Prefabricated reinforced concrete integrated agricultural motor-pumped well pump station house
By using precast reinforced concrete integrated design and integral casting technology, the resource waste and construction difficulties of traditional agricultural well pumping stations have been solved, realizing environmentally friendly, safe, beautiful and low-cost agricultural well pumping stations that are suitable for modern agricultural water conservancy construction.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-20
- Publication Date
- 2026-03-27
AI Technical Summary
Traditional agricultural well pump station buildings constructed with clay bricks suffer from problems such as resource waste, poor quality, inconvenient construction, low security, and susceptibility to theft, which hinder the development of basic agricultural water conservancy construction.
The precast reinforced concrete integrated design is adopted, which is connected by a steel mesh frame and cast in one piece to form a rigid integral structure, including the front wall, rear wall, side walls, roof surface and ring beam. Combined with iron security door and aluminum alloy louvers, it realizes factory production and rapid installation.
It realizes an environmentally friendly, safe, beautiful and low-cost agricultural well pump station, with long service life and maintenance-free features, solving the resource waste and construction difficulties of traditional brick and tile houses, and improving construction speed and safety.
Smart Images

Figure CN224048797U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a prefabricated reinforced concrete integrated agricultural machine well pump station house, in particular to a prefabricated reinforced concrete integrated agricultural machine well pump station house used in a modern agricultural machine well pump irrigation station, which is integrally formed by one-time pouring of reinforced concrete and is a prefabricated house, and belongs to the technical field of agricultural construction engineering. BACKGROUND
[0002] With the rapid development of modern agricultural infrastructure, high-standard farmland requires high-standard water conservancy facilities to be matched. First, the agricultural machine well pump station is the first, and the clay brick masonry tile house used in the past agricultural machine well pump station has the following shortcomings: 1) clay bricks destroy farmland, waste resources, and are not environmentally friendly; 2) the quality of the house built with clay bricks is poor, the foundation is not firm, the safety of the house is not enough, and the house will collapse in a few years and needs to be rebuilt; 3) it is not convenient to construct in the farmland, the construction time is long, and the construction cost is high; 4) the house is not safe, and cannot play a role in preventing theft, resulting in theft of the agricultural machine well pump station from time to time, which greatly affects the development of agricultural infrastructure. In order to overcome the defects of the above-mentioned agricultural machine well pump station house, it is inevitable to develop a prefabricated reinforced concrete integrated agricultural machine well pump station house. Therefore, the present inventors attempt to design a prefabricated reinforced concrete integrated agricultural machine well pump station house, the steel bars of the ring beam, the surrounding walls, and the roof surface are connected to form a complete three-dimensional structure, which becomes a rigid whole, and the concrete is integrally formed by one-time pouring, which has the characteristics of factory production, low production cost, fast construction speed, prefabricated installation, maintenance-free use, safety and beauty, and long service life. CONTENT OF THE UTILITY MODEL
[0003] The utility model aims at overcoming the shortcomings of the traditional agricultural machine well pump station house built with clay bricks, and designs a prefabricated reinforced concrete integrated agricultural machine well pump station house, which has the characteristics of integrated molding, low production cost, no environmental pollution, prefabricated installation, beauty and safety, maintenance-free use, and long product life.
[0004] A prefabricated reinforced concrete integrated agricultural machine well pump station house is characterized in that it is composed of a front wall 1, a rear wall 2, a left side wall 3, a right side wall 4, a roof surface 5, a safety door 6, a louvered ventilation window 7, a machine well maintenance opening cover plate 8, a ring beam 9, a plurality of water outlet pipes 10, a static pressure pile 19, and a machine well maintenance opening 22.
[0005] The front wall 1 is provided with a ring beam 9 below and a roof surface 5 above, and is provided with a water outlet 10 at the upper left of the ring beam 9 and a safety door 6 at the right side, wherein a steel mesh frame structure composed of a plurality of horizontal steel bars 13, a plurality of vertical steel bars 14 and two hoisting steel bars 17 is arranged in the safety door 6, each horizontal steel bar 13 and vertical steel bar 14 are firmly bound at the vertical intersection by binding wire, and the hoisting steel bars 17 are integrally welded with the horizontal steel bars 13 and vertical steel bars 14 at the intersection; the steel mesh frame in the front wall 1 is connected with the steel mesh frames in the left side wall 3, right side wall 4, roof surface 5 and ring beam 9 to form a three-dimensional steel mesh frame, and the concrete is integrally casted at one time;
[0006] The rear wall 2 is provided with a ring beam 9 below and a roof surface 5 above, and is provided with a water outlet 10 at the upper right of the ring beam 9, wherein a steel mesh frame structure composed of a plurality of horizontal steel bars 13, a plurality of vertical steel bars 14 and two hoisting steel bars 17 is arranged in the water outlet 10, each horizontal steel bar 13 and vertical steel bar 14 are firmly bound at the vertical intersection by binding wire, and the hoisting steel bars 17 are integrally welded with the horizontal steel bars 13 and vertical steel bars 14 at the intersection; the steel mesh frame in the rear wall 2 is connected with the steel mesh frames in the left side wall 3, right side wall 4, roof surface 5 and ring beam 9 to form a three-dimensional steel mesh frame, and the concrete is integrally casted at one time;
[0007] The left side wall 3 is provided with a ring beam 9 below and a roof surface 5 above, and is provided with a water outlet 10 at the upper right of the ring beam 9, wherein a steel mesh frame structure composed of a plurality of horizontal steel bars 13 and a plurality of vertical steel bars 14 is arranged in the water outlet 10, each horizontal steel bar 13 and vertical steel bar 14 are firmly bound at the vertical intersection by binding wire, and are connected to form a rigid mesh frame structure; the steel mesh frame in the left side wall 3 is connected with the steel mesh frames in the front wall 1, rear wall 2, roof surface 5 and ring beam 9 to form a three-dimensional steel mesh frame, and the concrete is integrally casted at one time;
[0008] The right side wall 4 is provided with a ring beam 9 below and a roof surface 5 above, and is provided with a louvered window 7 in the middle, wherein a steel mesh frame structure composed of a plurality of horizontal steel bars 13, a plurality of vertical steel bars 14 and a window rectangular steel bar 18 is arranged in the louvered window 7, each horizontal steel bar 13 and vertical steel bar 14 are firmly bound at the vertical intersection by binding wire, and are connected to form a rigid mesh frame structure; the steel mesh frame in the right side wall 4 is connected with the steel mesh frames in the front wall 1, rear wall 2, roof surface 5 and ring beam 9 to form a three-dimensional steel mesh frame, and the concrete is integrally casted at one time;
[0009] The roof surface 5 is provided with a vertical manhole 22 connected with the manhole 11, and is connected with the front wall 1, the back wall 2, the left side wall 3 and the right side wall 4 below, and is provided with a steel bar net rack structure composed of a plurality of horizontal steel bars 13, a plurality of vertical steel bars 14, a manhole rectangular steel bar 15 and a plurality of manhole reinforcing inclined pull bars 16, each horizontal steel bar 13 and the vertical steel bar 14 are crossed perpendicularly, and are firmly bound by binding wire to form a rigid net rack structure; the steel bar net rack in the roof surface 5 is connected with the steel bar net rack in the front wall 1, the back wall 2, the left side wall 3, the right side wall 4 and the ring beam 9 to form a three-dimensional steel bar net rack, and is integrally casted by concrete at one time;
[0010] The safety door 6 is made of iron, the door frame is composed of square tubes, the door frame is firmly welded with the steel bars in the front wall 1 and is located above the ring beam 9; the safety door 6 is commercially available;
[0011] The frame and the fan of the louvered window 7 are made of aluminum alloy and are located at the upper part of the right side wall 4; the louvered window 7 is commercially available;
[0012] The manhole cover plate 8 is located directly above the manhole 22, and is provided with a steel bar net rack composed of a plurality of cover plate horizontal steel bars 24, a plurality of cover plate vertical steel bars 25 and two U-shaped handle steel bars 23;
[0013] The ring beam 9 is located directly below the front wall 1, the back wall 2, the left side wall 3 and the right side wall 4, and has the same thickness as the front wall 1, the back wall 2, the left side wall 3 and the right side wall 4, the steel bars in the ring beam 9 are connected with the steel bars in the front wall 1, the back wall 2, the left side wall 3 and the right side wall 4 to form an integral whole, and the concrete in the ring beam 9 is integrally casted with the front wall 1, the back wall 2, the left side wall 3 and the right side wall 4 at one time;
[0014] The water outlet 10 is located at the lower half of the front wall 1, the back wall 2 and the left side wall 3, has the same height as the water outlet pipe, has a diameter slightly larger than the outer diameter of the water outlet pipe, and is integrally casted at one time;
[0015] The static pressure pile 19 is located directly below the ring beam 9, and is provided with a steel bar framework composed of a plurality of static pressure pile vertical bars 20 and a plurality of static pressure pile stirrups 21;
[0016] The manhole 22 is located at the left middle position of the roof surface 5 and directly above the manhole 11, and is convenient for the maintenance of the manhole pump station, and is provided with the manhole cover plate 8 thereon.
[0017] The outer walls of the front wall 1, the back wall 2, the left side wall 3 and the right side wall 4 are painted with white exterior wall waterproof paint. BRIEF DESCRIPTION OF DRAWINGS
[0018] Figure 1This is a three-dimensional schematic diagram of the present invention;
[0019] Figure 2 This is a planar schematic diagram of one layer of this utility model;
[0020] Figure 3 This is a schematic diagram of the roof plan of this utility model;
[0021] Figure 4 This is a front elevation view of the present invention;
[0022] Figure 5 This is a schematic diagram of the rear elevation of this utility model;
[0023] Figure 6 This is a schematic diagram of the left elevation of this utility model;
[0024] Figure 7 This is a schematic diagram of the right elevation of this utility model;
[0025] Figure 8 This is a schematic diagram of the AA cross-section of this utility model;
[0026] Figure 9 This is a schematic cross-sectional view of the present invention.
[0027] Figure 10 This is a schematic diagram of the steel mesh structure of the roof surface 5 of this utility model;
[0028] Figure 11 This is a schematic diagram of the steel mesh structure of the front wall 1 of this utility model;
[0029] Figure 12 This is a schematic diagram of the steel mesh structure of the rear wall 2 of this utility model;
[0030] Figure 13 This is a schematic diagram of the steel mesh structure of the left side wall 3 of this utility model;
[0031] Figure 14 This is a schematic diagram of the steel mesh structure of the right wall 4 of this utility model;
[0032] Figure 15 This is a schematic diagram showing the positional distribution of the static pressure pile 19 of this utility model;
[0033] Figure 16 This is a three-dimensional schematic diagram of the static pressure pile 19 of this utility model;
[0034] Figure 17 This is a three-dimensional schematic diagram of the inspection port cover plate 8 of this utility model;
[0035] Figure 18 This is a three-dimensional schematic diagram of the steel reinforcement structure of the inspection port cover plate of this utility model.
[0036] Fig.
[0037] 1 is front wall
[0038] 2 is back wall
[0039] 3 is left side wall
[0040] 4 is right side wall
[0041] 5 is roof surface
[0042] 6 is safety door
[0043] 7 is louvered vent
[0044] 8 is machine well manhole cover plate
[0045] 9 is ring beam
[0046] 10 is water outlet
[0047] 11 is machine well
[0048] 12 is machine well installation platform
[0049] 13 is horizontal steel bar
[0050] 14 is vertical steel bar
[0051] 15 is manhole rectangular steel bar
[0052] 16 is manhole reinforcing diagonal bar
[0053] 17 is hoisting steel bar
[0054] 18 is window rectangular steel bar
[0055] 19 is static pressure pile
[0056] 20 is static pressure pile vertical bar
[0057] 21 is static pressure pile stirrup
[0058] 22 is machine well manhole
[0059] 23 is U-shaped handle steel bar
[0060] 24 is cover plate horizontal steel bar
[0061] 25 is cover plate vertical steel bar DETAILED DESCRIPTION
[0062] The utility model is realized as follows, which is described below in combination with the drawings Figures 1-18For further illustration: a prefabricated reinforced concrete integrated agricultural well pump station house is characterized in that it is composed of a front wall 1, a rear wall 2, a left side wall 3, a right side wall 4, a roof surface 5, a safety door 6, a louvered ventilation window 7, a well maintenance opening cover plate 8, a ring beam 9, a plurality of water outlet pipes 10, a static pressure pile 19, and a well maintenance opening 22.
[0063] The front wall 1 is provided with the ring beam 9 below and the roof surface 5 above, and is provided with the water outlet pipe 10 at the upper left side of the ring beam 9 and the safety door 6 at the right side, and is provided with the steel bar mesh structure composed of a plurality of horizontal steel bars 13, a plurality of vertical steel bars 14, and two hoisting steel bars 17 inside, each horizontal steel bar 13 and vertical steel bar 14 are perpendicular to each other at the intersection, and are firmly bound with binding wire, and the hoisting steel bars 17 are welded to the horizontal steel bars 13 and vertical steel bars 14 at the intersection to form an integral whole; the steel bar mesh structure in the front wall 1 is connected to the steel bar mesh structures in the left side wall 3, the right side wall 4, the roof surface 5, and the ring beam 9 to form a three-dimensional steel bar mesh structure, and the concrete is integrally casted in one time;
[0064] The rear wall 2 is provided with the ring beam 9 below and the roof surface 5 above, and is provided with the water outlet pipe 10 at the upper right side of the ring beam 9, and is provided with the steel bar mesh structure composed of a plurality of horizontal steel bars 13, a plurality of vertical steel bars 14, and two hoisting steel bars 17 inside, each horizontal steel bar 13 and vertical steel bar 14 are perpendicular to each other at the intersection, and are firmly bound with binding wire, and the hoisting steel bars 17 are welded to the horizontal steel bars 13 and vertical steel bars 14 at the intersection to form an integral whole; the steel bar mesh structure in the rear wall 2 is connected to the steel bar mesh structures in the left side wall 3, the right side wall 4, the roof surface 5, and the ring beam 9 to form a three-dimensional steel bar mesh structure, and the concrete is integrally casted in one time;
[0065] The left side wall 3 is provided with the ring beam 9 below and the roof surface 5 above, and is provided with the water outlet pipe 10 at the upper side of the ring beam 9, and is provided with the steel bar mesh structure composed of a plurality of horizontal steel bars 13 and a plurality of vertical steel bars 14 inside, each horizontal steel bar 13 and vertical steel bar 14 are perpendicular to each other at the intersection, and are firmly bound with binding wire to form a rigid mesh structure; the steel bar mesh structure in the left side wall 3 is connected to the steel bar mesh structures in the front wall 1, the rear wall 2, the roof surface 5, and the ring beam 9 to form a three-dimensional steel bar mesh structure, and the concrete is integrally casted in one time;
[0066] The right side wall 4 is provided with the ring beam 9 below and the roof surface 5 above, and is provided with the louvered ventilation window 7 in the middle, and is provided with the steel bar mesh structure composed of a plurality of horizontal steel bars 13, a plurality of vertical steel bars 14, and window rectangular steel bars 18 inside, each horizontal steel bar 13 and vertical steel bar 14 are perpendicular to each other at the intersection, and are firmly bound with binding wire to form a rigid mesh structure; the steel bar mesh structure in the right side wall 4 is connected to the steel bar mesh structures in the front wall 1, the rear wall 2, the roof surface 5, and the ring beam 9 to form a three-dimensional steel bar mesh structure, and the concrete is integrally casted in one time;
[0067] The roof surface 5 is provided with a machine well manhole 22 which is perpendicular to the machine well 11, and is connected with the front wall 1, the back wall 2, the left side wall 3 and the right side wall 4, and a steel mesh frame structure which is composed of a plurality of horizontal steel bars 13, a plurality of vertical steel bars 14, a manhole rectangular steel bar 15 and a plurality of manhole reinforcing inclined pull bars 16 is arranged in the manhole 22, each horizontal steel bar 13 and the vertical steel bar 14 are crossly arranged and are firmly bound by binding wires, and are connected to form a rigid mesh frame structure; the steel mesh frame in the roof surface 5 is connected with the steel mesh frames in the front wall 1, the back wall 2, the left side wall 3, the right side wall 4 and the ring beam 9 to form a three-dimensional steel mesh frame, and the concrete is integrally casted at one time;
[0068] The safety door 6 is made of iron, the door frame is made of square tubes, the door frame is firmly welded with the steel bars in the front wall 1 and is located above the ring beam 9; the safety door 6 is commercially available;
[0069] The frame and the fan of the louvered ventilator 7 are made of aluminum alloy, are located at the upper portion of the right side wall 4, and the louvered ventilator 7 is commercially available;
[0070] The machine well manhole cover plate 8 is located directly above the machine well manhole 22, and a steel mesh frame which is composed of a plurality of cover plate horizontal steel bars 24, a plurality of cover plate vertical steel bars 25 and two U-shaped handle steel bars 23 is arranged in the cover plate 8;
[0071] The ring beam 9 is located directly below the front wall 1, the back wall 2, the left side wall 3 and the right side wall 4, has the same thickness as the front wall 1, the back wall 2, the left side wall 3 and the right side wall 4, the steel bars in the ring beam 9 are connected with the steel bars in the front wall 1, the back wall 2, the left side wall 3 and the right side wall 4 to form an integral whole, and the concrete in the ring beam 9 is integrally casted at one time with the front wall 1, the back wall 2, the left side wall 3 and the right side wall 4;
[0072] The water outlet 10 is located at the lower half of the front wall 1, the back wall 2 and the left side wall 3, has the same height as the water outlet pipe, has a diameter which is slightly larger than the outer diameter of the water outlet pipe, and is integrally casted at one time;
[0073] The static pressure pile 19 is located directly below the ring beam 9, and a steel framework which is composed of a plurality of static pressure pile vertical bars 20 and a plurality of static pressure pile stirrups 21 is arranged in the static pressure pile 19;
[0074] The machine well manhole 22 is located at the left middle position of the roof surface 5 and directly above the machine well 11, is convenient for the maintenance of the machine well pump station, and is provided with the machine well manhole cover plate 8.
[0075] The outer walls of the front wall 1, the back wall 2, the left side wall 3 and the right side wall 4 are painted with white exterior wall waterproof paint.
[0076] The utility model discloses a machine well pump station which is integrally casted at one time and is convenient for the maintenance of the machine well pump station.
[0077] 1) According to the drawing requirements, the steel bar net frame of the front wall 1, the back wall 2, the left side wall 3, the right side wall 4, the roof surface 5 and the ring beam 9 is made in pieces;
[0078] 2) The steel bar net frames are welded to be connected into a whole house steel bar net frame according to requirements;
[0079] 3) According to the drawing requirements, the bottom mold plate and the outer mold plate are built on the movable heavy vibration platform, and the release agent is applied;
[0080] 4) The whole house steel bar frame welded to be connected is placed into the built mold plate by using hoisting machinery;
[0081] 5) After checking the size, the inner mold plate is installed and fixed firmly;
[0082] 6) The concrete is poured into the mold plate containing the steel bar net frame, and the vibration table is vibrated while pouring, so as to repeat until the pouring reaches the specified size;
[0083] 7) The movable platform and the whole poured house thereon are moved to the steam curing chamber for curing;
[0084] 8) After curing for 24 hours, the mold plate is removed, and the prefabricated reinforced concrete integrated agricultural machine well pump station house is lifted to the finished product site, and the white outer wall waterproof paint is brushed on the outer side walls;
[0085] 9) The prefabricated reinforced concrete integrated agricultural machine well pump station house and a plurality of static pressure piles 19 are lifted to the specified well 11 position; the static pressure pile 19 is accurately placed at the specified position, and the planeness of the static pressure pile 19 is measured;
[0086] 10) The prefabricated reinforced concrete integrated agricultural machine well pump station house is lifted to the static pressure pile 19; and the prefabricated reinforced concrete integrated agricultural machine well pump station house is assembled.
[0087] The beneficial effects of the embodiment of the utility model are as follows:
[0088] The prefabricated reinforced concrete integrated agricultural machine well pump station house overcomes the shortcomings of the traditional clay brick well house, that is, 1) the clay brick destroys the farmland, wastes resources and is not environmentally friendly; 2) the house built by the clay brick has poor quality, the foundation is not firm, the safety of the house is not enough, and the house will collapse after a few years and needs to be rebuilt; 3) it is inconvenient to construct in the farmland, the construction time is long, and the construction cost is high; 4) the house is not safe, cannot play the role of anti-theft, and the theft of the agricultural machine well pump station occurs from time to time, which greatly affects the development of the basic water conservancy construction of agriculture;
[0089] A prefabricated reinforced concrete integrated agricultural well pump station house has become an inevitable choice for high-quality development of modern agricultural water conservancy infrastructure. The steel bars of the ring beam, the surrounding walls and the roof surface are connected to form a complete three-dimensional structure, which becomes a rigid whole, and the concrete is integrally cast in one time, having the characteristics of "factory production, fast construction speed, low construction cost, assembly installation, maintenance-free use, safe and beautiful, long product life".
Claims
1. A precast reinforced concrete integrated agricultural well pump station, characterized in that: It consists of a front wall (1), a rear wall (2), a left side wall (3), a right side wall (4), a roof surface (5), a safety door (6), a louvered ventilation window (7), a well inspection port cover (8), a ring beam (9), several water outlets (10), static pressure piles (19), and a well inspection port (22); The front wall (1) is provided with a ring beam (9) below and a roof surface (5) above. A water outlet (10) is provided on the upper left of the ring beam (9), and a safety door (6) is provided on the right side. Inside, there is a steel mesh structure composed of several horizontal steel bars (13), several vertical steel bars (14), and two hoisting steel bars (17). At the perpendicular intersection of each horizontal steel bar (13) and vertical steel bar (14), they are tied firmly with binding wire. The hoisting steel bar (17) is welded to the intersection of the horizontal steel bar (13) and the vertical steel bar (14) to form a whole. The steel mesh in the front wall (1) is connected with the steel mesh in the left wall (3), right wall (4), roof surface (5) and ring beam (9) to form a three-dimensional steel mesh, and the concrete is poured in one piece. The rear wall (2) is provided with a ring beam (9) below and a roof surface (5) above. A water outlet (10) is provided on the upper right side of the ring beam (9). Inside the ring beam (9) is a steel mesh structure composed of several horizontal steel bars (13), several vertical steel bars (14), and two hoisting steel bars (17). At the perpendicular intersection of each horizontal steel bar (13) and vertical steel bar (14), they are tied firmly with binding wire. The hoisting steel bars (17) are welded to the intersection of the horizontal steel bars (13) and vertical steel bars (14) to form a whole. The steel mesh in the rear wall (2) is connected with the steel mesh in the left wall (3), right wall (4), roof surface (5), and ring beam (9) to form a three-dimensional steel mesh. The concrete is poured in one go. The left wall (3) is provided with a ring beam (9) below and a roof surface (5) above. A water outlet (10) is provided above the ring beam (9). Inside the ring beam (9) is a steel mesh structure composed of several horizontal steel bars (13) and several vertical steel bars (14). At the perpendicular intersection of each horizontal steel bar (13) and vertical steel bar (14), they are tied firmly with binding wire to form a rigid mesh structure. The steel mesh in the left wall (3) is connected with the steel mesh in the front wall (1), rear wall (2), roof surface (5) and ring beam (9) to form a three-dimensional steel mesh, and the concrete is poured in one go. The right wall (4) is provided with a ring beam (9) below and a roof surface (5) above. A louvered ventilation window (7) is provided in the middle. Inside, there is a steel mesh structure composed of several horizontal steel bars (13), several vertical steel bars (14), and window rectangular steel bars (18). At the perpendicular intersection of each horizontal steel bar (13) and vertical steel bar (14), they are tied firmly with binding wire to form a rigid mesh structure. The steel mesh in the right wall (4) is connected with the steel mesh in the front wall (1), rear wall (2), roof surface (5), and ring beam (9) to form a three-dimensional steel mesh, and the concrete is poured in one piece. The roof surface (5) is provided with a well inspection port (22) perpendicular to the well (11), which is connected to the front wall (1), rear wall (2), left wall (3), and right wall (4) below. It is provided with a steel mesh structure consisting of several horizontal steel bars (13), several vertical steel bars (14), rectangular steel bars (15) for the inspection port, and several reinforcing diagonal braces (16) for the inspection port. At the perpendicular intersection of each horizontal steel bar (13) and vertical steel bar (14), they are tied firmly with binding wire to form a rigid mesh structure. The steel mesh in the roof surface (5) is connected with the steel mesh in the front wall (1), rear wall (2), left wall (3), right wall (4), and ring beam (9) to form a three-dimensional steel mesh, and the concrete is poured in one piece. The security door (6) is made of iron anti-theft door, the door frame is made of square tube, the door frame is firmly welded to the steel bars in the front wall (1), and is located above the ring beam (9); the security door (6) is available on the market; The frame and sash of the louvered ventilation window (7) are made of aluminum alloy and are located on the upper part of the right side wall (4). The louvered ventilation window (7) is available on the market. The well inspection port cover (8) is located directly above the well inspection port (22), and is provided with a steel mesh frame consisting of several horizontal steel bars (24), several vertical steel bars (25) and two U-shaped handle steel bars (23). The ring beam (9) is located directly below the front wall (1), rear wall (2), left wall (3), and right wall (4). Its thickness is the same as that of the front wall (1), rear wall (2), left wall (3), and right wall (4). Its internal steel bars are connected to the steel bars of the front wall (1), rear wall (2), left wall (3), and right wall (4) as a whole. Its concrete is cast integrally with the front wall (1), rear wall (2), left wall (3), and right wall (4) in one go. The water outlet (10) is located in the lower half of the front wall (1), the rear wall (2), and the left side wall (3), respectively. Its height from the ground is the same as that of the water outlet, and its diameter is slightly larger than the outer diameter of the water outlet. It is formed by casting in one piece. The static pressure piles (19) are located directly below the ring beam (9), and are equipped with a steel reinforcement cage consisting of several static pressure pile vertical bars (20) and several static pressure pile stirrups (21). The well inspection port (22) is located in the middle of the left side of the roof surface (5), directly above the well (11), which facilitates well maintenance. It is equipped with a well inspection port cover plate (8).
2. The precast reinforced concrete integrated agricultural well pump station according to claim 1, characterized in that: The outer walls of the front wall (1), rear wall (2), left wall (3), and right wall (4) are coated with white waterproof paint.