Assembled high-standard farmland irrigation pump house

By adopting assembled design and light steel keel structure in the irrigation pump room, the problems of long construction cycle and insufficient environmental adaptability of traditional irrigation pump room are solved, rapid assembly and firm installation are achieved, and construction efficiency and convenience of use are improved.

CN222975996UActive Publication Date: 2025-06-13WUXI HAORUN ENVIRONMENTAL PROTECTION TECH CO LTD
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Patent Information

Application Number
CN202421964787.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-14
Publication Date
2025-06-13
Estimated Expiration
2034-08-14

AI Technical Summary

Technical Problem

The construction cycle of traditional irrigation pump houses is long, the construction quality and environmental adaptability are insufficient, especially in farmland irrigation scenarios that require frequent migration or adjustment, which seems inconvenient.

Method used

It adopts an assembled design, the roof and the house are assembled in a split structure, and the main body is light steel keel structure, which is installed and connected by positioning ear plates, bolts and cap nuts, so as to achieve rapid assembly and firm installation.

Benefits of technology

It improves the installation and transportation convenience of the pump room, shortens the construction cycle, improves the construction efficiency and convenience of use, and at the same time enhances the environmental adaptability and safety of the pump room.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of pump house design and assembly, and discloses a split mounting type high-standard farmland irrigation pump house which comprises a roof and a house body, the roof and the house body are both installed through light steel joists in a modeling mode, positioning lug plates are arranged on the bottom wall of the roof corresponding to the size of a house frame, and the roof is hoisted to the position over the house body through external hoisting equipment. The positioning lug plates are inserted into the top of the house body, at the moment, the positioning lug plates are attached to the inner side wall of the top of the house body, a plurality of mounting holes are formed between the positioning lug plates and the side wall of the top of the house body in a jointly matched mode, and nuts with caps are welded to the inner walls, away from the inner side wall of the top of the house body, of the positioning lug plates; and the positioning lug plates and the side wall of the top of the house body penetrate through the mounting holes through bolts together, and are in threaded connection with the corresponding nut with the nut, so that mounting and fixing are achieved. The pump room has the effect of improving the transportation and installation convenience of the pump room.
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Description

Technical Field

[0001] This application relates to the technical field of pump house design and assembly, and particularly to a prefabricated high-standard farmland irrigation pump house. Background Art

[0002] The high-standard farmland irrigation pump house is designed for the construction of high-standard farmland, used to lift water sources to farmland to ensure that crops receive sufficient and precise moisture.

[0003] The construction of high-standard farmland is crucial for improving agricultural production efficiency, and the irrigation pump house plays a vital role in it. However, traditional irrigation pump houses usually adopt the construction method of in-situ casting, which not only has a long construction period and is not conducive to the rapid progress of agricultural projects, but also poses many challenges in terms of construction quality and environmental adaptability. Especially in the farmland irrigation scenarios that require frequent relocation or adjustment, traditional irrigation pump houses are particularly inconvenient. To solve this problem, there is an urgent need in the industry for an irrigation pump house solution that can be quickly assembled, easily transported and installed. Utility Model Content

[0004] In order to improve the convenience of transporting and installing the pump house, this application provides a prefabricated high-standard farmland irrigation pump house.

[0005] The prefabricated high-standard farmland irrigation pump house provided by this application adopts the following technical solutions:

[0006] A prefabricated high-standard farmland irrigation pump house includes a roof and a housing. Both the roof and the housing are installed by modeling with light steel keels. Positioning ear plates are arranged on the bottom wall of the roof corresponding to the size of the housing frame. The roof is lifted to directly above the housing by an external hoisting device, and the positioning ear plates are inserted into the top of the housing. The positioning ear plates are in close contact with the inner side wall of the top of the housing. A number of installation holes are jointly formed between the positioning ear plates and the side wall of the top of the housing. And cap nuts are welded on the inner wall of the positioning ear plates facing away from the inner side wall of the top of the housing. One cap nut is coaxially arranged at each position corresponding to each installation hole. The positioning ear plates and the side wall of the top of the housing are jointly installed through bolts passing through the installation holes and are threadedly connected with the corresponding cap nuts to achieve installation and fixation.

[0007] By adopting the above technical solutions, due to the extremely high total height of the high-standard farmland irrigation pump house, assembling the roof and the housing in a split structure is beneficial to improving the convenience of installing and transporting the pump house. The main body of the pump house adopts a light steel keel structure, which can be made in various specifications according to requirements and is light in weight, further improving the convenience of transportation and structural assembly. At the same time, the roof and the housing are installed and connected with structural parts such as positioning ear plates, bolts and cap nuts, which can realize the rapid assembly and firm installation of the irrigation pump house, and further improve the construction efficiency and use convenience of the pump house.

[0008] Optionally, a roof center column is vertically arranged at the center of the roof. The roof center column extends out of the top end of the roof and is provided with a lifting seat. A through hole is vertically formed in the lifting seat. A lifting nut coaxially arranged with the through hole is welded on the inner top wall of the lifting seat. A lifting ring is arranged at the top of the lifting seat. A first screw rod is slidably arranged through the through hole on the base of the lifting ring and is in threaded cooperation with the lifting nut.

[0009] By adopting the above technical solution, when the roof needs to be hoisted, the lifting ring is bolted to the lifting seat on the roof center column through the first screw rod, which improves the convenience of hoisting and installing the roof by external hoisting equipment.

[0010] Optionally, a decorative cap is arranged at the top of the lifting seat. A second screw rod is slidably arranged through the through hole on the base of the decorative cap and is in threaded cooperation with the lifting nut.

[0011] By adopting the above technical solution, after the roof and the building body are hoisted and in place, the lifting ring is removed, and then a spherical decorative cap with a beautifying shape is installed on the lifting seat through the second screw rod, which can block the through hole. This not only facilitates the installation and construction operation of the pump house, but also increases the overall aesthetic feeling of the pump house.

[0012] Optionally, the roof adopts a gable and hip roof structure, and a drip eaves is arranged around the eaves where the bottom of the roof extends out of the building body.

[0013] By adopting the above technical solution, the roof designed with a gable and hip roof structure not only has good stability, but also can effectively drain water, reducing the possibility of damage to the pump house caused by water accumulation. At the same time, the setting of the drip eaves can further enhance the aesthetic feeling of the pump house, improve the drainage effect, and further reduce the possibility of short-circuit damage to the electrical equipment wiring under the eaves caused by inclined rain.

[0014] Optionally, an air outlet is communicated with the inner cavity of the building body on the bottom wall of the eaves where the bottom of the roof extends out of the building body, and an exhaust fan electrically connected to an external controller is arranged inside the roof.

[0015] By adopting the above technical solution, the installation of the exhaust fan electrically connected to the external controller and the air outlet enhances the ventilation performance of the pump house, and the air volume of the exhaust fan can be adjusted according to actual needs. This not only improves the moisture-proof and ventilation effects of the irrigation pump house, but also improves the environmental adaptability and use comfort of the pump house, providing more reliable facility support for farmland irrigation.

[0016] Optionally, the housing body includes a housing frame assembled by a light steel keel frame, a housing wall and a housing door installed on the housing frame. The housing wall includes an inner wall panel installed on the inner side of the housing frame and an outer wall panel installed on the outer side of the housing frame. The inner wall panel is laid with fireproof and heat-insulating plates, and the outer wall panel is assembled with anti-corrosion, moisture-proof and anti-aging plates.

[0017] By adopting the above technical solution, the materials and structural designs of the inner and outer wall panels of the housing fully consider multiple factors such as fire prevention, heat preservation, anti-corrosion and moisture-proof, significantly enhancing the service life and safety of the pump house, reducing the maintenance cost, and meeting the long-term operation requirements of high-standard farmland.

[0018] Optionally, the roof includes a roof frame modeled by a light steel keel frame and a roof surface laid on the roof frame. The roof surface sequentially includes a bottom laying formwork at the bottom layer, a waterproof cloth at the middle layer and asphalt shingles at the top layer from bottom to top. A glue layer is provided on one side of the waterproof cloth facing the asphalt shingles. The asphalt shingles cover the entire roof surface and are bonded to the waterproof cloth.

[0019] By adopting the above technical solution, the roof surface is composed of a laying formwork, a waterproof cloth and asphalt shingles with optional colors from bottom to top. The unique asphalt shingles are firmly bonded to the roof surface through the glue layer on the waterproof cloth, which not only has high waterproof performance but also can effectively protect the roof from the erosion of the external environment, while enhancing the overall aesthetics of the pump house.

[0020] Optionally, solar photovoltaic panels are installed on the roof surface.

[0021] By adopting the above technical solution, installing solar photovoltaic panels can achieve the energy self-sufficiency of the pump house, improve the energy utilization efficiency, and conform to the concept of green and sustainable development.

[0022] Optionally, a monitoring system is arranged inside the roof. The monitoring system includes an indoor lighting lamp and an indoor camera electrically connected to an external controller. The indoor lighting lamp is arranged at the bottom end of the central column of the roof inside the roof, and the indoor camera is installed inside the housing body in cooperation with the light source of the indoor lighting lamp.

[0023] By adopting the above technical solution, the indoor camera is installed at an appropriate position inside the housing body in cooperation with the light source of the lighting lamp, so that the irrigation pump equipment inside the pump house can be monitored comprehensively, facilitating the users to repair the faulty irrigation pump in time.

[0024] Optionally, an alarm system is provided outside the roof. The alarm system includes an outdoor camera, an alarm, and an infrared sensor electrically connected to an external controller. The outdoor cameras are distributed at the corners of the bottom wall of the eaves extending from the bottom of the roof outside the building body, and the infrared sensors are correspondingly installed on the bottom wall of the eaves of the roof directly above the door.

[0025] By adopting the above technical solutions, the outdoor cameras are distributed at the corners of the bottom wall of the eaves extending from the bottom of the roof to provide comprehensive video monitoring; while the infrared sensors are installed on the bottom wall of the eaves of the roof directly above the door to detect the entry and exit of personnel and drive the alarm to send out corresponding alarm signals.

[0026] In summary, the present application includes at least one of the following beneficial technical effects:

[0027] 1. Since the total height of the high-standard farmland irrigation pump house is extremely high, the roof and the building body are assembled in a split structure, which is beneficial to improving the convenience of installation and transportation of the pump house. The main body of the pump house adopts a light steel keel structure, which can be made into various specifications according to requirements and is light in weight, further improving the convenience of transportation and structural assembly. At the same time, the roof and the building body are installed and connected by using structural parts such as positioning ear plates, bolts, and cap nuts, which can realize the rapid assembly and firm installation of the irrigation pump house, further improving the construction efficiency and use convenience of the pump house;

[0028] 2. When the roof needs to be hoisted, the lifting ring is bolted to the lifting seat on the central column of the roof through the first screw rod, which is convenient for the external hoisting equipment to hoist and install the roof;

[0029] 3. After the roof and the building body are hoisted in place, the lifting ring is removed, and then a spherical decorative cap with a beautiful shape is installed on the lifting seat through the second screw rod, which can block the through hole, not only facilitating the installation and construction operation of the pump house, but also increasing the overall aesthetic feeling of the pump house. BRIEF DESCRIPTION OF THE DRAWINGS

[0030] Figure 1 is the overall structural schematic diagram of the embodiment of the present application.

[0031] Figure 2 is the overall structural sectional view of the embodiment of the present application.

[0032] Figure 3 is Figure 2 the enlarged view of part A in

[0033] Figure 4 is the structural schematic diagram showing the positional relationship between the alarm and the roof and the building body in the embodiment of the present application.

[0034] Figure 5 is the sectional view showing the connection relationship between the lifting seat and the lifting ring in the embodiment of the present application.

[0035] Figure 6 It is a sectional view showing the connection relationship between the lifting seat and the decorative cap in the embodiments of the present application.

[0036] Explanation of reference numerals:

[0037] 1. Roof; 11. Roof frame; 111. Positioning ear plate; 1111. Cap nut; 12. Roof surface; 121. Bottom template; 122. Waterproof cloth; 123. Asphalt shingle; 2. House body; 21. House frame; 22. House wall; 221. Interior wall panel; 222. Exterior wall panel; 23. House door; 24. Installation hole; 241. Bolt; 3. Solar photovoltaic panel; 4. Roof center column; 41. Lifting seat; 411. Through hole; 412. Lifting nut; 42. Hoisting ring; 421. First screw; 5. Decorative cap; 51. Second screw; 6. Ventilation system; 61. Air outlet; 62. Exhaust fan; 7. Monitoring system; 71. Indoor lighting lamp; 72. Indoor camera; 8. Alarm system; 81. Outdoor camera; 82. Alarm; 83. Infrared sensor; 9. Drip eaves. Detailed implementation manners

[0038] The following further elaborates on the present application Figures 1-6 with reference to the appended drawings.

[0039] The embodiments of the present application disclose a prefabricated high-standard farmland irrigation pump house.

[0040] Referring to Figure 1 and Figure 2 , a prefabricated high-standard farmland irrigation pump house includes a roof 1 and a house body 2. The roof 1 and the house body 2 are assembled in a split structure. The roof 1 includes a roof frame 11 and a roof surface 12. The roof frame 11 is modeled into a gable roof structure using a light steel keel frame, and the roof surface 12 is laid and installed on the roof frame 11. A solar photovoltaic panel 3 is installed on the roof surface 12. At the center of the roof 1, a roof center column 4 is fixedly arranged vertically. A spherical decorative cap 5 is installed at the top of the roof center column 4. A complete ventilation system 6, a monitoring system 7, and an alarm system 8 are arranged inside and outside the roof 1; the house body 2 includes a house frame 21, a house wall 22, and a house door 23. The house frame 21 is assembled using a light steel keel frame according to actual needs, and the house wall 22 and the house door 23 are assembled on the house frame 21.

[0041] Referring to Figure 3, the roof 12 successively includes a base formwork 121, a waterproof cloth 122, and asphalt shingles 123 from bottom to top. The base formwork 121 is laid and installed on the roof frame 11 of the gable roof structure. The waterproof cloth 122 is adhesively laid on the base formwork 121, and then the asphalt shingles 123 are laid on the waterproof cloth 122. A glue layer is fixedly arranged on one side of the waterproof cloth 122 facing the asphalt shingles 123, and the asphalt shingles 123 are bonded to the waterproof cloth 122, forming a good waterproof layer, which not only looks beautiful but also protects the roof 1 from rain.

[0042] Refer to Figure 3 , in order to further effectively guide rainwater to a position far from the wall, a drip edge 9 is fixedly surrounded at the eaves part extending from the bottom of the roof 1.

[0043] Refer to Figure 1 and Figure 2 , the ventilation system 6 includes an air outlet 61 and an exhaust fan 62. The air outlet 61 is communicated with the inner cavity of the housing 2 and is installed on the bottom wall of the eaves extending from the bottom of the roof 1 and extending out of the housing 2, and one is provided on the bottom wall of the eaves on both sides of the door 23. The exhaust fan 62 is located inside the roof 1 and is installed on the roof frame 11. The exhaust fan 62 is electrically connected to an external controller. The exhaust fan 62 can be intelligently adjusted through the external controller according to the temperature and humidity conditions in the pump room to ensure the comfort of the environment in the pump room and the normal operation of the equipment.

[0044] Refer to Figure 2 , the monitoring system 7 includes an indoor lighting lamp 71 and an indoor camera 72. The indoor lighting lamp 71 is located below the exhaust fan 62 and is fixedly arranged at the bottom end of the roof center column 4 inside the roof 1. The indoor camera 72 is installed on the roof frame 11 inside the housing 2 in cooperation with the light source of the indoor lighting lamp 71. Both the lighting lamp and the indoor camera 72 are electrically connected to an external controller. The indoor camera 72 can comprehensively monitor the operation of the equipment in the pump room and promptly discover and handle problems.

[0045] Refer to Figure 1 and Figure 4 , the alarm system 8 includes an outdoor camera 81, an alarm 82, and an infrared sensor 83. The outdoor camera 81 is distributed and installed at the corners of the bottom wall of the eaves extending from the bottom of the roof 1 and extending out of the housing 2. The infrared sensor 83 is correspondingly installed on the bottom wall of the eaves of the roof 1 directly above the door 23. The alarm 82 is installed on the bottom wall of the eaves of the roof 1 directly above the housing wall 22 away from the door 23. The outdoor camera 81, the alarm 82, and the infrared sensor 83 are all electrically connected to an external controller. It can real-time monitor the safety situation around the pump room. Once there is an illegal intrusion by a person or an abnormality in the equipment, the alarm system 8 will be immediately triggered to send an alarm message, thereby ensuring the safe and stable operation of the pump room.

[0046] Refer toFigure 2 , the house wall 22 includes an inner wall panel 221 and an outer wall panel 222. The inner wall panel 221 is laid with a fireproof and heat-insulating metal carved board and installed on the inner side of the house frame 21, while the outer wall panel 222 is assembled with a new type of WPC plastic wood with anti-corrosion, moisture-proof and anti-aging properties and installed on the outer side of the house frame 21.

[0047] Refer to Figure 1 and Figure 5 , in order to improve the convenience of the installation of the pump house, a lifting seat 41 is fixedly arranged at the top end of the roof center column 4 extending out of the roof 1. A through hole 411 is vertically opened on the lifting seat 41, and a lifting nut 412 coaxially arranged with the through hole 411 is welded on the inner top wall of the lifting seat 41. When the roof 1 needs to be hoisted, a lifting ring 42 is arranged on the top of the lifting seat 41. A first screw rod 421 is integrally formed on the base of the lifting ring 42. The first screw rod 421 slidably passes through the through hole 411 and is in threaded cooperation with the lifting nut 412.

[0048] Refer to Figure 1 , Figure 5 and Figure 6 , a second screw rod 51 is integrally formed on the base of the decorative cap 5. The second screw rod 51 slidably passes through the through hole 411 and is in threaded cooperation with the lifting nut 412. After the roof 1 and the housing body 2 are hoisted in place, the lifting ring 42 is removed, and then the spherical decorative cap 5 with a beautiful shape is installed on the lifting seat 41 through the second screw rod 51, which can block the through hole 411.

[0049] Refer to Figure 2 , Figure 3 and Figure 5 , positioning ear plates 111 are precisely welded on the bottom wall of the roof frame 11 corresponding to the size of the house frame 21. The roof 1 can be hoisted above the housing body 2 by the lifting ring 42 installed on the lifting seat 41 through an external hoisting equipment hook, and the positioning ear plates 111 are inserted into the top of the housing body 2. At this time, the positioning ear plates 111 are in contact with the inner side wall of the top of the housing body 2.

[0050] Refer to Figure 1 and Figure 3 , in order to further improve the stability of the connection between the roof 1 and the housing body 2, a number of installation holes 24 are jointly opened at the contact part where the side wall of the housing body 2 is in contact with the positioning ear plates 111. In this embodiment, it is taken as an example that two installation holes 24 are distributed on each side of the housing body 2. A cap nut 1111 is welded on the inner wall of the positioning ear plate 111 facing away from the inner side wall of the top of the housing body 2. One cap nut 1111 is coaxially arranged at each corresponding installation hole 24. A bolt 241 is jointly passed through each group of installation holes 24, and the bolt 241 is in threaded connection with the cap nut 1111 welded on the inner wall of the positioning ear plate 111, so as to realize the installation and fixation between the roof 1 and the housing body 2.

[0051] The implementation principle of the assembled high-standard farmland irrigation pump house in the embodiments of this application is as follows: Through the installation of light steel keel modeling, the ingenious design of positioning ear plates 111 and cap nuts 1111, the addition of multiple functional modules, and the introduction of a perfect monitoring and alarm system 8, not only the transportation and installation convenience, environmental adaptability and service life of the irrigation pump house are improved, but also the safety and management efficiency of the pump house are greatly enhanced, providing strong support for the construction and management of high-standard farmland.

[0052] The above are all the preferred embodiments of this application. The protection scope of this application is not limited by this. Therefore, all equivalent changes made according to the structure, shape and principle of this application shall be covered within the protection scope of this application.

Claims

1. An assembled high-standard farmland irrigation pump house, characterized in that: The invention comprises a roof (1) and a house body (2), wherein the roof (1) and the house body (2) are both modeled and installed with light steel keels, and a positioning ear plate (111) is provided on the bottom wall of the roof (1) corresponding to the size of the house frame (21), and the roof (1) is hoisted to the top of the house body (2) by external hoisting equipment, and the positioning ear plate (111) is plugged into the top of the house body (2), and the positioning ear plate (111) is arranged to fit the inner side wall of the top of the house body (2), and the positioning ear plate (111) is arranged to fit the inner side wall of the top of the house body (2). A plurality of mounting holes (24) are formed between the side walls at the top of the housing (2), and a cap nut (1111) is welded on the inner wall of the positioning ear plate (111) away from the inner wall at the top of the housing (2). One cap nut (1111) is coaxially arranged at each mounting hole (24). The positioning ear plate (111) and the side wall at the top of the housing (2) are penetrated by bolts (241) to form mounting holes (24), and are threadedly connected with the corresponding cap nut (1111) to achieve mounting and fixing.

2. The assembled high-standard farmland irrigation pump house according to claim 1 is characterized in that: A roof center column (4) is vertically arranged at the center of the roof (1), and a lifting seat (41) is arranged at the top of the roof center column (4) extending out of the roof (1). A through hole (411) is vertically opened on the lifting seat (41), and a lifting nut (412) coaxially arranged with the through hole (411) is welded on the inner top wall of the lifting seat (41), and a lifting ring (42) is arranged on the top of the lifting seat (41), and a first screw (421) that slides through the through hole (411) and is threadedly matched with the lifting nut (412) is arranged on the base of the lifting ring (42).

3. The assembled high-standard farmland irrigation pump house according to claim 2 is characterized in that: A decorative cap (5) is arranged on the top of the lifting seat (41), and a second screw (51) is arranged on the base of the decorative cap (5) and is slidably penetrated through a through hole (411) and threadably matched with the lifting nut (412).

4. The assembled high-standard farmland irrigation pump house according to claim 1 is characterized in that: The roof (1) adopts a gabled roof structure, and a drip eave (9) is provided around the eaves extending from the bottom of the roof (1) beyond the house body (2).

5. The assembled high-standard farmland irrigation pump house according to claim 1 is characterized in that: An exhaust port (61) is provided on the bottom wall of the eaves extending from the bottom of the house body (2) and connected to the inner cavity of the house body (2), and an exhaust fan (62) electrically connected to an external controller is provided inside the roof (1).

6. The assembled high-standard farmland irrigation pump house according to claim 1 is characterized in that: The house body (2) comprises a house frame (21) assembled by using a light steel skeleton, and a house wall (22) and a house door (23) installed on the house frame (21); the house wall (22) comprises an inner wall panel (221) installed on the inner side of the house frame (21) and an outer wall panel (222) installed on the outer side of the house frame (21); the inner wall panel (221) is paved by using fireproof and heat-insulating panels, and the outer wall panel (222) is assembled by using anti-corrosion, moisture-proof and anti-aging panels.

7. The assembled high-standard farmland irrigation pump house according to claim 1 is characterized in that: The roof (1) comprises a roof frame (11) modeled by a light steel skeleton and a roof (12) laid on the roof frame (11), wherein the roof (12) comprises, from bottom to top, a bottom layer of a primer template (121), a middle layer of a waterproof cloth (122), and a top layer of asphalt shingles (123), wherein an adhesive layer is provided on a side of the waterproof cloth (122) facing the asphalt shingles (123), and the asphalt shingles (123) are laid on the entire roof (12) and bonded to the waterproof cloth (122).

8. The assembled high-standard farmland irrigation pump house according to claim 7 is characterized in that: A solar photovoltaic panel (3) is installed on the roof (12).

9. The assembled high-standard farmland irrigation pump house according to claim 2 is characterized in that: A monitoring system (7) is arranged inside the roof (1), and the monitoring system (7) comprises an indoor lighting lamp (71) and an indoor camera (72) electrically connected to an external controller, the indoor lighting lamp (71) being arranged at the bottom end of a roof center column (4) located inside the roof (1), and the indoor camera (72) being installed inside the house body (2) in conjunction with the light source of the indoor lighting lamp (71).

10. The assembled high-standard farmland irrigation pump house according to claim 6 is characterized in that: An alarm system (8) is arranged outside the roof (1), and the alarm system (8) comprises an outdoor camera (81) electrically connected to an external controller, an alarm (82) and an infrared sensor (83). The outdoor camera (81) is arranged at a corner of the eaves bottom wall extending from the bottom of the roof (1) to the room body (2), and the infrared sensor (83) is correspondingly installed on the eaves bottom wall of the roof (1) directly above the door (23).