Integrated assembly type pump house

By reinforcing the mesh plate and heat dissipation pipe structure, the problems of pressure deformation and heat accumulation in the pump room were solved, thereby improving the stability and safety of the pump room.

CN116971447BActive Publication Date: 2026-01-09JIANGSU SUJIANG CONSTR ENG CO LTD
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Patent Information

Application Number
CN202310971838.4
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-08-03
Publication Date
2026-01-09
Estimated Expiration
2043-08-03

AI Technical Summary

Technical Problem

When existing pump houses are buried underground, the continuous compression of the soil on the sides leads to high pressure, making the pump houses prone to deformation, reducing their sealing performance, and making it difficult for internal heat to dissipate quickly, which affects equipment safety.

Method used

An integrated prefabricated pump house was designed, which adopts a reinforced mesh plate and heat dissipation pipe structure. The area of ​​the reinforced mesh plate is adjusted by the linkage of the rotating ring and the adjusting rod. The water flow drives the heat dissipation pipe to rotate and dissipate heat. Combined with the magnetic repulsion force to push the piston and spring to control the drainage, the accumulated water is discharged and the heat is dissipated.

Benefits of technology

It effectively reduces pressure deformation in the pump room, improves sealing, and quickly dissipates heat through water flow cooling pipes, preventing equipment damage and ensuring the pump room is dry and safe.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses integrated assembly type pump house, including base, the upper side bolt fixed with pump house body in the middle part of base, and the upper side of pump house body is provided with access hole, and the side of access hole is installed with sealing door, the upper end of pump house body is installed with ventilation pipe, still include: limit frame, install in the upper side of base close to edge, and the upper end of limit frame is equipped with swivel, and the sidewall of swivel is provided with arc slot, support rod, install in the upper side of base close to edge, and the upper end of support rod is penetrated with moving rod, the integrated assembly type pump house is provided with radiator pipe, utilizes the impact force of water, promotes the fan blade to rotate through the rotating rod, to control the rotation of radiator pipe, can make the sand inside radiator pipe flow, utilizes the sand of flowing and brings the heat in pump house into water flow to carry out cooling, quickly carries out the heat dissipation of pump house, avoids the damage of heat accumulation to cause the equipment inside pump house.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of pump house, in particular to an integrated assembly type pump house. BACKGROUND

[0002] The pump house is a device for installing water pumps, power machines and other equipment to realize water transportation. The pump house layout should be adjusted according to the overall layout requirements of the pump station and the geological conditions of the station site. In order to reduce the occupied space, the integrated assembly type pump house is installed at the underground position to reduce the occupied space.

[0003] The utility model discloses a integrated pump house, including the pit and the pump house in pit, the bottom of pit is equipped with reinforced concrete base plate, the pump house includes roof, bottom plate and side plate, is equipped with the lid and grating beam frame on the roof, the lid is equipped with the ladder that extends to the bottom plate at the just below, the bottom plate is fixed on the reinforced concrete base plate through embedded bolt, the inside of side plate is equipped with the support column that sticks and uniform arrangement, and the support column is fixed through the connecting piece with grating beam frame, is equipped with water level detection sensor and humidity sensor in the pump house, and all are connected with the controller. In the present application, the pump house is fixedly connected between the bottom plate and the reinforced concrete base plate, eliminating the buoyancy effect of underground water on the pump house. The grating beam frame and the support column increase the compressive resistance of the pump house, avoiding the deformation of the pump house body and causing the sealing performance to be lost, so that the underground water seeps in. At the same time, the water level detection sensor and the humidity sensor can detect the water leakage or seepage in the pump house.

[0004] The above-mentioned prior art uses the grating beam frame and the support column to increase the compressive resistance of the pump house, but the soil on the side will continue to extrude the pump house, and the overall stress of the pump house is not effectively reduced, resulting in that the bearing pressure of the pump house is still large, and the remaining un-reinforced surface of the pump house is still prone to compression deformation, resulting in that the sealing performance of the pump house is reduced, and the internal seepage is not conducive to taking effective measures to reduce the loss. Moreover, since the pump house is buried underground, the accumulated heat in the pump house cannot be effectively and quickly dissipated, and the accumulation of heat will affect the internal pressure and the internal equipment of the pump house. Therefore, we propose an integrated assembly type pump house to solve the above-mentioned problems. SUMMARY

[0005] The present application aims to provide an integrated assembly type pump house to solve the above-mentioned problems in the background art, i.e. the soil on the side will continue to extrude the pump house, the overall stress of the pump house is not effectively reduced, resulting in that the bearing pressure of the pump house is still large, and the remaining un-reinforced surface of the pump house is still prone to compression deformation, resulting in that the sealing performance of the pump house is reduced, and the internal seepage is not conducive to taking effective measures to reduce the loss. Moreover, since the pump house is buried underground, the accumulated heat in the pump house cannot be effectively and quickly dissipated, and the accumulation of heat will affect the internal pressure and the internal equipment of the pump house.

[0006] In order to achieve the above object, the present application provides the following technical scheme: integrated assembly type pump house, including base, the upper side of the middle part of the base is bolted with pump house body, and the upper side of the pump house body is provided with an inspection hole, and the side of the inspection hole is provided with a sealing door, and the right upper end of the pump house body is provided with a ventilation pipe;

[0007] Further comprising:

[0008] Limiting frame, installed on the upper side of the base near the edge, and the upper end of the limiting frame is sleeved with a swivel ring, and an arc-shaped groove is formed in the side wall of the swivel ring;

[0009] Supporting rod, installed on the upper side of the base near the edge, and the upper end of the supporting rod is penetrated by a moving rod, and the end of the moving rod is connected with a reinforcing mesh plate, the upper end of the reinforcing mesh plate is penetrated by a sliding rod, and the lower end of the reinforcing mesh plate is hingedly connected with an adjusting rod, and the end of the adjusting rod away from the reinforcing mesh plate is hingedly connected with the swivel ring;

[0010] Water pump group, installed in the interior of the pump house body, and the water inlet end of the water pump group is connected with a water inlet pipe, and the water outlet end of the water pump group is connected with a water outlet pipe;

[0011] Flow box, connected to the lower section of the water outlet pipe, and the flow box and the water outlet pipe are in communication with each other, and a rotating rod is rotatably connected in the interior of the flow box, a fan blade is installed on the outer side of the middle part of the rotating rod, and a cooling groove is formed in the interior of the middle part of the rotating rod;

[0012] Radiating pipes, installed at the front and rear ends of the rotating rod, and a magnet a is installed on the end of the radiating pipe at the rear position;

[0013] Waste water tank, formed in the interior of the lower end of the pump house body, and a liquid level sensor is installed on the bottom of the interior of the waste water tank, and an alarm lamp is installed on the left upper end of the pump house body.

[0014] Preferably, a drain cylinder is installed on the inner side wall of the lower section of the pump house body, a piston is slidably connected in the interior of the drain cylinder, the piston is elastically connected with the drain cylinder through a spring, a connecting rod is connected to the upper side of the middle part of the piston, and a magnet b is installed on the upper end of the connecting rod;

[0015] A drain pipe is communicated with one side of the lower end of the drain cylinder, and a water suction pipe is communicated with the other side of the drain cylinder, and a one-way valve is installed on each of the drain pipe and the water suction pipe, and the lower end of the water suction pipe extends into the waste water tank.

[0016] Preferably, the limiting frame passes through the arc-shaped groove, and the upper part of the limiting frame has an "I" shaped structure. The limiting frame and the rotating ring are fixed together by bolts. This design can ensure the smooth rotation of the rotating ring and prevent the rotating ring from moving.

[0017] Preferably, the reinforcing mesh panels are distributed at equal angles about the longitudinal centerline of the base, and the upper end of the arc-shaped reinforcing mesh panel can slide on the arc-shaped sliding rod. This design allows the reinforcing mesh panels to be easily expanded and contracted, and the enclosed area between the reinforcing mesh panels can be adjusted.

[0018] Preferably, the fan blades have an arc-shaped structure, and the fan blades are distributed at equal angles with respect to the transverse centerline of the rotating rod. This design can use water flow to drive the fan blades to rotate through the rotating rod, thereby driving the heat dissipation pipe to rotate.

[0019] Preferably, the sidewalls of the cooling tank are inclined, and the cooling tank and the hollow heat dissipation pipe are interconnected. The heat dissipation pipe is filled with sand, which allows the sand to flow and dissipate heat.

[0020] Preferably, the heat pipe has a side "V" shaped structure, and the heat pipe and the fan blade are coaxially connected.

[0021] Preferably, magnet a and magnet b are magnets with the same poles, and the positions of magnet a and magnet b are arranged corresponding to each other. This design can use the repulsive force between magnet a and magnet b to drive the piston to move.

[0022] Preferably, the movable rod can slide within the support rod, and the longitudinal center lines of the movable rod and the corresponding position of the reinforced mesh plate are perpendicular to each other.

[0023] Compared with the prior art, the beneficial effects of the present invention are:

[0024] (1) The integrated prefabricated pump house is equipped with a reinforcing mesh plate. The movement of the reinforcing mesh plate can be controlled by the rotation of the drive ring and the linkage of the adjustment rod. The size of the area enclosed by the reinforcing mesh plates distributed at equal angles can be adjusted. By using the pressure of the reinforcing mesh plate on the side soil, the pressure on the pump house body can be reduced, and the pump house body can be prevented from being deformed by pressure.

[0025] (2) The integrated prefabricated pump house is equipped with a heat dissipation pipe. The impact force of the water drives the fan blade to rotate through the rotating rod, thereby controlling the rotation of the heat dissipation pipe. This allows the sand inside the heat dissipation pipe to flow, and the flowing sand carries the heat in the pump house into the water flow for cooling, quickly dissipating heat from the pump house and avoiding heat accumulation that could damage the equipment inside the pump house.

[0026] (3) The integrated assembly type pump house is provided with a drainage cylinder, the positions between the magnet a and the magnet b intermittently correspond by rotating the heat dissipation pipe, the connecting rod is intermittently pushed by repulsive force, so that the piston is intermittently pushed to move, the spring is matched to control the up-down reciprocating movement of the piston, if the accumulated water in the pump house, the accumulated water enters the wastewater tank through the hole, the accumulated water is drained by the suction of the drainage cylinder, and the time is reserved to supply the staff to overhaul, and when there is no drainage in the wastewater tank, the internal airflow can be extracted and discharged through the water suction pipe, and the pump house is assisted to dissipate heat. BRIEF DESCRIPTION OF DRAWINGS

[0027] Figure 1 It is a whole structure schematic diagram of the application;

[0028] Figure 2 It is a pump house body sectional structure schematic diagram of the application;

[0029] Figure 3 It is a reinforcing mesh plate three-dimensional structure schematic diagram of the application;

[0030] Figure 4 It is a reinforcing mesh plate sectional structure schematic diagram of the application;

[0031] Figure 5 It is a drainage cylinder three-dimensional structure schematic diagram of the application;

[0032] Figure 6 It is a flow box three-dimensional structure schematic diagram of the application;

[0033] Figure 7 It is a flow box sectional structure schematic diagram of the application;

[0034] Figure 8 It is a rotating rod sectional structure schematic diagram of the application;

[0035] Figure 9 It is a drainage cylinder sectional structure schematic diagram of the application.

[0036] In the figure: 1, base; 2, pump house body; 3, overhaul hole; 4, adjusting rod; 5, ventilation pipe; 6, limiting frame; 7, rotating ring; 8, arc-shaped groove; 9, supporting rod; 10, moving rod; 11, reinforcing mesh plate; 12, sliding rod; 13, water pump group; 14, water inlet pipe; 15, water outlet pipe; 16, flow box; 17, rotating rod; 18, fan blade; 19, cooling tank; 20, heat dissipation pipe; 21, magnet a; 22, drainage cylinder; 23, spring; 24, piston; 25, connecting rod; 26, magnet b; 27, drainage pipe; 28, water suction pipe; 29, one-way valve; 30, wastewater tank; 31, liquid level sensor; 32, alarm lamp. DETAILED DESCRIPTION

[0037] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0038] Please see Figures 1-9 The present invention provides the following technical solution.

[0039] Example 1:

[0040] The soil on the side will continue to squeeze the pump house, and the overall stress on the pump house has not been effectively reduced, resulting in a relatively large bearing pressure on the pump house. The other unreinforced surfaces of the pump house are still relatively easy to be deformed under pressure, which leads to a reduction in the sealing performance of the pump house. Therefore, in order to solve this technical problem, this embodiment also includes a base 1. The upper side of the middle of the base 1 is bolted to the pump house body 2, and an inspection hole 3 is opened on the upper side of the pump house body 2. A sealing door is installed on the side of the inspection hole 3, and a ventilation pipe 5 is installed on the upper right end of the pump house body 2. A limiting frame 6 is installed on the upper side of the base 1 near the edge, and a rotating ring 7 is sleeved on the upper end of the limiting frame 6, and an arc groove 8 is opened on the side wall of the rotating ring 7; a support rod 9 is installed on the upper side of the base 1 near the edge, and a moving rod 10 passes through the upper end of the support rod 9, and a reinforcing mesh plate 11 is connected to the end of the moving rod 10. A sliding rod 12 passes through the upper end of the reinforcing mesh plate 11, and an adjusting rod 4 is hinged to the lower end of the reinforcing mesh plate 11, and the end of the adjusting rod 4 away from the reinforcing mesh plate 11 is hinged to the rotating ring 7;

[0041] The limiting frame 6 passes through the arc-shaped groove 8, and the upper part of the limiting frame 6 is "I" shaped, and the limiting frame 6 and the rotating ring 7 are fixed by bolts; the reinforcing mesh plate 11 is distributed at equal angles about the longitudinal center line of the base 1, and the upper end of the arc-shaped reinforcing mesh plate 11 can slide on the arc-shaped sliding rod 12; the moving rod 10 can slide in the support rod 9, and the longitudinal center line of the moving rod 10 and the corresponding position of the reinforcing mesh plate 11 are perpendicular to each other;

[0042] The working principle of this embodiment is as follows: Figure 1 , Figures 3-4As shown, the sliding rod 12 at the upper end of the reinforced mesh plate 11 is driven to slide, the rotating ring 7 is rotated on the limiting frame 6, the rotating ring 7 pulls the adjusting rod 4 to rotate, so that the adjusting rod 4 drives the reinforced mesh plate 11 to move in the direction away from each other, and when the reinforced mesh plate 11 moves, the moving rod 10 installed on the outside thereof slides on the supporting rod 9, ensuring the horizontal movement of the reinforced mesh plate 11, reserving enough space to place the pump house body 2 through the reinforced mesh plate 11 on the base 1, and using bolts to fix the base 1 and the pump house body 2, then the rotating ring 7 can be rotated in reverse to drive the adjusting rod 4 to drive the reinforced mesh plate 11 to move in the direction approaching the pump house body 2, and there is a gap between the reinforced mesh plate 11 and the pump house body 2, so that the rotating ring 7 and the limiting frame 6 can be locked by using bolts, and then the base 1 and the pump house body 2 can be installed in the reserved pit, and the pressure of the pump house body 2 can be reduced by pressing the soil on the opposite side of the reinforced mesh plate 11, avoiding the deformation of the pump house body 2 under pressure;

[0043] Example two:

[0044] The water seeping into the pump house is also not conducive to taking effective measures to reduce its loss, and since the pump house is buried underground, the accumulated heat inside the pump house cannot be effectively and quickly dissipated, and the accumulation of heat will affect the internal pressure and equipment of the pump house. Therefore, in order to solve this technical problem, the embodiment also includes a water pump group 13 installed inside the pump house body 2, and the water inlet end of the water pump group 13 is connected with a water inlet pipe 14, and the water outlet end of the water pump group 13 is connected with a water outlet pipe 15; a flow box 16 connected to the lower section of the water outlet pipe 15, and the flow box 16 and the water outlet pipe 15 are in communication with each other, and the flow box 16 is rotatably connected with a rotating rod 17 inside, the rotating rod 17 is provided with a fan blade 18 on the outer side of the middle part, and a cooling groove 19 is formed in the inner side of the middle part of the rotating rod 17; a heat dissipation pipe 20 is installed at the front and rear ends of the rotating rod 17, and a magnet a 21 is installed at the end of the heat dissipation pipe 20 at the rear position; a wastewater tank 30 is formed in the inside of the lower end of the pump house body 2, a liquid level sensor 31 is installed on the bottom of the wastewater tank 30, and an alarm lamp 32 is installed on the upper left end of the pump house body 2;

[0045] The inner side wall of the lower section of the pump house body 2 is provided with a drain cylinder 22, the inside of the drain cylinder 22 is slidably connected with a piston 24, the piston 24 is elastically connected with the drain cylinder 22 through a spring 23, the upper side of the piston 24 is connected with a connecting rod 25, the upper end of the connecting rod 25 is provided with a magnet b 26, one side of the lower end of the drain cylinder 22 is communicated with a drain pipe 27, the other side of the drain cylinder 22 is communicated with a water pumping pipe 28, the drain pipe 27 and the water pumping pipe 28 are both provided with a one-way valve 29, the lower end of the water pumping pipe 28 extends into a wastewater tank 30, the fan blade 18 is of arc structure, the fan blade 18 is distributed at equal angles about the transverse center line of the rotating rod 17, the side wall of the cooling groove 19 is obliquely distributed, the cooling groove 19 and the heat dissipation pipe 20 of hollow structure are communicated with each other, the inside of the heat dissipation pipe 20 is filled with sand, the heat dissipation pipe 20 is of side "V" shape structure, the heat dissipation pipe 20 and the fan blade 18 are coaxially connected, the magnet a 21 and the magnet b 26 are homopolar magnets, the positions of the magnet a 21 and the magnet b 26 are correspondingly arranged with each other.

[0046] The working principle of the embodiment is as follows: according to the drawings of Figure 2 、 Figures 5-9 , the water pump group 13 is connected with power supply and works, water can be transported through the water inlet pipe 14 and the water outlet pipe 15, when the water flows in the water outlet pipe 15, the water flow can push the fan blade 18 to control the rotating rod 17 to rotate in the flow box 16, the inside of the heat dissipation pipe 20 is filled with sand, the sand in the heat dissipation pipe 20 absorbs heat in the pump house, when the rotating rod 17 rotates, the heat dissipation pipe 20 can rotate, the sand in the upper heat dissipation pipe 20 flows into the lower heat dissipation pipe 20 through the cooling groove 19, when the sand flows through the cooling groove 19, the sand can be cooled by the water flow, the cooled sand enters the heat dissipation pipe 20 to continue to absorb heat, when the position of the magnet a 21 installed at the end of the heat dissipation pipe 20 corresponds to the position of the magnet b 26, the homopolar magnet a 21 and the magnet b 26 repel each other, the repulsive force can push the connecting rod 25 to move downward, so as to control the piston 24 to move downward, at this time, the one-way valve 29 on the drain pipe 27 is opened, the air flow or water flow in the drain cylinder 22 is discharged through the drain pipe 27, when the position of the magnet a 21 is dislocated from the position of the magnet b 26, the spring 23 can control the piston 24 to move upward to reset, at this time, the one-way valve 29 on the water pumping pipe 28 is opened, if water seeps into the pump house, the water will enter the wastewater tank 30 through the hole, the water in the wastewater tank 30 is pumped out through the water pumping pipe 28, so as to avoid the water from rising to damage the internal components, at the same time, the liquid level sensor 31 senses the water and transmits a signal to the alarm lamp 32, so that the staff can find the problem in time, when there is no water in the wastewater tank 30, the internal air flow can be pumped out through the water pumping pipe 28 to assist the heat dissipation of the pump house.

[0047] The contents not described in detail in the specification belong to the prior art known to those skilled in the art.

[0048] In the description of the application, unless otherwise specified and limited, the meaning of "a plurality of" is two or more; the orientation or positional relationship indicated by the terms "upper", "lower", "left", "right", "inner", "outer", "front end", "rear end", "head", "tail" and the like is based on the orientation or positional relationship shown in the drawings, and is only for the convenience of describing the application and simplifying the description, and does not indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the application. In addition, the terms "first", "second", "third" and the like are only for the purpose of description and cannot be understood as indicating or implying relative importance.

[0049] In the description of the application, it should be noted that, unless otherwise specified and limited, the terms "connected", "connected" should be understood broadly, for example, it can be fixedly connected, or it can be detachably connected, or integrally connected; it can be mechanically connected, or it can be electrically connected; it can be directly connected, or it can be indirectly connected through an intermediate medium. For those skilled in the art, the specific meaning of the above terms in the application can be understood according to the specific circumstances.

[0050] Although the application has been described in detail with reference to the foregoing embodiments, those skilled in the art can modify the technical solutions recorded in the foregoing embodiments, or make equivalent replacement for part of the technical features, any modification, equivalent replacement, improvement, etc. within the spirit and principles of the application shall be included in the protection scope of the application.

Claims

1. An integrated assembly type pump house, comprising a base (1), a pump house body (2) is bolted on the upper side of the middle part of the base (1), and an inspection hole (3) is formed on the upper side of the pump house body (2), and a sealing door is installed on the side of the inspection hole (3), and a ventilation pipe (5) is installed on the right upper end of the pump house body (2); characterized in that Further comprising: a limiting frame (6) is installed on the upper side of the base (1) near the edge, and a swivel ring (7) is sleeved on the upper end of the limiting frame (6), and an arc-shaped groove (8) is formed on the side wall of the swivel ring (7); a support rod (9) is installed on the upper side of the base (1) near the edge, and a moving rod (10) penetrates through the upper end of the support rod (9), and a reinforcing mesh plate (11) is connected to the end of the moving rod (10), a sliding rod (12) penetrates through the upper end of the reinforcing mesh plate (11), and an adjusting rod (4) is hingedly connected to the lower end of the reinforcing mesh plate (11), and the end of the adjusting rod (4) away from the reinforcing mesh plate (11) is hingedly connected with the swivel ring (7); a water pump group (13) is installed in the pump house body (2), and a water inlet pipe (14) is connected to the water inlet end of the water pump group (13), and a water outlet pipe (15) is connected to the water outlet end of the water pump group (13); a flow box (16) is connected to the lower section of the water outlet pipe (15), and the flow box (16) and the water outlet pipe (15) are in communication with each other, and a rotating rod (17) is rotatably connected in the flow box (16), a fan blade (18) is installed on the outer side of the middle part of the rotating rod (17), and a cooling groove (19) is formed in the inner part of the middle part of the rotating rod (17); a heat dissipation pipe (20) is installed on the front and rear ends of the rotating rod (17), and a magnet a (21) is installed on the end of the heat dissipation pipe (20) at the rear position; a wastewater tank (30) is formed in the inner part of the lower end of the pump house body (2), a liquid level sensor (31) is installed on the bottom of the inner part of the wastewater tank (30), and an alarm lamp (32) is installed on the left upper end of the pump house body (2); a drain cylinder (22) is installed on the inner side wall of the lower section of the pump house body (2), a piston (24) is slidably connected in the inner part of the drain cylinder (22), the piston (24) is elastically connected with the drain cylinder (22) through a spring (23), a connecting rod (25) is connected to the upper side of the middle part of the piston (24), and a magnet b (26) is installed on the upper end of the connecting rod (25); a drain pipe (27) is communicated with one side of the lower end of the drain cylinder (22), a water suction pipe (28) is communicated with the other side of the lower end of the drain cylinder (22), and a one-way valve (29) is installed on the drain pipe (27) and the water suction pipe (28), and the lower end of the water suction pipe (28) extends into the wastewater tank (30); the magnet a (21) and the magnet b (26) are same-pole magnets, and the positions of the magnet a (21) and the magnet b (26) correspond to each other. The side wall of the cooling groove (19) is inclined, the cooling groove (19) and the heat dissipation pipe (20) of the hollow structure are communicated, and the inside of the heat dissipation pipe (20) is filled with sand.

2. The integrated assembled pump house according to claim 1, characterized in that: The limiting frame (6) penetrates the arc-shaped groove (8), the upper end of the limiting frame (6) is provided with an arc-shaped structure, and the limiting frame (6) and the rotating ring (7) are fixed through bolts.

3. The integrated fabricated pump house of claim 1, wherein: The reinforcing net plate (11) is equiangularly distributed about the longitudinal center line of the base (1), and the upper end of the arc-shaped reinforcing net plate (11) can slide on the arc-shaped sliding rod (12).

4. The integrated assembled pump house according to claim 1, characterized in that: The fan blade (18) is arc-shaped, and the fan blade (18) is equiangularly distributed about the transverse center line of the rotating rod (17).

5. The integrated assembled pump house according to claim 1, characterized in that: The heat dissipation pipe (20) is side-V-shaped, and the heat dissipation pipe (20) and the fan blade (18) are coaxially connected.

6. The integrated assembled pump house according to claim 1, wherein: The moving rod (10) can slide in the supporting rod (9), and the longitudinal center line of the moving rod (10) and the corresponding reinforcing net plate (11) are perpendicular to each other.

Citation Information

Patent Citations

  • Integration pump house

    CN208777369U

  • Frame type pressure-resistant pump house in box-pump integrated non-floating pump station

    CN112081177A

  • Integrated prefabricated pump station with pressure-resistant and anti-floating design

    CN215715727U