Integrated water supply pump house
By installing cooling water pipes on the walls of the water supply pump room and optimizing airflow, the problem of heat dissipation difficulties for the pump unit was solved, achieving efficient operation and energy-saving cooling of the equipment.
Patent Information
- Application Number
- CN202520062873.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-10
- Publication Date
- 2025-12-16
- Estimated Expiration
- 2035-01-10
AI Technical Summary
Existing integrated water supply pump stations have large pump sets and control boxes that occupy a lot of space, generate a lot of heat and are difficult to dissipate, leading to equipment overheating, affecting operating efficiency and lifespan. In addition, the existing heat dissipation methods are inefficient and energy-intensive.
Cooling water pipes are installed on the walls of the building. The circulating water is diverted through the pump set outlet pipe to cool the interior of the building and the pump set, forming a circulating cooling system. Combined with exhaust and suction devices, the airflow is optimized to reduce the temperature.
Effectively controlling the temperature inside the pump room ensures normal equipment operation, reduces malfunctions, lowers maintenance costs, and achieves energy conservation and environmental protection.
Smart Images

Figure CN223675914U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to mechanical equipment field especially relates to an integrated water supply pump house. BACKGROUND
[0002] The prior art integrated water supply pump house has high integration degree, comprising a house body, a pump group and a control box arranged in the house body. Since the pump group has large overall volume, it occupies most of the space in the house body. In addition, the wall of the house body is often provided with protective materials such as thermal insulation cotton and sound-absorbing board for protecting the normal operation of the pump group and the control box and reducing the transmission of noise, so that the free space in the house body is small. Moreover, the pump group, the control box and other equipment generate a large amount of heat during operation. If the pump house is applied in a high-temperature area, the ambient temperature has a great influence on the pump house. In combination with the small free space in the pump house and the poor air flow, the temperature in the house body and its wall is high. If the heat cannot be dissipated in time and effectively, the equipment will overheat, affecting the operation efficiency and service life of the equipment, and even causing safety accidents.
[0003] The existing heat dissipation mode mainly adopts natural ventilation and simple mechanical ventilation, and the cooling effect is not obvious, and the temperature of the wall is difficult to reduce. If air conditioning facilities are added to the pump house for cooling, the cost of the air conditioning facilities is high, and a large amount of electric energy is consumed, which is not conducive to energy saving and environmental protection, and also increases the cost of electric energy consumption. SUMMARY
[0004] The utility model discloses a kind of integrated water supply pump house to solve the above problems existing in prior art, cooling water pipe is arranged on the wall of house body, the water flow circulating in cooling water pipe is divided into a cooling water inlet pipe from pump group outlet pipe, a small part of water flow is shunted to be used to supply water to cooling water pipe, the water that enters cooling pipe is used to cool the inside of house body, then pass through the cooling outlet pipe connected with pump group water inlet pipe, so that the water flow in cooling water pipe is merged into the water inlet into pump group, after the water that enters pump group is mixed and cooled to the water that comes out from cooling water pipe, then enter cooling water pipe for cooling, so circulation, can effectively control the temperature in house body, to effectively ensure that each equipment in pump house is normal operation, and it is beneficial to reduce the failure occurrence rate of each equipment, not only conducive to reducing failure maintenance, replacement cost, also conducive to controlling the energy consumption of cooling and cooling, conducive to energy saving and environmental protection.
[0005] The utility model discloses a technical scheme is solved through the following technical scheme: an integrated water supply pump house, including the house body, the pump group of setting in the house body and the control device of setting on the house body, its characterized in that at least one group of cooling water pipes of cyclic arrangement is arranged on the wall of the house body, and one cooling water inlet pipe is arranged on the pump group water outlet pipe, and one cooling water outlet pipe is connected to the pump group water inlet pipe, the water inlet end of cooling water inlet pipe is connected to the pump group water outlet pipe, the water outlet end of cooling water inlet pipe is connected to the water inlet end of cooling water pipe, the water inlet end of cooling water outlet pipe is connected to the water outlet end of cooling water pipe, and the water outlet end of cooling water outlet pipe is connected to the pump group water inlet pipe. The wall of the house body is provided with cooling water pipes, and the water flow circulating in the cooling water pipes is divided into one cooling water inlet pipe from the pump group water outlet pipe, and a small part of the water flow is used for supplying water to the cooling water pipe. The water entering the cooling pipe is used for cooling the inside of the house body, and then the cooling water outlet pipe connected with the pump group water inlet pipe is used to make the water flow in the cooling water pipe flow into the water inlet of the pump group. The water from the cooling water pipe is mixed and cooled by the water entering the pump group, and then enters the cooling water pipe for cooling. The cycle can effectively control the temperature in the house body, thereby effectively ensuring the normal operation of the equipment in the pump house, reducing the failure rate of the equipment, reducing the maintenance and replacement cost, and controlling the energy consumption of cooling and cooling. Energy saving and environmental protection are beneficial.
[0006] As a further improvement and supplement to the above technical scheme, the utility model adopts the following technical measures: the cooling water pipe is at least three groups of cooling water pipes connected in sequence, and the cooling water pipes are arranged on the back wall, left wall and right wall of the house body. Since the front part of the house body is often provided with a door for facilitating the installation, disassembly and maintenance of the pump group and other related equipment by the relevant staff, in order to ensure the reliability of the door, the cooling water pipe is not arranged, of course, the cooling water pipe can also be arranged, which also belongs to the protection range of the technical scheme.
[0007] As a preferred embodiment, each group of cooling water pipes is arranged on the corresponding wall in a detour, and the width and height of each group of cooling water pipes are adapted to the width and height of the corresponding wall. This is beneficial to arranging longer cooling water pipes on the limited wall area and improving the cooling efficiency.
[0008] As a preferred embodiment, at least one group of exhaust devices is arranged on the top of the house body for exhausting hot air in the house body. The arrangement of the exhaust device is used for exhausting hot air in the house body, which is also beneficial to reducing the temperature in the house body, further ensuring that the pump house has a suitable temperature, and ensuring the normal operation of the equipment.
[0009] Preferably, the lower wall of the house body is provided with an air suction device for sucking air outside the house body into the house body. The air suction device sucks the cooler air outside the pump house into the pump house. Since the cooler air is heavier than the hot air, the hot air is gradually pushed to the upper part of the house body, and then the hot air is discharged by the air exhaust device, thereby further reducing the air temperature in the house body and facilitating the normal operation of the equipment.
[0010] Preferably, the house body has a rectangular structure, and the air suction devices are arranged on the four walls of the house body, and are arranged at the lower right of the corresponding wall or at the lower left of the corresponding wall. The arrangement of the air suction devices, combined with the weight relationship between the cool air and the hot air, facilitates the formation of a circumferential rotating air flow upward in the house body, facilitates balanced cooling in the house body, and facilitates the efficiency of hot air exhaust.
[0011] Preferably, the wall of the house body includes a protective plate, a heat preservation layer covering the inner wall of the protective plate, and the cooling water pipe is embedded in the heat preservation layer. The protective plate is used to ensure the strength of the house body and to effectively protect the safety of the equipment in the house body. The arrangement of the heat preservation layer is advantageous for preventing the influence of external high temperature on the air temperature in the house body and for ensuring the temperature in the house body.
[0012] Preferably, the inner wall of the heat preservation layer is covered with an acoustic panel, and the acoustic panel covers the inner walls of the heat preservation layer and the cooling water pipe, so that the heat preservation layer and the cooling water pipe are hidden between the protective plate and the acoustic panel. The acoustic panel is used to absorb the noise generated by the operation of each device in the pump house, thereby reducing the influence of the noise generated by the operation of the pump house on the surrounding environment.
[0013] Preferably, a pressure relief pipe is connected to the cooling water outlet pipe. When the pipe in the pump group or the cooling pipe is blocked, the working state of the pressure relief pipe is controlled to achieve pressure relief, thereby protecting the pump group and the cooling pipe and preventing the pipe from being blocked and burst.
[0014] Preferably, a check valve is arranged between the cooling water outlet pipe and the pump group water inlet pipe to ensure that the water flow direction in the cooling water outlet pipe and the pump group water inlet pipe is unidirectional. Through the arrangement of the check valve, the water flow out of the cooling water pipe and the water flow supplied to the pump group water inlet pipe can smoothly flow into the pump group, thereby avoiding the situation that the water flow supplied to the pump group water inlet pipe directly enters the cooling water pipe without entering the pump group, which is advantageous for ensuring the smooth operation of the pump group and the smooth circulation of the cooling water pipe.
[0015] The utility model has the beneficial effect that: 1, through separating out a small part of pump group's water outlet enters cooling water pipe and then returns to the water flow of pump group and carries out the temperature reduction to the inside of pump house, not only effectively realizes the cooling purpose, is favorable to equipment normal operation, is favorable to control pump house operation, maintenance cost, and cooling energy consumption is less, is favorable to energy conservation and environmental protection. 2, the top of the house body is additionally equipped with exhaust device, is used for the hot gas of the house body is discharged, is favorable to reducing the temperature of the house body, is favorable to further ensure that the inside of pump house has suitable temperature, is favorable to each equipment normal operation. 3, the lower wall of the house body is additionally equipped with suction device, is used for the air of the outside of the house body is sucked into the house body, and then the hot air is discharged by exhaust device, thereby further favorably reducing the air temperature of the house body, further favorably equipment normal operation. 4, the suction device is at least four groups, and four groups of suction devices are all arranged in the right lower of the corresponding wall or all are arranged in the left lower of the corresponding wall, and then combining the weight relation of cold air and hot air, is favorable to making the air in the house body form circumferential rotation air flow upward, is favorable to the balanced cooling of the house body, and is favorable to improving hot air discharge efficiency. 5, cooling and temperature reduction structure is relatively simple, and cooling and temperature reduction is reliable, cooling and temperature reduction effect is good, and energy consumption is small. BRIEF DESCRIPTION OF DRAWINGS
[0016] Figure 1 It is a structure (wherein the suction device is in an explosion state, and the exhaust device is in a perspective state) schematic diagram of the utility model.
[0017] Figure 2 It is a structure schematic diagram of the utility model on the basis of pump house, cooling water pipe, pump group, suction device, exhaust device cooperation. Figure 1
[0018] Figure 3 It is a schematic diagram of the air flow in the house body when each cooling means cooperates under the state, Figure 2
[0019] Figure 4 It is a principle structure schematic diagram of the utility model related to pump group and cooling water inlet pipe and cooling water outlet pipe cooperation.
[0020] Figure 5 It is a structure schematic diagram of the utility model related to pump group.
[0021] Figure 6 It is a sectional structure schematic diagram of the wall.
[0022] In the drawing: 1, house body;2, pump group;3, control device;4, cooling water pipe;5, cooling water inlet pipe;6, cooling water outlet pipe;7, pump group water inlet pipe;8, pump group water outlet pipe;9, exhaust device;10, suction device;11, protection plate;12, heat preservation layer;13, sound absorption board;14, check valve. Detailed Implementation
[0023] The technical solution of this utility model will be further described in detail below through embodiments and in conjunction with the accompanying drawings.
[0024] Example: Figures 1-6 As shown, an integrated water supply pump house includes a housing 1, a pump set 2 installed inside the housing 1, and a control device 3 installed on the housing 1.
[0025] The difference between this technical solution and the prior art is that: at least one set of circulating cooling water pipes 4 are installed on the wall of the building 1; a cooling water inlet pipe 5 is provided on the pump group outlet pipe 8; a cooling water outlet pipe 6 is connected to the pump group inlet pipe 7; the inlet end of the cooling water inlet pipe 5 is connected to the pump group outlet pipe 8; the outlet end of the cooling water inlet pipe 5 is connected to the inlet end of the cooling water pipe 4; the inlet end of the cooling water outlet pipe 6 is connected to the outlet end of the cooling water pipe 4; and the outlet end of the cooling water outlet pipe 6 is connected to the pump group inlet pipe 7.
[0026] In this technical solution, cooling water pipes 4 are installed on the walls of the chamber 1. The circulating water in the cooling water pipes 4 is branched off from the pump set outlet pipe 8 to a cooling water inlet pipe 5, which diverts a small portion of the water flow to supply water to the cooling water pipes 4. The water entering the cooling pipes is used to cool the interior of the chamber 1, and then flows through the cooling water outlet pipe 6 connected to the pump set inlet pipe 7, causing the water in the cooling water pipes 4 to merge into the inlet water entering the pump set. The inlet water entering the pump set mixes and cools the water coming out of the cooling water pipes 4 before it enters the cooling water pipes 4 for further cooling. This cycle effectively controls the temperature inside the chamber 1, thereby ensuring the normal operation of all equipment in the pump room and reducing the failure rate of each piece of equipment. This not only helps reduce the cost of fault repair and replacement, but also helps control the energy consumption of cooling, which is beneficial for energy conservation and environmental protection.
[0027] Next, the above plan will be further explained:
[0028] The cooling water pipe 4 consists of at least three sets of cooling water pipes 4 connected in sequence, and the cooling water pipes 4 are respectively installed on the rear wall, left wall and right wall of the building 1.
[0029] In this technical solution, since a door is often installed at the front of the housing 1 to facilitate the entry and exit of relevant personnel for the installation, disassembly, and maintenance of pump units and other related equipment, cooling water pipes 4 are usually not installed to ensure the reliability of the door. Of course, cooling water pipes 4 can also be installed, which is also within the scope of protection of this technical solution. In this embodiment, three sets of cooling water pipes 4 are preferably installed.
[0030] In actual application, each group of the cooling water pipes 4 are arranged on the corresponding wall body in a meandering manner, and the width and height of each group of the cooling water pipes 4 are adapted to the width and height of the corresponding wall body, which is beneficial to set longer cooling water pipes 4 on the limited wall body area and improve the cooling efficiency.
[0031] In actual application, at least one group of the air exhaust devices 9 are arranged on the top of the house body 1 to exhaust hot air in the house body 1.
[0032] In the technical solution, the air exhaust devices 9 are arranged to exhaust hot air in the house body 1, which is beneficial to reduce the temperature in the house body 1 and further ensure that the internal temperature of the pump house is appropriate, and the devices can operate normally.
[0033] In actual application, the air suction devices 10 are arranged on the lower wall body of the house body 1 to suck air outside the house body 1 into the house body 1.
[0034] In the technical solution, the air suction devices 10 suck cold air outside the pump house into the pump house, and since the cold air is heavier than hot air, the hot air is gradually pushed to the upper part of the house body 1 and then exhausted by the air exhaust devices 9, which is further beneficial to reduce the air temperature in the house body 1 and further ensure that the devices can operate normally.
[0035] In actual application, the house body 1 has a rectangular structure, and the air suction devices 10 are arranged on the four walls of the house body 1, and the air suction devices 10 are arranged on the lower right of the corresponding wall or on the lower left of the corresponding wall.
[0036] In the embodiment, as shown in the drawing, Figures 1-3 the air suction devices 10 are arranged on the lower right of the corresponding wall.
[0037] In the technical solution, the air suction devices 10 are arranged in the above manner, which, in combination with the weight relationship between cold air and hot air, is beneficial to form a circumferential rotating air flow upward in the house body 1, beneficial to balanced cooling in the house body 1, and beneficial to improve the hot air exhaust efficiency.
[0038] In actual application, the wall of the house body 1 includes a protective plate 11, a heat preservation layer 12 covering the inner wall of the protective plate 11, and the cooling water pipes 4 are embedded in the heat preservation layer 12.
[0039] In the technical solution, the protective plate 11 is used to ensure the strength of the house body 1 and effectively protect the safety of the devices in the house body 1, and the heat preservation layer 12 is arranged to prevent the influence of external high temperature on the air temperature in the house body 1 and ensure the internal temperature of the house body 1.
[0040] In actual application, the inner wall of the heat preservation layer 12 is covered by the sound absorption board 13, which covers the inner wall of the heat preservation layer 12 and the cooling water pipe 4, so that the heat preservation layer 12 and the cooling water pipe 4 are hidden between the protective plate 11 and the sound absorption board 13.
[0041] In the technical solution, the sound absorption board 13 is used to absorb the noise generated by the operation of various devices in the pump house, so as to reduce the influence of the noise generated by the operation of the pump house on the surrounding.
[0042] In actual application, the cooling water outlet pipeline 6 is connected with a pressure relief pipeline. When the pipeline in the pump group or the cooling pipeline is blocked, the working state of the pressure relief pipeline is controlled to realize pressure relief, which is beneficial to protect the pump group and the cooling pipeline and prevent the pipeline from being blocked and burst.
[0043] In actual application, the check valve 14 is arranged between the cooling water outlet pipeline 6 and the pump group water inlet pipeline 7, which is used to ensure that the water flow direction in the cooling water outlet pipeline 6 and the pump group water inlet pipeline 7 is unidirectional.
[0044] In the technical solution, the water flow from the cooling water pipe 4 and the water flow supplied to the pump group water inlet pipeline 7 can smoothly flow into the pump group through the check valve 14, so that the water flow supplied to the pump group water inlet pipeline 7 does not directly enter the cooling water pipe 4 through the cooling water outlet pipeline 6, which is beneficial to ensure the smooth operation of the pump group and the smooth circulation of the cooling water pipe 4.
[0045] The above only describes the preferred embodiments of the present application and is not used to limit the present application. In the above embodiments, the present application can be variously changed and modified. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present application shall be included in the protection scope of the present application.
Claims
1. An integrated water supply pump house comprising a house body (1), a pump group (2) arranged in the house body (1), and a control device (3) arranged on the house body (1), characterized in that At least one set of circulating cooling water pipes (4) are arranged on the wall of the house body (1), a cooling water inlet pipe (5) is arranged on the pump group outlet pipe (8), a cooling water outlet pipe (6) is connected to the pump group inlet pipe (7), the water inlet end of the cooling water inlet pipe (5) is connected to the pump group outlet pipe (8), the water outlet end of the cooling water inlet pipe (5) is connected to the water inlet end of the cooling water pipe (4), the water inlet end of the cooling water outlet pipe (6) is connected to the water outlet end of the cooling water pipe (4), and the water outlet end of the cooling water outlet pipe (6) is connected to the pump group inlet pipe (7).
2. The integrated water supply pump house according to claim 1, characterized in that The cooling water pipe (4) is at least three sets of cooling water pipes (4) connected in sequence, and the cooling water pipe (4) is arranged on the back wall, left wall and right wall of the house body (1) respectively.
3. The integrated water supply pump house according to claim 2, characterized in that Each set of cooling water pipes (4) are arranged in a meandering manner on the corresponding wall, and the width and height of each set of cooling water pipes (4) are adapted to the width and height of the corresponding wall.
4. The integrated water supply pump house according to claim 1, characterized in that At least one set of exhaust devices (9) is arranged on the top of the house body (1) for exhausting hot air in the house body (1).
5. The integrated water supply pump house according to claim 4, characterized in that An air suction device (10) is arranged on the lower wall of the house body (1) for sucking air outside the house body (1) into the house body (1).
6. The integrated water supply pump house according to claim 5, characterized in that The house body (1) has a rectangular structure, and air suction devices (10) are arranged on the four walls of the house body (1), and the air suction devices (10) are arranged on the lower right side of the corresponding wall or on the lower left side of the corresponding wall.
7. The integrated water supply pump house according to claim 1, characterized in that The wall of the house body (1) includes a protective plate (11), a heat preservation layer (12) covering the inner wall of the protective plate (11), and the cooling water pipe (4) is embedded in the heat preservation layer (12).
8. The integrated water supply pump house according to claim 7, characterized in that An acoustic panel (13) is arranged on the inner wall of the heat preservation layer (12), and the acoustic panel (13) covers the inner wall of the heat preservation layer (12) and the cooling water pipe (4), so that the heat preservation layer (12) and the cooling water pipe (4) are hidden between the protective plate (11) and the acoustic panel (13).
9. The integrated water supply pump house according to any one of claims 1-8, characterized in that A pressure relief pipe is connected to the cooling water outlet pipe (6).
10. The integrated water supply pump house according to claim 9, characterized in that A check valve (14) is arranged between the cooling water outlet pipe (6) and the pump group inlet pipe (7) to ensure that the water flow direction in the cooling water outlet pipe (6) and the pump group inlet pipe (7) is unidirectional.