CN219863082U - Water tank controller - Google Patents

Water tank controller Download PDF

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Publication number
CN219863082U
CN219863082U CN202320674202.9U CN202320674202U CN219863082U CN 219863082 U CN219863082 U CN 219863082U CN 202320674202 U CN202320674202 U CN 202320674202U CN 219863082 U CN219863082 U CN 219863082U
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China
Prior art keywords
water
water tank
air inlet
heat dissipation
frame
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CN202320674202.9U
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Chinese (zh)
Inventor
熊代兵
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Chengdu Ningshui Technology Co ltd
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Chengdu Ningshui Technology Co ltd
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Priority to CN202320674202.9U priority Critical patent/CN219863082U/en
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Abstract

The utility model discloses a water tank controller, which relates to the field of controllers and comprises a water tank, wherein an air inlet drying assembly comprises an air inlet fan, a first filter screen, a heater and an electric heating tube, and a heat radiating assembly comprises a heat conducting plate, a heat radiating fan and a second filter screen.

Description

Water tank controller
Technical Field
The utility model relates to the field of controllers, in particular to a water tank controller.
Background
In the construction process of high-rise buildings, under-pressure municipal pipe network tap water flows into the water tank for storage, then the booster pump of the constant-pressure secondary water supply system is controlled by related equipment to pump water out of the water tank for pressurization, the water tank controller is used for controlling the liquid level in the water tank and the like through pipelines, in the actual use process, a large amount of tap water is accumulated in the water tank, the surface of the water tank and the surrounding environment are moist relatively, when weather environment is in overcast and rainy days, the moisture is more serious, the water tank controller is arranged on the water tank, moist water vapor permeates into the water tank controller, the water vapor adheres to the surface of internal elements of the water tank controller, the internal elements of the water tank controller are damaged easily over time, and the service life of the water tank controller is influenced.
Therefore, it is necessary to invent a water tank controller to solve the above problems.
Disclosure of Invention
The utility model aims to provide a water tank controller, which aims to solve the problems that wet water vapor permeates into the water tank controller and adheres to the surfaces of internal elements of the water tank controller, so that the internal elements of the water tank controller are easily damaged over time, and the service life of the water tank controller is influenced.
In order to achieve the above purpose, the present utility model provides the following technical solutions: the utility model provides a water tank controller, includes the water tank, water tank controller is installed to the right flank of water tank, water tank controller's surface is provided with water cooling assembly, and water tank controller's surface is provided with return water subassembly, water tank controller's rear surface installs the air inlet frame, the inside of air inlet frame is provided with the dry subassembly of air inlet, the dry subassembly of air inlet includes air inlet fan, first filter screen, heater and electrothermal tube, the air inlet fan is provided with the multiunit, the multiunit air inlet fan array is installed at the preceding lateral wall of air inlet frame, a plurality of fresh air inlet has been seted up on the preceding lateral wall of air inlet frame, water tank controller's preceding surface mounting has the heat dissipation frame, the inside of heat dissipation frame is provided with the radiator module, the radiator module includes heat-conducting plate, heat dissipation fan and second filter screen, the heat dissipation fan is provided with the multiunit the heat dissipation fan array is installed at the back lateral wall of heat dissipation frame, a plurality of louvres have been seted up on the back lateral wall of heat dissipation frame.
Preferably, the water cooling assembly comprises a water inlet pipe, a water inlet pump, a water inlet pipe and a cooling pipe, wherein the left end of the water inlet pipe is inserted into the water tank, the right end of the water inlet pipe is arranged on the surface of the input end of the water inlet pump, the lower end of the water inlet pipe is arranged on the surface of the output end of the water inlet pump, the upper end of the water inlet pipe is fixed on the lower surface of the cooling pipe, the cooling pipe is in an S-shaped structure, and the cooling pipe is arranged in the water tank controller.
Preferably, the return water assembly comprises a water outlet pipe, a return water pump and a return water pipe, wherein the lower end of the water outlet pipe is arranged on the upper surface of the cooling pipe, the upper end of the water outlet pipe is arranged on the surface of the input end of the return water pump, the lower end of the return water pipe is arranged on the surface of the output end of the return water pump, and the upper end of the return water pipe is arranged on the upper surface of the water tank and is communicated with the interior of the water tank.
Preferably, the first filter screen is installed on the inner wall of the rear end part of the air inlet frame, and the first filter screen is arranged at the rear end of the air inlet fan.
Preferably, the heater is installed on the upper surface of the air inlet frame in a threaded manner, the input end of the electric heating tube is installed on the surface of the output end of the heater, the electric heating tube is fixed in the air inlet frame, and the electric heating tube is arranged between the air inlet fan and the first filter screen.
Preferably, the second filter screen is installed at the front end portion side wall of the heat dissipation frame, and the second filter screen is arranged at the front end of the heat dissipation fan, the heat conducting plate is fixed on the rear surface of the heat dissipation frame, the heat dissipation groove is formed in the front surface of the water tank controller, and the heat conducting plate is installed in the heat dissipation groove.
The utility model has the technical effects and advantages that:
1. through setting up water-cooling assembly and return water subassembly, the water tank controller is in the use, when being in the environment that the temperature is relatively high, take out the water in the water tank through the intake pump, then guide into the inside of cooling tube through the intake pipe, the cooling tube is in the inside of water tank controller, realize the inside water-cooling heat dissipation of water tank controller, after a period of time, start the return water pump and take out the water in the cooling tube by the outlet pipe, then flow back to the inside of water tank through the return water pipe, realize the hydrologic cycle, can make the water in the cooling tube keep in low temperature state, the water-cooling radiating effect is good;
2. through setting up air inlet drying module and radiator unit, start air inlet fan and radiator fan, heat that produces in the water tank controller is to heat dissipation frame one side guide through air inlet fan and heat-conducting plate, then discharge to the external world through radiator fan, realize wind-force heat dissipation, when the moisture around the water tank controller is heavier, start the heater and heat the electrothermal tube, after heating, start the inside that air inlet fan will heat the air current after the drying leading-in water tank controller, discharge the moist gas in the water tank controller through the heat-conducting plate, keep relative dry state in the messenger's water tank controller, improve the quality of use and the life-span of each component in the water tank controller, and a structure is simple, and is fit for promoting.
Drawings
Fig. 1 is a schematic diagram of a water tank controller according to the present utility model.
FIG. 2 is a schematic diagram of the connection structure between the water cooling assembly and the backwater assembly according to the present utility model.
Fig. 3 is a schematic diagram of a side-sectional connection structure of an air inlet drying assembly of the utility model.
Fig. 4 is a schematic diagram of a side-sectional connection structure of a heat dissipating component according to the present utility model.
In the figure: 1. a water tank; 2. a water tank controller; 3. a water cooling assembly; 301. a water inlet pipe; 302. a water inlet pump; 303. a water inlet pipe; 304. a cooling tube; 4. a backwater assembly; 401. a water outlet pipe; 402. a water return pump; 403. a water return pipe; 5. an air inlet frame; 6. an air inlet drying assembly; 601. an air inlet fan; 602. a first filter screen; 603. a heater; 604. an electric heating tube; 7. a heat dissipation frame; 8. a heat dissipation assembly; 801. a heat conductive plate; 802. a heat radiation fan; 803. and a second filter screen.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present utility model, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
The utility model provides a water tank controller as shown in fig. 1-4, which comprises a water tank 1, wherein the right side surface of the water tank 1 is provided with a water tank controller 2, the surface of the water tank controller 2 is provided with a water cooling component 3, the water cooling component 3 comprises a water inlet pipe 301, a water inlet pump 302, a water inlet pipe 303 and a cooling pipe 304, the left end of the water inlet pipe 301 is inserted into the water tank 1, the right end of the water inlet pipe 301 is arranged on the surface of the input end of the water inlet pump 302, the lower end of the water inlet pipe 303 is arranged on the surface of the output end of the water inlet pump 302, the upper end of the water inlet pipe 303 is fixed on the lower surface of the cooling pipe 304, the cooling pipe 304 is in an S-shaped structure, and the cooling pipe 304 is arranged in the water tank controller 2, and the following is needed to be explained: the cooling pipe 304 is arranged at a gap position in the water tank controller 2, the cooling pipe 304 is positioned at a side end position of a heating device in the water tank controller 2, when the water tank controller 2 is in a relatively high-temperature environment in the use process, water in the water tank 1 is pumped out through the water inlet pump 302 and then is led into the cooling pipe 304 through the water inlet pipe 303, and the cooling pipe 304 is positioned in the water tank controller 2, so that water cooling and heat dissipation of the water tank controller 2 are realized.
The surface of water tank controller 2 is provided with return water subassembly 4, return water subassembly 4 includes outlet pipe 401, return water pump 402 and wet return 403, the upper surface at cooling tube 304 is installed to the lower extreme of outlet pipe 401, and the upper end of outlet pipe 401 is installed at the input surface of return water pump 402, the lower extreme of wet return 403 is installed at the output surface of return water pump 402, and the upper end of wet return 403 is installed at the upper surface of water tank 1 and is linked together with water tank 1 is inside, after a period of time, start the water pump 402 and take out the water in the cooling tube 304 by outlet pipe 401, then the inside of water tank 1 is refluxed through wet return 403, realize the hydrologic cycle, can make the water in the cooling tube 304 keep at low temperature state, the water-cooling radiating effect is good.
The back surface mounting of water tank controller 2 has air inlet frame 5, air inlet frame 5's inside is provided with air inlet drying component 6, air inlet drying component 6 includes air inlet fan 601, first filter screen 602, heater 603 and electrothermal tube 604, air inlet fan 601 is provided with the multiunit, multiunit air inlet fan 601 array mount is at the front side wall of air inlet frame 5, a plurality of fresh air inlet holes have been seted up on the front side wall of air inlet frame 5, first filter screen 602 is installed at the rear end inner wall of air inlet frame 5, and first filter screen 602 sets up the rear end at air inlet fan 601, when water tank controller 2 needs the heat dissipation, start air inlet fan 601, air inlet fan 601 produces wind-force effect with the heat in the water tank controller 2 guide to heat sink one side and discharge to the external world, realize quick heat dissipation, heater 603 spiro union is installed at air inlet frame 5's upper surface, electrothermal tube 604's input is installed at heater 603's output surface, electrothermal tube 604 is fixed in the inside of air inlet frame 5, and set up between air inlet fan 601 and first filter screen 602, when the moisture around the water tank controller 2 is heavier, start heater 603 heats electrothermal tube 604, after the air inlet fan 601 carries out the heating element, the relative control of air flow, the inside the control 2 is controlled to the inside the water tank controller 2, the inside the air dryer is used to the air heater 2, the quality is improved, and the inside the control element is kept in the inside the water tank 2.
The front surface mounting of water tank controller 2 has heat dissipation frame 7, the inside of heat dissipation frame 7 is provided with heat dissipation subassembly 8, heat dissipation subassembly 8 includes heat-conducting plate 801, heat dissipation fan 802 and second filter screen 803, heat dissipation fan 802 is provided with the multiunit, multiunit heat dissipation fan 802 array is installed at the back lateral wall of heat dissipation frame 7, a plurality of louvres have been seted up on the back lateral wall of heat dissipation frame 7, the front end lateral wall at heat dissipation frame 7 is installed to second filter screen 803, and the second filter screen 803 sets up the front end at heat dissipation fan 802, the heat-conducting plate 801 is fixed at the rear surface of heat dissipation frame 7, the heat dissipation groove has been seted up to the front surface of water tank controller 2, the heat-conducting plate 801 is installed in the heat dissipation groove, when the temperature is high in the water tank controller 2 dispels the heat, guide to heat dissipation groove one side through heat-conducting plate 801, start heat dissipation fan 802 is discharged fast, realize quick wind-force heat dissipation.
Working principle: in the use process of the water tank controller 2, when the water tank controller 2 is in a relatively high-temperature environment, water in the water tank 1 is pumped out through the water inlet pump 302 and then is led into the cooling pipe 304 through the water inlet pipe 303, the cooling pipe 304 is positioned in the water tank controller 2, water cooling and heat dissipation of the inner part of the water tank controller 2 are achieved, after a period of time, the water return pump 402 is started to pump out water in the cooling pipe 304 from the water outlet pipe 401 and then flows back into the water tank 1 through the water return pipe 403, water circulation is achieved, the water in the cooling pipe 304 can be kept in a low-temperature state, the water cooling and heat dissipation effect is good, meanwhile, the air inlet fan 601 and the heat dissipation fan 802 are started, heat generated in the water tank controller 2 is led to the side of the heat dissipation frame 7 through the air inlet fan 601 and the heat conduction plate 801, then is discharged to the outside through the heat dissipation fan 802, wind power dissipation is achieved, when moisture around the water tank controller 2 is heavy, after heating, the air inlet fan 601 is started to guide air flow after heating and drying into the inner part of the water tank controller 2, the air flow in the water tank controller 2 is heated, the air is discharged through the heat conduction plate 801, and the moisture in a simple structure, and is suitable for popularization.

Claims (6)

1. A water tank controller comprising a water tank (1), characterized in that: the water tank is characterized in that a water tank controller (2) is installed on the right side face of the water tank (1), a water cooling assembly (3) is arranged on the surface of the water tank controller (2), a water return assembly (4) is arranged on the surface of the water tank controller (2), an air inlet frame (5) is arranged on the front surface of the water tank controller (2), an air inlet drying assembly (6) is arranged in the air inlet frame (5), the air inlet drying assembly (6) comprises an air inlet fan (601), a first filter screen (602), a heater (603) and an electric heating tube (604), the air inlet fan (601) is provided with a plurality of groups, an array of air inlet fans (601) is arranged on the front side wall of the air inlet frame (5), a plurality of air inlet holes are formed in the front side wall of the air inlet frame (5), a heat dissipation frame (7) is arranged on the front surface of the water tank controller (2), the heat dissipation frame (7) is internally provided with a heat dissipation assembly (8), the heat dissipation assembly (8) comprises a heat conducting plate (801), a heat dissipation fan (802) and a second filter screen (803), the heat dissipation fan (802) is arranged on the side wall of the heat dissipation frame (7), and the heat dissipation frame (7) is provided with a plurality of groups of heat dissipation holes (803).
2. A cistern controller as claimed in claim 1, wherein: the water cooling assembly (3) comprises a water inlet pipe (301), a water inlet pump (302), a water inlet pipe (303) and a cooling pipe (304), wherein the left end of the water inlet pipe (301) is inserted into the water tank (1), the right end of the water inlet pipe (301) is arranged on the surface of the input end of the water inlet pump (302), the lower end of the water inlet pipe (303) is arranged on the surface of the output end of the water inlet pump (302), the upper end of the water inlet pipe (303) is fixed on the lower surface of the cooling pipe (304), the cooling pipe (304) is in an S-shaped structure, and the cooling pipe (304) is arranged in the water tank controller (2).
3. A cistern controller as claimed in claim 1, wherein: return water subassembly (4) are including outlet pipe (401), return water pump (402) and wet return (403), the upper surface at cooling tube (304) is installed to the lower extreme of outlet pipe (401), and the upper end of outlet pipe (401) is installed on the input surface of return water pump (402), the lower extreme of wet return (403) is installed on the output surface of return water pump (402), and the upper end of wet return (403) is installed on the upper surface of water tank (1) and is linked together with water tank (1) is inside.
4. A cistern controller as claimed in claim 1, wherein: the first filter screen (602) is arranged on the inner wall of the rear end part of the air inlet frame (5), and the first filter screen (602) is arranged at the rear end of the air inlet fan (601).
5. A cistern controller as claimed in claim 1, wherein: the heater (603) is installed on the upper surface of the air inlet frame (5) in a threaded mode, the input end of the electric heating tube (604) is installed on the surface of the output end of the heater (603), the electric heating tube (604) is fixed inside the air inlet frame (5), and the electric heating tube (604) is arranged between the air inlet fan (601) and the first filter screen (602).
6. A cistern controller as claimed in claim 1, wherein: the second filter screen (803) is installed at the front end portion lateral wall of heat dissipation frame (7), and second filter screen (803) set up the front end at radiator fan (802), heat conduction board (801) are fixed at the rear surface of heat dissipation frame (7), the radiating groove has been seted up to the front surface of water tank controller (2), heat conduction board (801) are installed in the radiating groove.
CN202320674202.9U 2023-03-30 2023-03-30 Water tank controller Active CN219863082U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202320674202.9U CN219863082U (en) 2023-03-30 2023-03-30 Water tank controller

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202320674202.9U CN219863082U (en) 2023-03-30 2023-03-30 Water tank controller

Publications (1)

Publication Number Publication Date
CN219863082U true CN219863082U (en) 2023-10-20

Family

ID=88317076

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202320674202.9U Active CN219863082U (en) 2023-03-30 2023-03-30 Water tank controller

Country Status (1)

Country Link
CN (1) CN219863082U (en)

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