 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 making creative efforts shall fall within the scope of protection of the present invention.

[0071] refer to Figure 1 An embodiment of the present invention provides a combined water-electricity separation water supply system 100. The combined water-electricity separation water supply system 100 may include a control cabinet 200 and a water supply device 300. The control cabinet 200 may be disposed above the water supply device 300 and, accordingly, may be connected to the water supply device 300. In one possible implementation, the control cabinet 200 may be a rectangular cabinet and may include an upper housing 210 and an upper housing door (not shown). The upper housing door may be open or closed. The following describes the control cabinet 200 from several angles in conjunction with the accompanying drawings.

[0072] Continue to refer Figure 1 On the basis of the above embodiment, from the perspective of the exterior of the control cabinet 200, the exterior of the control cabinet 200 may include a nameplate 211, an upper shell door lock 212, and an upper shell identification 213. Among them, the side of the control cabinet 200 with the upper shell door is the front of the control cabinet 200. The nameplate 211 can be located at one corner of the front of the control cabinet 200 for staff to view. The upper shell door lock 212 can be located at one end of the front of the control cabinet 200 where the upper shell door can be opened and closed, so that the upper shell door can be opened or closed. The upper shell identification 213 can be located below the upper shell door lock 212 to play a certain warning role. The present invention does not limit the position of the nameplate 211 and the upper shell identification 213.

[0073] refer to Figure 2On the basis of the above embodiment, looking at the interior of the control cabinet 200, the interior of the control cabinet 200 may include a limit switch 214, a fluorescent lamp 215 and a controller 220. Among them, the limit switch 214 can be located at one end of the top of the control cabinet 200. It should be noted that the limit switch 214 can use the collision of the moving parts of the production machinery to cause its contacts to move to connect or disconnect the control circuit, thereby achieving a certain control purpose. In the embodiment of the present application, the limit switch 214 can be used to turn off or start the first fan 231. The fluorescent lamp 215 can be located at the top of the control cabinet 200 to achieve the lighting effect on the interior of the control cabinet 200. The controller 220 can be located inside the control cabinet 200 to control the entire combined water-electricity separation water supply system 100.

[0074] refer to Figure 3 Based on the above embodiment, from the side view of the control cabinet 200, the control cabinet 200 may further include an upper housing lifting ring 216, an upper housing mounting plate 217, and a wire duct 218. The upper housing lifting ring 216 may be located above the top of the control cabinet 200. There may be at least four upper housing lifting rings 216, and the four upper housing lifting rings 216 are located at the four corners of the rectangular shape of the control cabinet 200, so that the control cabinet 200 is stable during installation. The upper housing mounting plate 217 may be located on the back of the control cabinet 200. It should be noted that the back of the control cabinet 200 is opposite the front of the control cabinet 200. The upper housing mounting plate 217 may be fixed to the interior of the control cabinet 200 by fixing bolts. It is understood that the upper housing mounting plate 217 provides a certain installation location for components inside the control cabinet 200. For example, the upper housing mounting plate 217 can fix electrical components such as the controller 220 and the wire duct 218. A wire trough 218 can be located at one end of the upper housing mounting plate 217 and fixed to the upper housing mounting plate 217. The wire trough 218 can be used to organize wires and other cables in a standardized manner, making the overall wiring of the control cabinet 200 more aesthetically pleasing. The materials of the wire trough 218 can include, but are not limited to, environmentally friendly PVC wire trough 218, halogen-free PPO wire trough 218, halogen-free PC / ABS wire trough 218, or metal wire trough 218 such as steel or aluminum.

[0075] Continue to refer Figure 2 as well as Figure 3 Based on the above embodiment, the control cabinet 200 may further include a control panel 221. The control panel 221 may be located on the front of the control cabinet 200 and connected to the controller 220. The control panel 221 communicates with the controller 220 to intuitively display data and to set relevant parameters.

[0076] Continue to refer Figure 2On the basis of the above embodiment, the control cabinet 200 may further include a heat dissipation device 230. The heat dissipation device 230 may include a first fan 231 and an air intake filter 232. In one possible implementation, the first fan 231 and the air intake filter 232 may be provided on the same side surface inside the upper housing 210, wherein the first fan 231 is provided above the air intake filter 232, the number of the first fans 231 and the number of the air intake filter 232 are at least two, and the two first fans 231 are respectively located on the two side surfaces inside the upper housing 210, and the two first fans 231 are arranged opposite to each other. Correspondingly, the two air intake filters 232 are also respectively located on the two side surfaces inside the upper housing 210, and the two air intake filters 232 are arranged opposite to each other, so that the heat dissipation device 230 discharges the heat inside the control cabinet 200 through convection.

[0077] refer to Figure 4 In one possible implementation, the water supply device 300 may also be a rectangular cabinet. The water supply device 300 may include a lower housing 310 and a lower housing door (not shown). The size of the lower housing 310 may be greater than or equal to the size of the upper housing 210, and the lower housing door may be open or closed. The following describes the water supply device 300 from several angles, with reference to the accompanying drawings.

[0078] Continue to refer Figure 4 Based on the above embodiment, from the perspective of the exterior of the water supply device 300, the exterior of the water supply device 300 may include a lower housing door lock 311 and a lower housing identification mark 312. The side of the water supply device 300 having the cabinet door of the lower housing 310 is the front face of the water supply device 300. The lower housing door lock 311 may be located at one end of the front face of the water supply device 300 where the cabinet door of the lower housing 310 can be opened and closed, so that the cabinet door of the lower housing 310 can be opened or closed. The lower housing identification mark 312 may be located below the lower housing door lock 311 to serve as a warning. The present invention does not impose any restrictions on the location of the lower housing identification mark 312.

[0079] refer to Figure 6Based on the above embodiment, the interior of the water supply device 300 may include a water pump 320. Furthermore, the water pump 320 may include a motor 321, a motor cover 322, a pressure tank 323, and multiple valves. The water pump 320 is driven by the motor 321 to transport liquid. The motor cover 322 may be mounted over the motor 321, interlocking with the motor 321 and effectively preventing the motor 321 from grounding. In one possible implementation, there may be two motors 321 and two motor covers 322. From the front of the water supply device 300, the two motors 321 may be arranged side by side. The pressure tank 323 may be located above the motor 321 to balance the water volume and pressure. A channel steel base 330 may be provided below the motor 321 to support other components, such as the motor 321 and the pressure tank 323.

[0080] refer to Figure 5 as well as Figure 6 Based on the above embodiment, the water pump 320 may further include an inlet pipe 340 and an outlet pipe 350, wherein the inlet pipe 340 may be located below the outlet pipe 350, and a support rod 360 may be provided between the inlet pipe 340 and the outlet pipe 350 to support the inlet pipe 340 and the outlet pipe 350. A first pipe 341 perpendicular to the inlet pipe 340 may be provided in the middle of the inlet pipe 340. The first pipe 341 may be connected to the motor 321, and a second pipe 342 perpendicular to the first pipe 341 may be provided in the middle of the first pipe 341. The second pipe 342 is connected to the outlet pipe 350 via a two-piece water inlet ball valve 343. A third pipe 351, perpendicular to the outlet pipe 350, may be provided at one end of the midsection of the outlet pipe 350. This third pipe 351 may be connected to the pressure tank 323 via a two-piece ball valve. A fourth pipe 352, perpendicular to the outlet pipe 350, may be provided at the other end of the midsection of the outlet pipe 350. This fourth pipe 352 is connected to the motor 321 via a two-piece outlet ball valve 353, a male and female threaded union 354, and a T-type check valve 355. From the front of the water supply device 300, inlet flanges 344 may be provided at both ends of the inlet pipe 340. Correspondingly, outlet flanges 356 may be provided at both ends of the outlet pipe 350 to secure and seal the inlet and outlet pipes 340 and 350.

[0081] Continue to refer Figure 5 as well as Figure 6On the basis of the above embodiment, a pressure gauge 370 can be further provided above the water outlet pipe 350. The pressure gauge 370 and the water outlet pipe 350 can be connected via an exhaust valve 371 and a one-piece ball valve 372. The pressure gauge 370 can be used to measure the outlet pressure of the water pump 320 and monitor whether the water pump 320 is operating normally.

[0082] Continue to refer Figure 5 Based on the above embodiment, the water supply device 300 may further include a temperature and humidity detection device 380. Furthermore, the temperature and humidity detection device 380 may include a first bracket 381 and a first sensor 382. In one possible implementation, the first bracket 381 may be fixed to one of the side surfaces inside the lower housing 310, and the first sensor 382 is fixedly connected to the first bracket 381. The first sensor 382 is used to detect the temperature and humidity inside the water supply device 300, dissipating heat or using a heater to dehumidify according to the set value and feedback value, thereby ensuring that the water supply device 300 is always in a constant temperature and humidity state.

[0083] Continue to refer Figure 5 Based on the above embodiment, the water supply device 300 may further include a second fan 383. The second fan 383 is located on one of the side surfaces of the lower housing 310. In one possible implementation, the second fan 383 and the temperature and humidity detection device 380 may be located on the same side surface of the lower housing 310, and the second fan 383 may be located above the temperature and humidity detection device 380. Furthermore, there are at least two second fans 383, each located on two side surfaces of the lower housing 310. The two second fans 383 are positioned opposite each other so that the second fans 383 dissipate heat from the water supply device 300 through convection. The first sensor 382 in the temperature and humidity detection device 380 detects the temperature and humidity within the water supply device 300 and determines whether to activate the second fan 383 based on the set value and feedback value, thereby dissipating heat or using the heater for dehumidification, further ensuring that the water supply device 300 is always maintained at a constant temperature and humidity.

[0084] Among them, the temperature and humidity detection device 380 can monitor the temperature and humidity conditions inside the water supply equipment 300 in real time. The heat generated when the water pump 320 is running is monitored by the first sensor 382, ​​and the actual value obtained is compared with the set value. When the actual value is higher than the set value, the second fan 383 is started with a delay to form natural ventilation for heat dissipation. When the humidity in the water supply equipment 300 reaches a certain level, the heater will be turned on for dehumidification, thereby ensuring that the water supply equipment 300 is in a constant temperature and humidity state.

[0085] Continue to refer Figure 5 as well as Figure 6 On the basis of the above embodiment, viewed from the side of the water supply equipment 300, the water supply equipment 300 may include a lower shell hanging ring 313. The lower shell hanging ring 313 may be located above the top of the water supply equipment 300, and the number of the lower shell hanging ring 313 is at least four, and the four lower shell hanging rings 313 are respectively located at the four corners of the rectangle of the water supply equipment 300, so that the water supply equipment 300 tends to be stable during the installation process. The water supply equipment 300 may also include a water immersion detection device 390, and the water immersion detection device 390 may be located on one of the side surfaces outside the water supply equipment 300. Furthermore, the water immersion detection device 390 may include a second bracket 391 and a second sensor 392. In one possible implementation, the second bracket 391 is fixed on one of the side surfaces outside the lower shell 310, and the second sensor 392 is fixedly connected to the second bracket 391. Among them, the second sensor 392 is used to detect that when the liquid level of the water pump 320 exceeds the limit, the system operation is stopped by delaying, and the second sensor 392 sends a fault alarm message which is transmitted to the central control platform through the controller 220.

[0086] Among them, when the liquid level of the water pump 320 overflows to the second sensor 392, an audible and visual alarm can be automatically issued through a delay, and the operation of the water pump 320 can be stopped at the same time. This fault information can be uploaded to the central control platform through the controller 220 to realize remote monitoring and remote visualization.

[0087] Continue to refer Figure 5 Based on the above embodiment, the water supply device 300 may further include sound insulation cotton 314. The sound insulation cotton 314 may be disposed within the lower housing 310, and the sound insulation cotton 314 may be in close contact with the interior of the lower housing 310. In one possible implementation, the sound insulation cotton 314 may be disposed around the interior of the rectangular cabinet of the lower housing 310, thereby reducing noise generated during operation of the water supply device 300.

[0088] Continue to refer Figure 4 Based on the above embodiment, the water supply device 300 may further include a visualization glass 315. The visualization glass 315 may be disposed within the lower housing 310. In one possible implementation, the visualization glass 315 may be a rectangular cabinet, and the rectangular dimensions of the visualization glass 315 should be smaller than those of the lower housing 310 to allow the visualization glass 315 to be installed within the lower housing 310. The visualization glass 315 can be used to observe the operating status of the water pump 320 within the lower housing 310, thereby monitoring the working status of the water pump 320 in real time.

[0089] Continue to refer Figure 4Based on the above embodiment, the water supply system may further include a base 400. The base 400 may be disposed below the water supply device 300. In one possible implementation, the base 400 may be rectangular, and the size of the base 400 may be the same as that of the upper housing 210 and the lower housing 310, so that the base 400 can be supported by the upper housing 210 and the lower housing 310.

[0090] Continue to refer Figure 4 On the basis of the above embodiment, in order to further support and fix the upper shell 210 and the lower shell 310, at least two forklift holes 410 can be opened on the base 400, and reinforcement is achieved by welding reinforcing ribs inside the forklift holes 410 to further fix the entire combined water-electricity separation water supply system 100.

[0091] In the entire combined water-electricity separation water supply system 100, when the installation location in the actual work site is not restricted, such as Figure 1 、 Figure 2 as well as Figure 3 As shown, the control cabinet 200 and the water supply equipment 300 can be fixedly connected by bolts, thereby enabling the combined water-electricity separation water supply system 100 to work normally. Figure 4 、 Figure 5 as well as Figure 6 As shown, the control cabinet 200 and water supply equipment 300 can be installed separately. In one possible implementation, the control cabinet 200 can be placed in an unrestricted area such as a wall, reducing the difficulty of on-site construction and flexibly optimizing the installation process. The water supply equipment 300 in the embodiment of the present application can be shipped in an integrated state and can be directly fixed and installed using a forklift or crane, further reducing the construction difficulty.

[0092] The various embodiments or implementation methods in this specification are described in a progressive manner. Each embodiment focuses on the differences from other embodiments, and the same or similar parts between the various embodiments can be referenced to each other.

[0093] It should be noted that phrases such as "in a specific implementation," "in some embodiments," "in this embodiment," and "exemplarily" mentioned in the specification indicate that the described embodiment may include a particular feature, structure, or characteristic, but not every embodiment necessarily includes that particular feature, structure, or characteristic. Furthermore, such phrases do not necessarily refer to the same embodiment. Furthermore, when a particular feature, structure, or characteristic is described in conjunction with an embodiment, it is within the knowledge of those skilled in the art to implement such a feature, structure, or characteristic in conjunction with other embodiments, whether explicitly described or not.

[0094] Generally speaking, terms should be understood, at least in part, based on the context in which they are used. For example, as used herein, the term "one or more" can be used to describe any feature, structure, or characteristic in the singular sense, or can be used to describe a combination of features, structures, or characteristics in the plural sense, depending at least in part on the context. Similarly, terms such as "a," "an," or "the" can also be understood to convey either singular or plural usage, depending at least in part on the context.

[0095] It should be readily understood that “on,” “above,” and “over” in this disclosure should be interpreted in the broadest manner, such that “on” means not only “directly on something,” but also includes “on something” with intervening features or layers therebetween, and “above” or “over” includes not only the meaning of “above” or “over,” but also includes “above” or “over” with no intervening features or layers therebetween (i.e., directly on something).

[0096] Additionally, spatially relative terms, such as "below," "beneath," "beneath," "above," and the like, may be used herein for ease of description to describe the relationship of one element or feature relative to other elements or features as shown in the figures. Spatially relative terms are intended to encompass different orientations of the device in use or operation in addition to the orientation depicted in the figures. The device may be in other orientations (rotated 90 degrees or at other orientations), and the spatially relative descriptors used herein should be interpreted accordingly.

[0097] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention, rather than to limit it. Although the present invention has been described in detail with reference to the above embodiments, those skilled in the art should understand that they can still modify the technical solutions described in the above embodiments, or replace some or all of the technical features therein with equivalents. However, these modifications or replacements do not cause the essence of the corresponding technical solutions to deviate from the scope of the technical solutions of the embodiments of the present invention.

Claims

1. A combined water and electricity separation water supply system, characterized in that: The water supply system includes: a control cabinet and water supply equipment; The control cabinet is arranged on the water supply equipment; The control cabinet includes an upper shell and a controller located inside the upper shell; The water supply equipment includes a lower shell, a water pump located inside the lower shell, a temperature and humidity detection device, and a water immersion detection device located outside the lower shell; The temperature and humidity detection device is used to monitor the temperature and humidity inside the water supply equipment in real time; The water immersion detection device is used to detect that the liquid level of the water pump exceeds the limit and stop the system operation by delaying; When the installation position is not restricted, the control cabinet and the water supply equipment are fixedly connected by bolts; When the installation location is limited, the control cabinet is installed separately from the water supply equipment; The water supply system also includes a base; The base is arranged under the water supply equipment; At least two forklift holes are provided on the base; The combined water-electricity separation water supply system is fixed by reinforcing the inside of the forklift hole.

2. The combined water-electricity separation water supply system according to claim 1, characterized in that: The control cabinet includes a control panel; The control panel is arranged on one surface of the upper housing, and the control panel is connected to the controller; The control panel is used to set parameters and display data after communicating with the controller.

3. The combined water-electricity separation water supply system according to claim 2, characterized in that: The control cabinet also includes a heat dissipation device; The heat dissipation device includes a first fan and an air intake filter, wherein the first fan and the air intake filter are provided on a side surface inside the upper housing; The heat dissipation device is used to discharge the heat in the control cabinet through convection.

4. The combined water-electricity separation water supply system according to claim 1, characterized in that: The temperature and humidity detection device includes a first bracket and a first sensor; The first bracket is fixed to the side surface inside the lower shell, and the first sensor is fixedly connected to the first bracket; The first sensor is used to detect the temperature and humidity in the water supply equipment, and to dissipate heat or dehumidify the water using a heater according to a set value and a feedback value.

5. The combined water-electricity separation water supply system according to claim 4, characterized in that: The water supply system further includes a second fan; The second fan is provided on a side surface inside the lower housing; The second fan is used to determine whether to start the second fan according to the temperature and humidity detected by the first sensor.

6. The combined water-electricity separation water supply system according to claim 1, characterized in that: The water immersion detection device includes a second bracket and a second sensor; The second bracket is fixed to the side surface of the outer portion of the lower housing, and the second sensor is fixedly connected to the second bracket; The second sensor is used to detect that when the liquid level of the water pump exceeds the limit, the system operation is stopped by delaying, and the second sensor sends a fault alarm message which is transmitted to the central control platform through the controller.

7. The combined water-electricity separation water supply system according to any one of claims 1 to 6, characterized in that: The water supply equipment also includes sound insulation cotton; The sound insulation cotton is arranged inside the lower shell, and the sound insulation cotton is in close contact with the inside of the lower shell; The sound insulation cotton is used to reduce the noise generated during the operation of the water supply equipment.

8. The combined water-electricity separation water supply system according to any one of claims 1 to 6, characterized in that: The water supply equipment also includes visualization glass; The visualization glass is arranged in the lower shell; The visualization glass is used to observe the operation of the water pump inside the lower shell.

Citation Information

Patent Citations

  • A pump house water level monitoring alarm control system

    CN106610672A

  • Light new -type outdoor pressure -superposed water supply device

    CN205035855U