Green energy-saving environment-friendly house structure

By setting up a platform part and a planting area on the roof and cleaning the solar power generation device with a flushing device, the problem of inconvenient cleaning of photovoltaic panel components is solved, and the green and environmental protection effect of automatic cleaning and irrigation is achieved.

CN120486789APending Publication Date: 2025-08-15BEIJING KEHUA ZHENGXIN TECH CO LTD
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Patent Information

Application Number
CN202510842399.6
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-06-23
Publication Date
2025-08-15

AI Technical Summary

Technical Problem

In the prior art, photovoltaic panel components are inconvenient to clean at high places on the roof, resulting in accumulation of dust or impurities, affecting solar energy conversion efficiency.

Method used

A platform part is arranged on the top of the main body of the house, with first and second planting areas respectively on both sides of the platform part, and first and second solar power generation devices are arranged inclined on both sides of the support frame. The solar power generation device is sprayed with the flushing device to clean the solar power generation device, and the flushing water is guided to the planting area for irrigation.

Benefits of technology

Automatic cleaning without manual cleaning is achieved, the solar power generation device is maintained efficiently, and the flushing water is used as the irrigation water source in the planting area, achieving a green and environmentally friendly effect.

✦ Generated by Eureka AI based on patent content.

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Abstract

The green, energy-saving and environment-friendly house structure comprises a house body, a first planting area and a second planting area are arranged on the two sides of a platform part correspondingly, and a first solar power generation device and a second solar power generation device are obliquely arranged on the two sides of a supporting frame correspondingly; a flushing device is arranged on the supporting frame and used for spraying flushing water to the first solar power generation device and the second solar power generation device, the first solar power generation device guides the flushing water to the first planting area, and the second solar power generation device guides the flushing water to the second planting area. The flushing device sprays flushing water to clean the first solar power generation device and the second solar power generation device, so that thick dust or other impurities can be prevented from being accumulated on the surfaces of the first solar power generation device and the second solar power generation device after long-time use; and the flushing water can be used as a plant irrigation water source of the first planting area and the second planting area, so that the green and environment-friendly effects are achieved.
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Description

Technical Field

[0001] The present invention belongs to the technical field of energy conservation and environmental protection, and in particular relates to a green energy-saving and environmentally friendly house structure. Background Art

[0002] Housing construction is an important place for people to live and thrive. It is also a significant energy and resource consumer. The environment is essential for human survival and the foundation for the sustainable development of human society. As the most energy-intensive social activity, construction has a significant impact on the environment during its design, construction, and operation. Therefore, the concept of low-carbon, environmentally friendly residential design is becoming increasingly popular. Implementing low-carbon, environmentally friendly design during construction is crucial for saving energy and improving quality. Consequently, green, environmentally friendly, and energy-saving buildings have emerged, providing a healthy and comfortable space for human activity with minimal impact on the environment while conserving resources and reducing carbon dioxide emissions.

[0003] Chinese patent document CN214834173U discloses a green, environmentally friendly, and energy-saving building, comprising a main body of the building, which includes a roof and walls, the roof being fixedly connected to the walls. A water tank for storing rainwater is provided on the wall, the water tank being aligned with the edge of the roof, the water tank having a water inlet, the bottom wall of the water inlet penetrating the inner wall of the water tank, and the water tank being connected to an irrigation device for irrigating with rainwater in the water tank. The power supply mechanism includes a solar panel, a photoelectric converter, and a power supply battery. The solar panel is fixedly connected to the roof, the photoelectric converter is located between the solar panel and the power supply battery, and the photoelectric converter and the solar panel are both connected to the power supply battery, which is fixedly connected to the wall and connected to a submersible pump. This green, environmentally friendly, and energy-saving building, through the provision of the water tank and irrigation device, achieves the effect of storing rainwater and conserving water resources.

[0004] The aforementioned patent document installs photovoltaic panels on the roof, but the high roof height makes it difficult to clean the panels. Over time, dust and other impurities accumulate on the panels, reducing their solar energy conversion efficiency and affecting their proper function. Therefore, to address these shortcomings, a green, energy-saving, and environmentally friendly housing structure is proposed to address these issues. Summary of the Invention

[0005] The purpose of the present invention is to provide a green, energy-saving and environmentally friendly house structure to solve the above-mentioned problems existing in the prior art.

[0006] In order to achieve the above-mentioned objectives, the present invention adopts the following technical solutions: a green, energy-saving and environmentally friendly house structure, comprising a house main body, a platform portion is provided on the top of the house main body, a first planting area and a second planting area are respectively provided on both sides of the platform portion, a support frame is provided in the middle of the platform portion, a first solar power generation device and a second solar power generation device are respectively inclined on both sides of the support frame, the first solar power generation device is equipped with a first angle adjustment device, and the second solar power generation device is equipped with a second angle adjustment device; a flushing device is provided on the support frame, and the flushing device is used to spray flushing water to the first solar power generation device and the second solar power generation device, the first solar power generation device guides the flushing water to the first planting area, and the second solar power generation device guides the flushing water to the second planting area.

[0007] As an optional implementation of the above technical solution, the first angle adjustment device includes a first lifting mechanism, the fixed end of the first lifting mechanism is rotatably set on the support frame, the movable end of the first lifting mechanism is rotatably connected to the first solar power generation device, and a first hinge is provided between the end of the first solar power generation device away from the first lifting mechanism and the support frame.

[0008] As an optional implementation of the above technical solution, the first solar power generation device includes a first solar panel, the first solar panel is electrically connected to a first charging controller, the first charging controller is electrically connected to a battery, and the battery is electrically connected to the electrical equipment of the main body of the house through an inverter.

[0009] As an optional implementation of the above technical solution, a first photosensitive element is provided on the first solar cell panel, the first photosensitive element is electrically connected to a control center, and the control center is electrically connected to the first lifting mechanism.

[0010] As an optional implementation of the above technical solution, the first lifting mechanism includes a first electric push rod, and the first electric push rod is electrically connected to the control center.

[0011] As an optional implementation of the above technical solution, the second angle adjustment device includes a second lifting mechanism, the fixed end of the second lifting mechanism is rotatably set on the support frame, the movable end of the second lifting mechanism is rotatably connected to the second solar power generation device, and a second hinge is provided between the end of the second solar power generation device away from the second lifting mechanism and the support frame.

[0012] As an optional implementation of the above technical solution, the second solar power generation device includes a second solar panel, the second solar panel is electrically connected to a second charge controller, and the second charge controller is electrically connected to a battery.

[0013] As an optional implementation of the above technical solution, a second photosensitive element is provided on the second solar cell panel, the second photosensitive element is electrically connected to the control center, and the control center is electrically connected to the second lifting mechanism.

[0014] As an optional implementation of the above technical solution, the second lifting mechanism includes a second electric push rod, and the second electric push rod is electrically connected to the control center.

[0015] As an optional implementation of the above technical solution, the flushing device includes a flushing head, a water pipe, a driving water pump and a water tank. The flushing head is installed on the top of the support frame, the flushing head is connected to the water pipe, and the water pipe is connected to the water tank through the driving water pump.

[0016] As an optional implementation of the above technical solution, the flushing head includes a mounting seat and a rotating head. The mounting seat is installed on the support frame. The rotating head is rotatably connected to the mounting seat. The rotating head is provided with a plurality of spray pipes.

[0017] As an optional implementation of the above technical solution, the rotating head is evenly provided with three spray pipes along its circumference, and the spray directions of the spray pipes are different.

[0018] As an optional implementation of the above technical solution, a filtering mechanism is provided in the water storage tank, and the filtering mechanism is arranged at the water inlet end of the driving water pump.

[0019] As an optional implementation of the above technical solution, the first planting area is connected to a first overflow pipe, and the first overflow pipe is connected to the water tank.

[0020] As an optional implementation of the above technical solution, the second planting area is connected to a second overflow pipe, and the second overflow pipe is connected to the water tank.

[0021] The beneficial effects of the present invention are: The present invention uses a flushing device to spray flushing water to clean the first and second solar power generation devices, eliminating the need for manual cleaning of the surfaces of the first and second solar power generation devices. This prevents the accumulation of thick dust or other impurities on the surfaces of the first and second solar power generation devices due to prolonged use, thereby affecting their operating efficiency and ensuring the normal operation of the first and second solar power generation devices. Furthermore, the flushing water can be used as a source of irrigation water for plants in the first and second planting areas, achieving a green and environmentally friendly effect. The present invention has a simple structure, is flexible and convenient to use, and is highly practical, meeting the green, energy-saving, and environmentally friendly use needs of buildings in the existing market. BRIEF DESCRIPTION OF THE DRAWINGS

[0022] Figure 1This is a structural diagram of a green energy-saving and environmentally friendly house structure in one embodiment of the present invention; Figure 2 is a control block diagram of a first solar power generation device and a second solar power generation device in one embodiment of the present invention; Figure 3 It is a schematic structural diagram of a flushing head in one embodiment of the present invention.

[0023] In the figure: 1-main body of the house; 2-first planting area; 3-second planting area; 4-support frame; 5-first solar power generation device; 6-second solar power generation device; 7-first lifting mechanism; 8-first hinge; 9-first solar panel; 10-first charge controller; 11-battery; 12-inverter; 13-electrical equipment; 14-second lifting mechanism; 15-second hinge; 16-second solar panel; 17-second charge controller; 18-flushing head; 19-water pipe; 20-driving water pump; 21-water tank; 22-mounting base; 23-rotating head; 24-spray pipe. DETAILED DESCRIPTION

[0024] Example 1 like Figure 1 As shown, this embodiment provides a green, energy-saving and environmentally friendly house structure, including a house main body 1, a platform portion is provided on the top of the house main body 1, and a first planting area 2 and a second planting area 3 are respectively provided on both sides of the platform portion. According to specific needs, planting areas can be set on the surrounding sides of the platform portion, which include two first planting areas 2 and two second planting areas 3. Plants can be planted in the first planting area 2 and the second planting area 3.

[0025] A support frame 4 is provided in the middle of the platform. A first solar power generation device 5 and a second solar power generation device 6 are angled and symmetrically arranged on either side of the support frame 4. Both the first and second solar power generation devices 5 and 6 are used to collect and utilize solar energy. The first solar power generation device 5 is equipped with a first angle adjustment device, which is used to adjust the orientation of the first solar power generation device 5 so that the first solar power generation device 5 can fully utilize the solar energy. The second solar power generation device 6 is equipped with a second angle adjustment device, which is used to adjust the orientation of the second solar power generation device 6 so that the second solar power generation device 6 can fully utilize the solar energy.

[0026] A flushing device is provided on the support frame 4, and the flushing device is used to spray flushing water toward the first solar power generation device 5 and the second solar power generation device 6. The first solar power generation device 5 guides the flushing water to the first planting area 2, and the second solar power generation device 6 guides the flushing water to the second planting area 3. Since the first solar power generation device 5 and the second solar power generation device 6 are both arranged at an angle, after the flushing device sprays the flushing water, the flushing water can clean the surface of the first solar power generation device 5 and the second solar power generation device 6. The cleaned water can flow along the first solar power generation device 5 and the second solar power generation device 6, and finally flow into the first planting area 2 and the second planting area 3, thereby realizing the watering function of the plants.

[0027] The present invention uses a flushing device to spray flushing water to clean the first solar power generation device 5 and the second solar power generation device 6, eliminating the need for manual cleaning of the surfaces of the first solar power generation device 5 and the second solar power generation device 6. This prevents the accumulation of thick dust or other impurities on the surfaces of the first solar power generation device 5 and the second solar power generation device 6 due to long-term use, thereby affecting their working efficiency and ensuring the normal operation of the first solar power generation device 5 and the second solar power generation device 6. In addition, the flushing water can be used as a source of irrigation water for the plants in the first planting area 2 and the second planting area 3, achieving a green and environmentally friendly effect. The present invention has a simple structure, is flexible and convenient to use, and is highly practical, and can meet the green, energy-saving and environmentally friendly use needs of buildings in the existing market.

[0028] Example 2 This embodiment is optimized based on embodiment 1. Figure 1 As shown, specifically, the first angle adjustment device includes a first lifting mechanism 7. The fixed end of the first lifting mechanism 7 is rotatably mounted on the support frame 4. The movable end of the first lifting mechanism 7 is rotatably connected to the first solar power generation device 5. A first hinge 8 is provided between the end of the first solar power generation device 5 away from the first lifting mechanism 7 and the support frame 4. The first lifting mechanism 7 is used to drive one end of the first solar power generation device 5 to move upward and downward, thereby adjusting the light-receiving surface of the first solar power generation device 5 and thereby improving the utilization rate of solar energy.

[0029] like Figure 2As shown, the first solar power generation device 5 includes a first solar panel 9, which is electrically connected to a first charge controller 10, which is electrically connected to a battery 11. The battery 11 is electrically connected to an electrical device 13 of the main body of the house 1 through an inverter 12. Preferably, the first solar panel 9 is provided with a first photosensitive element, which is electrically connected to a control center, which is electrically connected to a first lifting mechanism 7. The first lifting mechanism 7 includes a first electric push rod, which is electrically connected to the control center. The control center controls the first electric push rod based on the detection information of the first photosensitive element, so that one end of the first solar panel 9 is raised and lowered, thereby increasing the light-receiving surface of the first solar panel 9. The electrical energy generated by the first solar panel 9 is transmitted to the battery 11 for storage, and is then used to power the electrical device 13 through the inverter 12.

[0030] Example 3 This embodiment is optimized based on embodiment 2. Figure 1 As shown, specifically, the second angle adjustment device includes a second lifting mechanism 14. The fixed end of the second lifting mechanism 14 is rotatably mounted on the support frame 4. The movable end of the second lifting mechanism 14 is rotatably connected to the second solar power generation device 6. A second hinge 15 is provided between the end of the second solar power generation device 6 away from the second lifting mechanism 14 and the support frame 4. The second lifting mechanism 14 is used to drive one end of the second solar power generation device 6 to move upward and downward, thereby adjusting the light-receiving surface of the second solar power generation device 6 and thereby improving the utilization rate of solar energy.

[0031] like Figure 2As shown, the second solar power generation device 6 includes a second solar panel 16, which is electrically connected to a second charge controller 17, which is electrically connected to a battery 11. The second solar panel 16 is provided with a second photosensitive element, which is electrically connected to a control center, which is electrically connected to a second lifting mechanism 14. The second lifting mechanism 14 includes a second electric push rod, which is electrically connected to the control center. Based on the detection information from the second photosensitive element, the control center controls the second electric push rod to raise and lower one end of the second solar panel 16, thereby increasing the light-receiving surface of the second solar panel 16. The electricity generated by the second solar panel 16 is transferred to the battery 11 for storage and then supplied to the electrical device 13 via the inverter 12. The green, energy-saving and environmentally friendly housing structure of the present invention, by providing the first and second solar panels 9, 16, stores the generated electricity in the battery 11 for backup use and supplies power to the electrical device 13 via the inverter 12, achieving green, energy-saving and environmentally friendly results.

[0032] Example 4 This embodiment is optimized based on embodiment 1. Figure 1 Specifically, the flushing device includes a flushing head 18, a water pipe 19, a driven water pump 20, and a water tank 21. The flushing head 18 is mounted on top of the support frame 4 and communicates with the water pipe 19, which in turn communicates with the water tank 21 via the driven water pump 20. The water tank 21 is equipped with a filter mechanism located at the water inlet of the driven water pump 20. The water tank 21 stores a certain amount of water, which the driven water pump 20 delivers to the flushing head 18 via the water pipe 19. The flushing head 18 sprays flushing water to clean the surfaces of the first and second solar power generation devices 5 and 6.

[0033] like Figure 3 As shown, the flushing head 18 includes a mounting base 22 and a rotating head 23. The mounting base 22 is mounted on the support frame 4. The rotating head 23 is rotatably connected to the mounting base 22. The rotating head 23 is provided with a plurality of spray pipes 24. Preferably, the rotating head 23 is provided with three spray pipes 24 evenly distributed along its circumference, and each spray pipe 24 sprays in a different direction. Under the action of water pressure, the rotating head 23 rotates with the three spray pipes 24. The three spray pipes 24 spray at different angles, respectively, and can provide multi-angle spraying for long, medium, and short distances, thereby improving the cleaning effect of the first solar power generation device 5 and the second solar power generation device 6.

[0034] The first planting area 2 is connected to a first overflow pipe, which is in communication with the water storage tank 21. The second planting area 3 is connected to a second overflow pipe, which is in communication with the water storage tank 21. Excess water in the first planting area 2 can be returned to the water storage tank 21 through the first overflow pipe, and excess water in the second planting area 3 can be returned to the water storage tank 21 through the second overflow pipe, thereby achieving water recycling.

[0035] Example 5 like Figure 1-Figure 3 As shown, this embodiment provides a green, energy-saving and environmentally friendly house structure, including a house main body 1, a platform portion is provided on the top of the house main body 1, and a first planting area 2 and a second planting area 3 are respectively provided on both sides of the platform portion. According to specific needs, planting areas can be set on the surrounding sides of the platform portion, which include two first planting areas 2 and two second planting areas 3. Plants can be planted in the first planting area 2 and the second planting area 3.

[0036] A support frame 4 is provided in the middle of the platform. A first solar power generation device 5 and a second solar power generation device 6 are angled and symmetrically arranged on either side of the support frame 4. Both the first and second solar power generation devices 5 and 6 are used to collect and utilize solar energy. The first solar power generation device 5 is equipped with a first angle adjustment device, which is used to adjust the orientation of the first solar power generation device 5 so that the first solar power generation device 5 can fully utilize the solar energy. The second solar power generation device 6 is equipped with a second angle adjustment device, which is used to adjust the orientation of the second solar power generation device 6 so that the second solar power generation device 6 can fully utilize the solar energy.

[0037] A flushing device is provided on the support frame 4, and the flushing device is used to spray flushing water toward the first solar power generation device 5 and the second solar power generation device 6. The first solar power generation device 5 guides the flushing water to the first planting area 2, and the second solar power generation device 6 guides the flushing water to the second planting area 3. Since the first solar power generation device 5 and the second solar power generation device 6 are both arranged at an angle, after the flushing device sprays the flushing water, the flushing water can clean the surface of the first solar power generation device 5 and the second solar power generation device 6. The cleaned water can flow along the first solar power generation device 5 and the second solar power generation device 6, and finally flow into the first planting area 2 and the second planting area 3, thereby realizing the watering function of the plants.

[0038] The present invention uses a flushing device to spray flushing water to clean the first solar power generation device 5 and the second solar power generation device 6, eliminating the need for manual cleaning of the surfaces of the first solar power generation device 5 and the second solar power generation device 6. This prevents the accumulation of thick dust or other impurities on the surfaces of the first solar power generation device 5 and the second solar power generation device 6 due to long-term use, thereby affecting their working efficiency and ensuring the normal operation of the first solar power generation device 5 and the second solar power generation device 6. In addition, the flushing water can be used as a source of irrigation water for the plants in the first planting area 2 and the second planting area 3, achieving a green and environmentally friendly effect. The present invention has a simple structure, is flexible and convenient to use, and is highly practical, and can meet the green, energy-saving and environmentally friendly use needs of buildings in the existing market.

[0039] In this embodiment, the first angle adjustment device includes a first lifting mechanism 7. The fixed end of the first lifting mechanism 7 is rotatably mounted on the support frame 4. The movable end of the first lifting mechanism 7 is rotatably connected to the first solar power generation device 5. A first hinge 8 is provided between the end of the first solar power generation device 5 remote from the first lifting mechanism 7 and the support frame 4. The first lifting mechanism 7 is used to drive one end of the first solar power generation device 5 to move upward and downward, thereby adjusting the light-receiving surface of the first solar power generation device 5 and thereby improving the utilization rate of solar energy.

[0040] The first solar power generation device 5 includes a first solar panel 9, which is electrically connected to a first charging controller 10, which is electrically connected to a battery 11. The battery 11 is electrically connected to an electrical device 13 of the main body of the house 1 via an inverter 12. Preferably, a first photosensitive element is provided on the first solar panel 9, which is electrically connected to a control center, which is electrically connected to a first lifting mechanism 7. The first lifting mechanism 7 includes a first electric push rod, which is electrically connected to the control center. The control center controls the first electric push rod based on the detection information of the first photosensitive element, so that one end of the first solar panel 9 is raised and lowered, thereby increasing the light-receiving surface of the first solar panel 9. The electrical energy generated by the first solar panel 9 is transmitted to the battery 11 for storage, and is then used to power the electrical device 13 via the inverter 12.

[0041] In this embodiment, the second angle adjustment device includes a second lifting mechanism 14. The fixed end of the second lifting mechanism 14 is rotatably mounted on the support frame 4. The movable end of the second lifting mechanism 14 is rotatably connected to the second solar power generation device 6. A second hinge 15 is provided between the end of the second solar power generation device 6 remote from the second lifting mechanism 14 and the support frame 4. The second lifting mechanism 14 is used to drive one end of the second solar power generation device 6 to move upward and downward, thereby adjusting the light-receiving surface of the second solar power generation device 6 and thereby improving the utilization rate of solar energy.

[0042] The second solar power generation device 6 includes a second solar panel 16, which is electrically connected to a second charge controller 17, which is in turn electrically connected to the battery 11. The second solar panel 16 is provided with a second photosensitive element, which is electrically connected to a control center, which is in turn electrically connected to a second lifting mechanism 14. The second lifting mechanism 14 includes a second electric push rod, which is electrically connected to the control center. Based on the detection information from the second photosensitive element, the control center controls the second electric push rod to raise and lower one end of the second solar panel 16, thereby increasing the light-receiving surface area of the second solar panel 16. The electrical energy generated by the second solar panel 16 is transferred to the battery 11 for storage and then supplied to the electrical devices 13 via the inverter 12. The green, energy-saving and environmentally friendly housing structure of the present invention, by providing the first and second solar panels 9, 16, stores the generated electrical energy in the battery 11 for backup use and supplies power to the electrical devices 13 via the inverter 12, achieving green, energy-saving and environmentally friendly results.

[0043] In this embodiment, the flushing device includes a flushing head 18, a water pipe 19, a driven water pump 20, and a water tank 21. The flushing head 18 is mounted on top of the support frame 4 and communicates with the water pipe 19, which in turn communicates with the water tank 21 via the driven water pump 20. The water tank 21 is equipped with a filter mechanism located at the water inlet of the driven water pump 20. The water tank 21 stores a certain amount of water, which the driven water pump 20 delivers to the flushing head 18 via the water pipe 19. The flushing head 18 sprays flushing water to clean the surfaces of the first and second solar power generation devices 5 and 6.

[0044] The flushing head 18 includes a mounting base 22 and a rotating head 23. The mounting base 22 is mounted on the support frame 4. The rotating head 23 is rotatably connected to the mounting base 22. The rotating head 23 is provided with a plurality of spray pipes 24. Preferably, the rotating head 23 is provided with three spray pipes 24 evenly distributed along its circumference, each spraying in a different direction. Under the action of water pressure, the rotating head 23 rotates with the three spray pipes 24. The three spray pipes 24 spray at different angles, enabling multi-angle spraying for long, medium, and short distances, thereby improving the cleaning effect of the first solar power generation device 5 and the second solar power generation device 6.

[0045] The first planting area 2 is connected to a first overflow pipe, which is in communication with the water storage tank 21. The second planting area 3 is connected to a second overflow pipe, which is in communication with the water storage tank 21. Excess water in the first planting area 2 can be returned to the water storage tank 21 through the first overflow pipe, and excess water in the second planting area 3 can be returned to the water storage tank 21 through the second overflow pipe, thereby achieving water recycling.

[0046] In the description of the present invention, the terms "install", "connect", "connect", "fix" and the like should be understood in a broad sense, and may be fixedly connected, detachably connected, or integrated; may be mechanically connected or electrically connected; may be directly connected or indirectly connected through an intermediate medium; may be internal connectivity between two elements or an interaction relationship between two elements. Those skilled in the art can understand the specific meanings of the above terms in the present invention. In addition, the specific features, structures, etc. described in the embodiments are included in at least one embodiment. Under the condition that there is no contradiction, those skilled in the art may combine the features of different embodiments. The scope of protection of the present invention is not limited to the above-mentioned specific embodiments. According to the basic technical concept of the present invention, the embodiments that can be associated with by ordinary technicians in this field without creative work all fall within the scope of protection of the present invention.

Claims

1. A green energy-saving and environmentally friendly house structure, comprising a house main body (1), wherein a platform portion is provided on the top of the house main body (1), characterized in that: A first planting area (2) and a second planting area (3) are respectively provided on both sides of the platform portion, a support frame (4) is provided in the middle of the platform portion, a first solar power generation device (5) and a second solar power generation device (6) are respectively provided at an angle on both sides of the support frame (4), the first solar power generation device (5) is provided with a first angle adjustment device, and the second solar power generation device (6) is provided with a second angle adjustment device; a flushing device is provided on the support frame (4), and the flushing device is used to spray flushing water to the first solar power generation device (5) and the second solar power generation device (6), the first solar power generation device (5) guides the flushing water to the first planting area (2), and the second solar power generation device (6) guides the flushing water to the second planting area (3).

2. The green energy-saving and environmentally friendly house structure according to claim 1 is characterized in that: The first angle adjustment device comprises a first lifting mechanism (7), a fixed end of the first lifting mechanism (7) being rotatably mounted on a support frame (4), a movable end of the first lifting mechanism (7) being rotatably connected to a first solar power generation device (5), and a first hinge (8) being provided between an end of the first solar power generation device (5) away from the first lifting mechanism (7) and the support frame (4).

3. The green energy-saving and environmentally friendly house structure according to claim 2 is characterized in that: The first solar power generation device (5) comprises a first solar panel (9), the first solar panel (9) is electrically connected to a first charge controller (10), the first charge controller (10) is electrically connected to a storage battery (11), and the storage battery (11) is electrically connected to an electrical device (13) of the building body (1) via an inverter (12).

4. The green energy-saving and environmentally friendly house structure according to claim 3 is characterized in that: The first solar cell panel (9) is provided with a first photosensitive element, the first photosensitive element is electrically connected to a control center, and the control center is electrically connected to a first lifting mechanism (7); the first lifting mechanism (7) includes a first electric push rod, and the first electric push rod is electrically connected to the control center.

5. The green energy-saving and environmentally friendly house structure according to claim 4 is characterized in that: The second angle adjustment device comprises a second lifting mechanism (14), a fixed end of the second lifting mechanism (14) being rotatably mounted on the support frame (4), a movable end of the second lifting mechanism (14) being rotatably connected to the second solar power generation device (6), and a second hinge (15) being provided between an end of the second solar power generation device (6) away from the second lifting mechanism (14) and the support frame (4).

6. The green energy-saving and environmentally friendly house structure according to claim 5 is characterized in that: The second solar power generation device (6) includes a second solar panel (16), the second solar panel (16) is electrically connected to a second charge controller (17), and the second charge controller (17) is electrically connected to the battery (11); a second photosensitive element is provided on the second solar panel (16), the second photosensitive element is electrically connected to a control center, and the control center is electrically connected to a second lifting mechanism (14); the second lifting mechanism (14) includes a second electric push rod, and the second electric push rod is electrically connected to the control center.

7. The green energy-saving and environmentally friendly house structure according to claim 1 is characterized in that: The flushing device comprises a flushing head (18), a water delivery pipe (19), a driving water pump (20) and a water storage tank (21); the flushing head (18) is mounted on the top of the support frame (4); the flushing head (18) is connected to the water delivery pipe (19); and the water delivery pipe (19) is connected to the water storage tank (21) via the driving water pump (20).

8. The green energy-saving and environmentally friendly house structure according to claim 7 is characterized in that: The flushing head (18) comprises a mounting seat (22) and a rotating head (23); the mounting seat (22) is mounted on a support frame (4); the rotating head (23) is rotatably connected to the mounting seat (22); and a plurality of spray pipes (24) are provided on the rotating head (23).

9. The green energy-saving and environmentally friendly house structure according to claim 8, characterized in that: The rotating head (23) is evenly provided with three spray pipes (24) along its circumference, and the spray directions of the respective spray pipes (24) are different.

10. The green energy-saving and environmentally friendly house structure according to claim 8, characterized in that: A filtering mechanism is provided in the water storage tank (21), and the filtering mechanism is arranged at the water inlet end of the driving water pump (20); the first planting area (2) is connected to a first overflow pipe, and the first overflow pipe is in communication with the water storage tank (21); the second planting area (3) is connected to a second overflow pipe, and the second overflow pipe is in communication with the water storage tank (21).

Citation Information

Patent Citations

  • Environment-friendly energy-saving building

    CN214834173U