Green building curtain wall and installation method thereof

The driving mechanism controls the tray rotation speed according to time and light intensity. Combined with the water adding component and cooling mechanism, the problem of uneven lighting for plants on the green curtain wall is solved, the plant growth effect and curtain wall stability are improved, and energy is saved.

CN120660554APending Publication Date: 2025-09-19BUCG THE EIGHTH CONSTR DEV
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Patent Information

Application Number
CN202510916148.8
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-07-03
Publication Date
2025-09-19

AI Technical Summary

Technical Problem

The green plants on the green curtain wall grow unevenly due to uneven lighting, which reduces the stability of the curtain wall and the growth effect of the plants. The existing technology of driving the rotation of the tray cannot adapt to the changes in lighting, increasing the risk of structural damage.

Method used

A driving mechanism is used to control the tray rotation speed according to time and light intensity. Combined with a water adding component and a cooling mechanism, it ensures uniformity and stability of light for potted plants and reduces the risk of structural damage.

Benefits of technology

The uniformity of potted plant lighting and the stability of the curtain wall are achieved, which improves the growth effect of plants and the service life of the curtain wall and saves energy.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to a green building curtain wall and a mounting method thereof, and relates to the technical field of green curtain walls, the green building curtain wall comprises a wall body and a planting device, the planting device comprises a plurality of first carriers in a horizontal state, and each first carrier is rotatably provided with a plurality of first carriers; the second carrier is connected with the plurality of first carriers; the driving mechanism controls and drives the trays to rotate or stop according to the time and the illumination intensity; and the water adding assembly is used for detecting moisture in the potted plants, adding water to the potted plants at proper time and rotating the potted plants during water adding. The driving mechanism is controlled through time and illumination intensity, so that rotation of the tray changes along with change of the illumination intensity, and the tray stops rotating when illumination is finished, so that the risk that multiple structures of the driving mechanism and the tray are damaged can be reduced while uniform illumination of potted plants is met; and the growth effect of green plants and the stability of the curtain wall are improved.
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Description

Technical Field

[0001] The present application relates to the technical field of green curtain walls, and in particular to a green building curtain wall and an installation method thereof. Background Art

[0002] At present, green curtain wall refers to an ecological curtain wall covered with green plants. It has developed with the development of building ecology. According to the use function or use requirements of the building, the building that can change the building ecology and color is called an ecological building.

[0003] The green plants planted on the green curtain wall always receive light from the same direction, and the plants grow towards the sun, which will easily cause the green plants on the green curtain wall to grow vigorously on one side and sparsely on the other side, resulting in one side of the planting pot being heavier and the other side being lighter, and the center of gravity being shifted, causing the green curtain wall to be unevenly stressed and reducing the stability of the curtain wall.

[0004] In order to solve the above technical problems, in the prior art, reference is made to an invention patent with application publication number CN111894181A, which discloses a green building curtain wall, including a wall panel, a first cover arranged vertically is fixed on the side wall of the wall panel, a plurality of second covers are fixed on the side wall of the first cover at even intervals along the vertical direction, a plurality of trays for placing potted plants are rotatably arranged on the upper surface of the second cover, a connecting piece for driving the tray to rotate is provided on the wall panel, and a water adding piece for watering the potted plants is provided between the wall panel and the tray, thereby enhancing the stability of the wall panel and improving the service life of the wall panel.

[0005] The connector drives the trays and pots to rotate at a certain speed, but the daily light intensity changes with time. The rotation speed of the green plants cannot adapt to the changes in light intensity, which reduces the uniformity of light exposure to the green plants. Moreover, after the light disappears at night, the trays and pots continue to rotate, causing multiple structures to be easily damaged during the rotation process. This will further reduce the uniformity of light exposure to the green plants, reduce the growth effect of the plants, and make the green curtain wall unevenly stressed, reducing the stability of the curtain wall. Summary of the Invention

[0006] In order to improve the growth effect of green plants and the stability of curtain walls, the present application provides a green building curtain wall and an installation method thereof.

[0007] In the first aspect, the present application provides a green building curtain wall, which adopts the following technical solutions: A green building curtain wall comprises a wall body and a planting device disposed on the wall body and used for placing potted plants, the planting device comprising: A plurality of first carriers are arranged on the wall in a horizontal state and vertically spaced apart, and a plurality of trays for placing potted plants are rotatably mounted on each of the first carriers; a second carrier, disposed on the wall and connected to the plurality of first carriers; a driving mechanism disposed within the first carrier and the second carrier and configured to control the rotation or stop of the plurality of trays according to time and light intensity and powered by electrical energy; when light is applied, the rotation speed of the trays gradually increases as the light increases or decreases as the light decreases, and the trays stop rotating when the light disappears; The water adding component detects the moisture in the potted plant and adds water to the potted plant at the appropriate time and makes the potted plant rotate when adding water.

[0008] By adopting the above technical solution, the driving mechanism is controlled according to time and light intensity. During the daytime period, the trays are driven to rotate by the driving mechanism according to the light, while in other time periods, the trays are driven to rotate by the driving mechanism according to time. In the morning, the driving mechanism is controlled according to time to first drive multiple trays to rotate. At this time, the tray rotation speed is low, and then the multiple tray rotation speeds are controlled according to the light intensity. As the light intensity increases, the tray rotation speed increases. The light intensity reaches a peak and then decreases, and the tray rotation speed also slows down. That is, at night, the tray rotation speed slows down to the minimum speed, and then the tray is controlled to stop rotating according to time.

[0009] Therefore, while ensuring uniform lighting for the potted plants, it also reduces the risk of damage to the drive mechanism and multiple structures of the tray due to rapid rotation of the potted plants. When the light disappears, the drive mechanism stops driving the multiple trays to rotate, reducing the risk of damage to the drive mechanism and multiple structures of the tray due to continuous rotation of the potted plants, thereby improving the growth effect of green plants and the stability of the curtain wall.

[0010] The water adding component detects that the potted plants need to be watered. At the appropriate time for the plants, the water adding component adds water to the potted plants. At the same time, the potted plants are in a rotating state when adding water. The rotation of the potted plants can make the watering more even and allow the water to penetrate into the soil faster. Adding water at the right time can better adapt to the growth of the plants, further reducing the probability of uneven plant production and improving the growth effect of green plants.

[0011] At the same time, compared with the prior art in which the tray is driven to rotate by air and blades, the air flow is unstable. When the air flow is fast, the tray rotates faster, and vice versa, the tray speed slows down. If the air flow cannot drive the tray to rotate, the tray cannot be driven to rotate, thereby increasing the risk of uneven lighting for potted plants. In this application, electric energy is used to provide energy to the driving mechanism, making the tray rotation more stable and making it easier to control the tray rotation, thereby improving the growth effect of green plants and the stability of the curtain wall. When the driving mechanism stops driving the tray to rotate, it can improve the growth effect of green plants and the stability of the curtain wall while reducing the energy consumption caused during operation and saving energy.

[0012] Optionally, the driving mechanism includes: A driving member connected to the plurality of trays via a connecting assembly and used to drive the plurality of trays to rotate simultaneously and provided with power by electrical energy; The time controller and the light intensity detection module are both electrically connected to the driving member. The time controller stops the driving member from driving the tray to rotate at night, and the light intensity detection module controls the driving member to drive the tray to rotate during the day and makes the tray rotation speed increase as the light intensity increases.

[0013] By adopting the above technical solution, the time is set to two time periods. During one time period, the time controller drives the multiple trays to rotate through the driving mechanism. During the other time period, the light intensity detection module drives the multiple trays to rotate through the driving mechanism. At the beginning of a day, the time controller first controls the driving mechanism. When the specified time is reached, generally at dawn in the morning, the time controller drives the multiple trays to rotate through the driving member, and the rotation speed is relatively low. Then, after a period of rotation, the light intensity control starts to control the rotation speed of the multiple trays through the driving member. The rotation speed of the trays changes with the intensity of the light. After reaching the specified time, generally at night, the time controller controls the multiple trays to stop rotating through the driving member, and then repeats the process the next day, thereby controlling the rotation of the multiple trays through time and light intensity.

[0014] Optionally, the second carrier is in a vertical state and is internally divided into a protective cavity and a receiving cavity arranged vertically by a partition plate. The driving member and the time controller are located in the protective cavity for protection. The connecting assembly is located in the receiving cavity and passes upward through the partition plate to connect with the driving member, and the connecting assembly is extended through the second carrier into the first carrier to connect with the plurality of trays. The second carrier is provided with a cooling mechanism for cooling the second carrier, and the cooling mechanism includes: A mounting cover is provided on a side wall of the second carrier and is arranged corresponding to the protective cavity, wherein the mounting cover is provided with a ventilation hole that is in communication with the second carrier and allows air to pass through; A guide cover is provided on the mounting cover and is in an outwardly expanding shape; An installation shaft is rotatably disposed on the second carrier and extends into the installation cover; The fan blades are arranged on the mounting shaft and rotate under the flow of air and are located in the mounting cover.

[0015] By adopting the above technical solution, a protective cavity and a accommodating cavity are formed at the upper and lower intervals of the second carrier, the driving member and the time controller are located in the protective cavity for protection, and the connecting component is located in the accommodating cavity. When connected, it passes upward through the partition plate to connect with the driving member, and at the same time passes through the second carrier to extend to the first carrier to connect with multiple trays. Therefore, the risk of external rainwater entering and causing damage to the driving member and the time controller is greatly reduced, the stability of the driving mechanism when driving multiple trays to rotate is improved, and the growth effect of green plants and the stability of the curtain wall are improved.

[0016] At the same time, since the driving part and the time controller are both electrical components, they are prone to heat up during operation, the protective cavity is not connected to the outside world, and the second carrier will be exposed to sunlight, which makes the second carrier more likely to heat up, causing the driving mechanism to be easily damaged or even spontaneously combust due to heat, reducing the stability of the driving mechanism during operation.

[0017] The air flows between the guide cover and the ventilation holes. The guide cover accelerates the air flow, causing the fan to rotate. The rotation of the fan further accelerates the air flow. At the same time, heat accumulates in the protective cavity, causing the temperature of the second carrier to rise rapidly and be higher than the temperature around the second cover body. The temperature difference will accelerate the flow of air, causing the air to flow faster between the ventilation holes and the guide cover, and accelerating the heat dissipation on the second carrier located in the protective cavity, thereby improving the stability of the driving mechanism during operation, and further improving the growth effect of green plants and the stability of the curtain wall.

[0018] Optionally, the cooling mechanism further includes an energy absorbing component, and the energy absorbing component includes: A light absorbing member is provided on the outer side walls of the first carrier and the second carrier and is used to absorb light energy and convert it into electrical energy; The energy absorbing member is arranged in the protective chamber and electrically connected to the light absorbing member. The energy absorbing member is used for storing electrical energy and for providing electrical energy to the driving member.

[0019] By adopting the above technical solution, the light-absorbing component can absorb light and convert it into electrical energy, and then the electrical energy is transmitted to the energy-absorbing component for storage. The stored electrical energy can be provided to the driving component, which is energy-saving and environmentally friendly. Moreover, the driving component only needs to drive multiple trays to rotate during the day, which greatly reduces the energy consumption of the driving component, and even makes the electrical energy stored in the energy-absorbing component fully meet the driving requirements of the driving component. The driving component does not require external wires, making the curtain wall structure simpler and more stable, improving the growth effect of green plants and the stability of the curtain wall, and being green and environmentally friendly. At the same time, the light-absorbing component absorbs a large amount of light, reducing the probability of the temperature in the protective cavity rising due to light, thereby further improving the growth effect of green plants and the stability of the curtain wall.

[0020] The energy absorbing part is located in the protective cavity for protection, which reduces the damage to it by external water, and is cooled by the cooperation of the fan blades, which reduces the risk of damage to the energy absorbing part due to excessive temperature.

[0021] Optionally, the mounting shaft extends into the protective cavity, and the cooling mechanism further includes an energy storage component, which includes: a conversion member, disposed in the protective cavity and connected to the mounting shaft and used for converting kinetic energy of the mounting shaft into electrical energy; The energy storage component is arranged in the protective cavity and is electrically connected to the conversion component. The energy storage component is used to store electrical energy and to provide electrical energy to the driving component.

[0022] By adopting the above technical solution, the installation shaft rotates to drive the conversion member to rotate, and the conversion member rotates to convert kinetic energy into electrical energy, which is transmitted to the energy storage member for storage. The energy storage member can provide electrical energy to the driving member, so that the second carrier can be cooled while also providing electrical energy to the driving member, which is energy-saving and environmentally friendly.

[0023] The conversion component and energy storage component are both located in a protective cavity for protection, reducing damage to them from external water, and are cooled by the cooperation of fan blades, reducing the risk of damage to the conversion component and energy storage component due to overheating.

[0024] Optionally, the water adding assembly is provided in plurality and is arranged corresponding to the plurality of first carriers, and the water adding assembly includes: A spray pipe is provided on the wall and extends above the potted plants and is used to add water to the potted plants; each of the trays is vertically slidably mounted on a placement tray for placing potted plants via an elastic component, and can move vertically under the action of the elastic component when the moisture content of the potted plants changes; A control member, provided on the spray pipe and used to control the opening and closing of the spray pipe; The detection component is used to detect the status of the placement tray and is electrically connected to the control component. When the moisture content of the placement tray decreases and the placement tray moves upward under the action of the elastic component, the detection component senses the position of the placement tray and that the placement tray is in a rotating state and it is the appropriate time to add water to the potted plants. The detection component opens the spray pipe through the control component to add water to the potted plants; after the potted plants are watered, the placement tray is driven to move downward. When the detection component no longer detects the placement tray, the spray pipe is closed through the control component.

[0025] By adopting the above technical solution, the potted plant and the placement plate are pressed against the elastic component under the action of gravity for positioning. As time goes by, the potted plant gradually loses water and becomes lighter. The potted plant and the placement plate move upward under the action of the elastic component. The placement plate moves upward to block the detection component. The detection component detects the position of the placement plate, which is condition one. The detection component detects that the placement plate is in a rotating state, which is condition two. At the same time, the time has arrived for the plant to adapt to watering, which is condition three. If the above three conditions are all met, the detection component opens the spray pipe through the control component, and the spray pipe adds water to the potted plant. As water is added, the potted plant becomes heavier, the placement plate moves downward, and the detection component cannot detect the placement plate. The detection component closes the spray pipe through the control component, thereby realizing the detection of moisture in the potted plant and automatic watering.

[0026] Optionally, a water storage mechanism is provided on the wall, and the water storage mechanism includes: a support member, which is arranged on the wall and has a storage chamber formed therein; A plurality of collecting boxes are respectively arranged on the upper surfaces of the plurality of first carriers, and the plurality of trays are rotatably mounted on the collecting boxes and the first carriers; Multiple water retention plates are vertically spaced apart within the storage chamber and divide the storage chamber into multiple independent water storage chambers. The multiple water storage chambers and multiple collection boxes are correspondingly provided. A spray pipe and a collection box located on the same first carrier are respectively connected to two upper and lower adjacent water storage chambers, so that water in the water storage chambers is sprayed into the potted plants through the spray pipe under the action of gravity. The collection box is provided with a water pipe connected to the corresponding water storage chamber, and the water pipe is provided with a water delivery check valve that only supplies water into the water storage chamber. The connecting component connects the water storage chambers at the lowest position and the water storage chamber at the highest position and enables the water in the water storage chamber at the lowest position to flow into the water storage chamber at the highest position.

[0027] By adopting the above technical solution, when it rains, the collection boxes located on the multiple first carriers can catch rainwater. The multiple collection boxes correspond to the multiple water storage chambers. Under the action of gravity, the rainwater flows into the water storage chamber below each collection box through the water pipe for storage. The multiple water storage chambers correspond to the spray pipes located on the multiple first carriers. The liquid level in the water storage chamber is above the corresponding spray pipe, so that the water in the water storage chamber can be added to the potted plants through the spray pipe under the action of gravity.

[0028] At the same time, the collection box collects rainwater and guides it into the water storage chamber, and the tray is rotatably connected to the collection box and the first carrier. Therefore, compared with the rotatable connection between the tray and the first carrier, the stability of the tray during rotation can be improved through multiple rotatable connections, and the collection box can prevent rainwater from penetrating into the first carrier through the rotatable connection between the tray and the first carrier, thereby reducing the risk of rainwater damaging the connection components, improving the stability of the driving mechanism during transportation, and improving the plant growth effect and the stability of the curtain wall.

[0029] Since the collection box and the sprinkler pipe are connected to two adjacent water storage chambers arranged above and below, and the flow of water requires a height difference, the water storage chamber at the lowest point collects rainwater but is not connected to the sprinkler pipe, while the water storage chamber at the highest point is connected to the sprinkler pipe but cannot collect rainwater. Therefore, the rainwater in the water storage chamber at the lowest point is transported to the water storage chamber at the highest point through the connecting component, so that all the sprinkler pipes can be added with water, which improves the plant growth effect and the stability of the curtain wall. It can collect rainwater and then add water to the potted plants, so that the curtain wall structure does not need an external tap water pipe, which improves the convenience and stability of the curtain wall installation.

[0030] Optionally, the connectivity component includes: A counterweight plate is vertically slidably installed in the lowest water storage chamber and divides the water storage chamber into a first chamber and a second chamber that are arranged up and down and are independent of each other, and the water pipe is connected to the second chamber; The connecting pipe is connected with the second chamber and the water storage chamber at the highest point and is provided with a connecting one-way valve for only allowing water in the second chamber to enter. The diameter of the connecting pipe is smaller than that of the water delivery pipe.

[0031] By adopting the above technical solution, when it rains, rainwater is input into the second chamber through the input pipe. The impact force of the rainwater is relatively large, and the diameter of the connecting pipe is smaller than that of the input pipe, so that the rainwater in the second chamber gradually increases and gathers, pushing the counterweight plate upward, and part of the rainwater enters the connecting pipe. Due to the setting of the connecting one-way valve, the rainwater in the connecting pipe flows into the water storage chamber at the highest point under the action of water thrust; when the rainwater becomes smaller, the counterweight plate can move downward, further pushing the water in the second chamber into the connecting pipe, so that the water in the water storage chamber at the lowest point is input into the water storage chamber at the highest point, thereby adding water to all potted plants.

[0032] Optionally, the connection component includes: a first driving rod, rotatably disposed in the second carrier and connected to the driving member; A plurality of driving rods 2 are rotatably disposed in the plurality of first carriers and are each spaced apart with a plurality of gears 1; A plurality of gears 2 are arranged on the driving rod 1 at intervals; a plurality of gears three, disposed on the plurality of driving rods two and meshing with the plurality of gears two; The plurality of gears four are respectively arranged on the plurality of trays and meshed with the plurality of gears one.

[0033] By adopting the above technical solution, the driving member drives the driving rod 1 to rotate, the driving rod 1 rotates through gear 2 and gear 3 to drive multiple driving rods 2 to rotate, and the driving rod 2 rotates through multiple gears 1 and multiple gears 4 to drive multiple trays to rotate.

[0034] In a second aspect, the present application provides an installation method that adopts the following technical solution: An installation method comprises the following steps: Installing the first carrier and the second carrier: fixing the first carrier and the second carrier on the wall; Installing a cooling mechanism: installing the cooling mechanism on the first carrier to cool the first carrier; Install the water adding assembly: Fix the water adding assembly to the wall.

[0035] In summary, this application includes at least one of the following beneficial technical effects: 1. The drive mechanism is controlled by time and light intensity, so that the rotation of the tray changes with the intensity of the light, and the tray stops rotating when the light ends. This ensures uniform light exposure for potted plants while reducing the risk of damage to the drive mechanism and multiple structures of the tray, thereby improving the growth effect of green plants and the stability of the curtain wall.

[0036] 2. The water adding component automatically adds water to the potted plants. At the same time, the potted plants are in a rotating state when adding water. The rotation of the potted plants can make the water addition more uniform and allow the water to penetrate into the soil faster. Adding water at the right time can better adapt to the growth of plants, further reducing the probability of uneven plant production and improving the growth effect of green plants.

[0037] 3. By forming a protective cavity and a accommodating cavity at the upper and lower intervals of the second carrier, the driving member and the time controller are located in the protective cavity for protection, and the connecting component is located in the accommodating cavity. When connected, it passes upward through the partition plate to connect with the driving member, and at the same time passes through the second carrier to extend to the first carrier to connect with multiple trays. Therefore, the risk of external rainwater entering and causing damage to the driving member and the time controller is greatly reduced, and the stability of the driving mechanism when driving multiple trays to rotate is improved, thereby improving the growth effect of green plants and the stability of the curtain wall.

[0038] 4. The air flows between the guide cover and the ventilation hole, and the rotation of the fan further accelerates the flow of air, so that the heat on the second carrier located in the protective cavity is dissipated faster, thereby improving the stability of the driving mechanism during operation, and further improving the growth effect of green plants and the stability of the curtain wall. BRIEF DESCRIPTION OF THE DRAWINGS

[0039] Figure 1 It is a three-dimensional structural diagram of the green building curtain wall; Figure 2 This is a partial structural diagram of a green building curtain wall, mainly showing the planting device and cooling mechanism, and a cross-section of the side walls of one of the first and second carriers; Figure 3 This is a partial structural diagram of the green building curtain wall, mainly showing the elastic components and a cross-section of the tray side wall; Figure 4 yes Figure 2 A magnified schematic diagram of part B in the middle; Figure 5 yes Figure 1 A magnified schematic diagram of part A in the middle; Figure 6 This is a partial structural diagram of a green building curtain wall, mainly showing the water addition components and water storage mechanism, and a cross-section of the side wall of the support.

[0040] Reference numerals: 1. wall; 2. planting device; 21. first carrier; 22. second carrier; 23. partition plate; 24. protective cavity; 25. accommodating cavity; 26. rotating shaft; 27. tray; 28. placement plate; 3. elastic component; 31. column; 32. guide column; 33. spring; 34. guide groove; 4. driving mechanism; 41. driving member; 42. time controller; 5. connecting component; 51. driving rod 1; 52. driving rod 2; 53. gear 1; 54. gear 2; 55. gear 3; 56. gear 4; 6. water adding component; 61. spray pipe; 62. control member; 63. Detection part; 64. Connecting pipe; 7. Cooling mechanism; 71. Mounting cover; 72. Guide cover; 73. Mounting shaft; 74. Fan blade; 75. Ventilation hole; 76. Energy absorbing assembly; 762. Energy absorbing member; 77. Energy storage assembly; 78. Conversion member; 79. Energy storage member; 8. Water storage mechanism; 81. Support member; 82. Collection box; 821. Water pipe; 822. Water one-way valve; 83. Water storage plate; 85. Water storage chamber; 851. First chamber; 852. Second chamber; 9. Connecting assembly; 91. Counterweight plate; 92. Connecting pipe; 93. Connecting one-way valve; 94. Water flow part. DETAILED DESCRIPTION

[0041] The application is described in further detail below.

[0042] The embodiments of the present application disclose a green building curtain wall and an installation method thereof.

[0043] Reference Figure 1 and Figure 2The green building curtain wall includes a wall 1 and a planting device 2 arranged on the wall 1. The planting device 2 is used to place potted plants and drive the potted plants to rotate. At the same time, the rotation of the potted plants is controlled and the rotation speed of the potted plants is adjusted according to time and light intensity, so that the rotation speed of the tray 27 gradually increases as the light increases; when the light disappears, the tray 27 stops rotating.

[0044] The planting device 2 includes multiple first carriers 21, second carriers 22 and a driving mechanism 4. The multiple first carriers 21 are vertically spaced and horizontal. The first carriers 21 and the second carriers 22 are both fixedly mounted on the side wall of the wall 1, and the second carrier 22 is in a vertical state and is hollow together with the first carrier 21. The two ends of the second carrier 22 extend to the upper and lower sides of the multiple first carriers 21 respectively, and one end of the multiple first carriers 21 is fixedly mounted on the side wall of the second carrier 22; a horizontal partition plate 23 is fixedly mounted on the inner side wall of the second carrier 22, and the partition plate 23 is located above the multiple first carriers 21. The partition plate 23 divides the second carrier 22 into mutually independent protective chambers 24 and accommodating chambers 25, and the protective chamber 24 is located above the accommodating chamber 25.

[0045] Reference Figure 2 and Figure 3 On the surface of each first carrier 21, a plurality of rotating shafts 26 are installed at intervals and rotated along the length direction of the first carrier 21. The rotating shafts 26 are in a vertical state and the bottom ends extend into the first carrier 21. A tray 27 is coaxially fixedly installed on the top of each rotating shaft 26. A placement tray 28 is slidably installed on each tray 27 through an elastic component 3. A placement hole is formed on the top of the placement tray 28. The bottom end of the potted plant is placed in the placement hole and extends above the placement tray 28.

[0046] The elastic component 3 includes multiple columns 31, guide columns 32 and springs 33. Multiple columns 31 are fixedly mounted on the upper surface of the tray 27 and arranged vertically upward. Multiple columns 31 are arranged in a circular array around the axis of the tray 27; a guide groove 34 is coaxially opened on the upper surface of the tray 27; the guide column 32 is fixedly mounted on the lower surface of the placement plate 28, and the guide column 32 is vertically slidably mounted on the guide groove 34, the spring 33 is fixedly mounted on the bottom end of the guide column 32 and pressed against the bottom of the guide groove 34, the spring 33 makes the placement plate 28 maintain the upward trend; multiple guide grooves are spaced apart on the lower surface of the placement plate 28, and multiple columns 31 are vertically slidably mounted on the multiple guide grooves, so as to guide the movement of the placement plate 28 and make the placement plate 28, the tray 27 and the rotating shaft 26 rotate simultaneously.

[0047] Reference Figure 2 and Figure 4The driving mechanism 4 is arranged in the first carrier 21 and the second carrier 22, and controls the driving of the multiple trays 27 to rotate or stop according to time and light intensity and is powered by electrical energy; when light is irradiated, the rotation speed of the trays 27 gradually accelerates as the light becomes stronger, and conversely, the rotation speed of the trays 27 gradually slows down as the light becomes weaker; when the light disappears, the trays 27 stop rotating.

[0048] The driving mechanism 4 includes a driving member 41, a time controller 42 and a light intensity detection module. The driving member 41 is connected to the multiple trays 27 through the connecting component 5, and the driving member 41 is used to drive the multiple trays 27 to rotate simultaneously and provide power through electrical energy; the driving member 41 and the time controller 42 are both fixedly mounted on the side wall of the protective cavity 24, and the output shaft of the driving member 41 is set vertically downward. The connecting component 5 is located in the accommodating cavity 25 and is connected to the driving member 41 through the partition plate 23, and extends through the second carrier 22 into the first carrier 21 and is connected to the multiple trays 27.

[0049] The light intensity detection module is fixedly mounted on the top or side wall of the second carrier 22 and is used to detect the light intensity. A control box for controlling the start and stop of the driver 41 and the output shaft speed of the driver 41 is fixedly mounted in the accommodating cavity 25. The light intensity module transmits the detected light intensity data to the control box. At the same time, the time controller 42 is electrically connected to the control box, thereby controlling the driver 41 according to time and light intensity.

[0050] The connecting assembly 5 includes a drive rod 1 51, multiple drive rods 2 52, multiple gears 2 54, multiple gears 3 55, and multiple gears 4 56. The drive rod 1 51 is vertically rotatably installed on the lower surface of the partition plate 23, and the drive rod 1 51 passes through the partition plate 23 and extends into the protective cavity 24, and the top of the drive rod 1 51 is coaxially connected to the output shaft of the driving member 41; the multiple drive rods 2 52 are respectively arranged in a one-to-one correspondence with the multiple first carriers 21, the drive rod 2 52 is located in the accommodating cavity 25 and passes through the second carrier 22 along the axis of the first carrier 21 and extends into the first carrier 21, and the drive rod 2 52 is rotatably connected to the first carrier 21 and the second carrier 22.

[0051] Each driving rod 2 52 is keyed to a plurality of gears 1 53, and the plurality of gears 1 53 are spaced apart along the axis of the driving rod 2 52 and are arranged one-to-one with the plurality of rotating shafts 26. Gear 1 53, gear 2 54, gear 3 55 and gear 4 56 are all bevel gears; the plurality of gears 2 54 are keyed to the driving rod 1 51 at intervals and are arranged corresponding to the plurality of driving rods 2 52. The plurality of gears 3 55 are arranged corresponding to the plurality of driving rods 2 52 and are keyed to the driving rod 2 52. The gears 3 55 are meshed with the corresponding gears 2 54. The plurality of gears 4 56 are spaced apart and correspond one-to-one with the plurality of rotating shafts 26 located on the same first carrier 21. The gears 4 56 are meshed with the corresponding gears 1 53.

[0052] The driving member 41 is started to rotate the driving rod 1 51, and the rotation of the driving rod 1 51 drives the multiple driving rods 2 52 to rotate through the gear 2 54 and the gear 3 55. The rotation of the multiple driving rods 2 52 drives the rotating shaft 26 to rotate through the gear 1 53 and the gear 4 56, thereby realizing the rotation of the multiple trays 27, the multiple placement trays 28 and the potted plants located on the placement trays 28.

[0053] Taking one day as a cycle unit, the following actions are repeated: at the beginning of the day, generally at dawn, there is some sunlight at this time, but the light intensity is low. The time controller 42 drives the multiple trays 27 to rotate through the driver 41, and the rotation speed is the lowest. Then, after a period of rotation, the light intensity module starts to control the rotation speed of the multiple trays 27 and the potted plants through the driver 41. The rotation speed of the trays 27 and the potted plants changes with the intensity of the light. The greater the light intensity, the faster the rotation speed, that is, the rotation speed of the trays 27 gradually accelerates. Then, as the light intensity weakens, the rotation speed of the trays 27 slows down. Then, at a specified time, generally at night, when the light intensity is the lowest, almost no light is seen, the time controller 42 controls the multiple trays 27 to stop rotating through the driver 41. Then, the process is repeated the next day. In this way, the rotation and rotation speed of the multiple trays 27 and the potted plants are controlled by time and light intensity, so that the light of the potted plants is more uniform, and the risk of damage caused by long-term rotation of the drive mechanism 4 is reduced, and energy consumption is reduced, thereby improving the stability of the curtain wall.

[0054] The speed of the driver 41 is divided into different gears, and each gear corresponds to a range of light intensity. The specific speed and light intensity are designed according to actual needs, thereby reducing the risk of damage to the driver 41 due to frequent speed adjustments. The time controller 42 can be set to the specific time of day in the morning and evening as needed, making the control process more closely match the different time of day and night.

[0055] Reference Figure 1 、 Figure 2 and Figure 5The second carrier 22 is provided with a cooling mechanism 7 for cooling the second carrier 22. A plurality of cooling mechanisms 7 are vertically spaced apart. The cooling mechanism 7 includes a mounting cover 71, a guide cover 72, a mounting shaft 73, and fan blades 74. The mounting cover 71 is fixedly mounted on the side wall of the second carrier 22 facing away from the wall 1, and the mounting cover 71 is horizontal. The plurality of mounting covers 71 are respectively arranged corresponding to the protective cavity 24 and the accommodating cavity 25. The mounting cover 71 is provided with a plurality of ventilation holes 75 connected to the second carrier 22 at one end thereof close to the second carrier 22. The ventilation holes 75 allow air to pass through, allowing heat on the second carrier 22 to dissipate quickly. The guide cover 72 is coaxially fixedly mounted on the end of the mounting cover 71 facing away from the second carrier 22, and the guide cover 72 is outwardly expanded. The inner diameter of the end of the guide cover 72 close to the mounting cover 71 is the same as that of the mounting cover 71 and is smaller than the inner diameter of the end of the guide cover 72 away from the mounting cover 71.

[0056] The mounting shaft 73 is rotatably mounted on the side wall of the second carrier 22, and the mounting shaft 73 is coaxially arranged with the mounting cover 71 and extends into the mounting cover 71, one end of some mounting shafts 73 extends into the protective cavity 24, and one end of other mounting shafts 73 extends into the accommodating cavity 25; the fan blades 74 are fixedly mounted on the mounting shaft 73 and located in the mounting cover 71, and the air flow can drive the fan blades 74 and the mounting shaft 73 to rotate, and the rotation of the fan blades 74 can accelerate the flow of air, so that the second carrier 22 can dissipate heat faster, that is, the electrical components such as the driving member 41 and the time controller 42 located in the protective cavity 24 can dissipate heat faster and better, thereby improving the stability during operation.

[0057] Reference Figure 1 、 Figure 2 The cooling mechanism 7 also includes an energy absorbing component 76 and an energy storage component 77. The energy absorbing component 76 includes a light absorbing member and an energy absorbing member 762. The light absorbing member is fixedly mounted on the outer side walls of the first carrier 21 and the second carrier 22. The light absorbing member is a photovoltaic breathable film. The energy absorbing member 762 is fixedly mounted in the protective cavity 24. The energy absorbing member 762 is a battery and is electrically connected to the light absorbing member for storing the electrical energy converted by the light absorbing member. The energy absorbing member 762 is connected to the control box and is used to provide electrical energy to the driving member 41.

[0058] The light-absorbing element can absorb part of the heat from the light, and this part of the heat is mainly concentrated on the light-absorbing element, rather than being directly irradiated on the first carrier 21 and the second carrier 22. Through heat conduction in the power generation process, the heat conducted to the first carrier 21 and the second carrier 22 is more limited, thereby greatly reducing the risk of the temperature of the first carrier 21 and the second carrier 22 rising due to light, thereby improving the stability of the driving mechanism 4 during operation.

[0059] Reference Figure 1 、 Figure 2 and Figure 5The energy storage component 77 includes a conversion member 78 and an energy storage member 79. The conversion member 78 is fixedly installed in the protective cavity 24 and is connected to the mounting shaft 73. At the same time, multiple conversion members 78 can be provided and are respectively fixedly installed in the accommodating cavity 25, and multiple conversion members 78 are connected to multiple mounting shafts 73 corresponding to the accommodating cavity 25. After the mounting shaft 73 rotates, the conversion member 78 converts kinetic energy into electrical energy. The conversion member 78 can be a DC motor.

[0060] The energy storage component 79 is fixedly installed in the protective cavity 24, and the energy storage component 79 is a battery. The energy storage component 79 is connected to multiple conversion components 78 through wires, and is used to store the electrical energy converted by the conversion components 78. The energy storage component 79 can be connected to the energy absorption component 762 through wires and provide electrical energy to the driving component 41 at the same time, reducing the dependence of the driving component 41 on external electrical energy, and even enabling the curtain wall structure to be self-sufficient without wires and connected to an external power supply, making it more green and environmentally friendly.

[0061] Reference Figure 1 、 Figure 3 and Figure 4 The planting device 2 also includes a water adding component 6, which includes a spray pipe 61, a control component 62, and a detection component 63.

[0062] Reference Figure 1 、 Figure 3 and Figure 6 The spray pipe 61 is fixedly installed on the wall 1. A plurality of spray pipes 61 are provided corresponding to the potted plants on the plurality of placement trays 28. The spray pipe 61 extends above the potted plants and is used to add water to the potted plants. When adding water, the center of the spray pipe 61 is misaligned with the center of the potted plants, so that after the potted plants are rotated, the spray pipe 61 has a wider range of water addition. The plurality of spray pipes 61 corresponding to the potted plants on the same first carrier 21 are interconnected through a connecting pipe 64, and the connecting pipe 64 extends to the side away from the second carrier 22.

[0063] Reference Figure 1 、 Figure 3 and Figure 4 , both the control component 62 and the detection component 63 are provided in multiple and corresponding arrangements, and the multiple control components 62 are provided in correspondence with the multiple spray pipes 61, that is, each spray pipe 61 is provided with a control component 62, and is used to individually control the opening and closing of each spray pipe 61; the detection component 63 is fixedly mounted on the side wall of the wall 1, and the detection component 63 is electrically connected to the control component 62. The detection component 63 is used to detect the position of the placement plate 28 and whether it is rotated, and the detection component 63 is electrically connected to the time controller 42. The time controller 42 sets the time suitable for adding water to the potted plants. The watering time is a time range. The detection component 63 transmits the detection data to the control box that controls the opening and closing of the control component 62, so that the control component 62 controls the opening or closing of the spray pipe 61 according to the detection data.

[0064] When the potted plant loses water and becomes lighter, the placement plate 28 moves upward under the elastic force of the elastic component 3; when the detection component 63 detects the position of the placement plate 28 and the placement plate 28 is in a rotating state, and it is also the appropriate time to add water to the potted plant, the control component 62 opens the spray pipe 61 to add water to the potted plant. As the water content in the potted plant increases, the potted plant becomes heavier and drives the potted plant and the placement plate 28 to move downward. When the detection component 63 does not detect the position of the placement plate 28, the control component 62 closes the spray pipe 61.

[0065] Reference Figure 1 、 Figure 6 A water storage mechanism 8 is provided on the wall 1, and the water storage mechanism 8 includes a support member 81, multiple collection boxes 82, multiple water storage plates 83, and a connecting component 9. The support member 81 is fixedly installed on the side wall of the wall 1. The support member 81 is located on the side of the first carrier 21 away from the second carrier 22 and is in a vertical state. The top end of the support member 81 extends above all the spray pipes 61 and the bottom end extends below multiple first carriers 21; the support member 81 is hollow and has a storage chamber.

[0066] Reference Figure 1 、 Figure 2 、 Figure 6 , multiple collecting boxes 82 are arranged in a one-to-one correspondence with multiple first carriers 21, the collecting boxes 82 are fixedly mounted on the upper surface of the first carrier 21 and are used to collect rainwater, and multiple rotating shafts 26 pass through the collecting boxes 82 and the first carrier 21 in sequence and extend into the first carrier 21, the rotating shafts 26 are rotatably connected to the collecting boxes 82 and the first carrier 21, the collecting box 82 is in an inclined state and the height of the end close to the second carrier 22 is higher than the height of the end close to the support member 81, so that the rainwater moves toward the side of the support member 81 after gathering.

[0067] Multiple water storage plates 83 are fixedly installed at vertical intervals in the storage chamber. The water storage plates 83 are in a horizontal state and divide the storage chamber into multiple independent water storage chambers 85. The connecting pipe 64 and the collecting box 82 located at the same first carrier 21 are respectively connected to the two upper and lower adjacent water storage chambers 85. The water storage chamber 85 connected to the connecting pipe 64 is located above the multiple spray pipes 61, so that the water in the water storage chamber 85 is sprayed out through the spray pipe 61 under the action of gravity.

[0068] A water supply pipe 821 connected to the water storage chamber 85 is fixedly installed on the collection box 82. A water supply one-way valve 822 that only supplies water into the water storage chamber 85 is fixedly installed on the water supply pipe 821. Water enters the water storage chamber 85 under the action of gravity for storage. As the water in the water storage chamber 85 increases, when the water level in the water storage chamber 85 is higher than the collection box 82, the water supply one-way valve 822 can prevent water from flowing back into the collection box 82.

[0069] The connecting assembly 9 connects the water storage chambers 85 at the lowest and highest points and allows the water in the lowest water storage chamber 85 to flow into the highest water storage chamber 85. The lowest water storage chamber 85 is not connected to the connecting pipe 64, and the highest water storage chamber 85 is not connected to the water delivery pipe 821. Even if the highest water storage chamber 85 needs to supply water to the spray pipe 61, the highest water storage chamber 85 is located higher than the collection box 82, so the water delivery pipe 821 cannot supply water to the highest water storage chamber 85. The lowest water storage chamber 85 can receive water through the water delivery pipe 821, but because it is located below the spray pipe 61, it cannot supply water to the spray pipe 61 under the action of gravity. Therefore, the water in the lowest water storage chamber 85 flows into the highest water storage chamber 85 through the connecting assembly 9 for recycling.

[0070] The connecting assembly 9 includes a counterweight plate 91 and a connecting pipe 92. The counterweight plate 91 is vertically slidably installed in the water storage chamber 85 located at the lowest point. The counterweight plate 91 divides the water storage chamber 85 into a first chamber 851 and a second chamber 852 which are arranged up and down and are independent of each other. The water supply pipe 821 is connected with the second chamber 852 and extends into the second chamber 852, so as to prevent the counterweight plate 91 from continuing to move downward, so that the water supply pipe 821 is always connected with the second chamber 852; the connecting pipe 92 is connected with the second chamber 852 and the water storage chamber 85 located at the highest point, and a water flow portion 94 inclined downward is formed at the top of the connecting pipe 92. A connecting one-way valve 93 is fixedly installed on the connecting pipe 92 for only allowing water in the second chamber 852 to enter. The connection between the connecting pipe 92 and the water storage chamber 85 located at the highest point is located at the top of the water storage chamber 85.

[0071] The diameter of the connecting pipe 92 is smaller than that of the water pipe 821, so that when water is input into the water pipe 821 and the amount of water is large, part of the water enters the connecting pipe 92 under the action of pressure. As the water in the connecting pipe 92 increases, the water in the connecting pipe 92 flows into the water storage chamber 85 at the highest point for storage under the action of gradual push. Some water can also gather in the second chamber 852, thereby pushing the counterweight plate 91 upward. When the amount of water in the water pipe 821 becomes smaller, the counterweight plate 91 can push the water in the second chamber 852 into the connecting pipe 92 under the action of gravity for continued transportation, thereby realizing the flow of water in the water storage chamber 85 at the lowest point into the water storage chamber 85 at the highest point for recycling.

[0072] Reference Figure 2 、 Figure 6Alternatively, the connecting component 9 can be a water level detector, a water pump, and an input pipe. The water level detector is provided with two and is fixedly installed in the two water storage chambers 85 located at the highest and lowest positions. The water pump is fixedly installed on the support member 81 and is connected to the water storage chamber 85 located at the lowest position. An input pipe connected to the water storage chamber 85 located at the highest position is fixedly installed on the water pump. The water pump starts and stops according to the water level data detected by the water level detector. The energy absorbing member 762 and the energy storage member 79 are used to provide electrical energy to the water pump. When water delivery is needed, the water pump starts to flow the water in the water storage chamber 85 located at the lowest position into the water storage chamber 85 located at the highest position for recycling.

[0073] The working principle of the embodiment of this application is as follows: The time controller 42 drives the multiple trays 27 to rotate through the driving member 41, and then the light intensity module starts to control the rotation speed of the multiple potted plants. The greater the light intensity, the faster the rotation speed of the potted plants. As the light intensity weakens, the rotation speed of the potted plants slows down. Then the time controller 42 controls the multiple trays 27 to stop rotating, and then repeats the next day, thereby controlling the rotation and speed of the multiple trays 27 and potted plants through time and light intensity, making the potted plants more evenly illuminated, and reducing the risk of damage to the driving mechanism 4 due to long-term rotation, and reducing energy consumption, improving the growth effect of plants and the stability of the curtain wall.

[0074] Air flows through the ventilation holes 75, and at the same time, the air flow drives the fan blades 74 to rotate, so that the second carrier 22 can dissipate heat faster, and the multiple electrical components located in the protective cavity 24 can dissipate heat faster and better, thereby improving the stability during operation; at the same time, the light-absorbing component absorbs light and converts it into electrical energy, which is then transmitted to the energy-absorbing component 762 for storage, and the conversion component 78 is used to convert the kinetic energy of the fan blades 74 into electrical energy and then transmit it to the energy storage component 79 for storage. The energy-absorbing component 762 and the energy storage component 79 are used to provide electrical energy to the driving component 41, making the curtain wall structure more green, environmentally friendly and energy-saving.

[0075] When it rains, multiple collection boxes 82 collect rainwater and input it into multiple water storage chambers 85 for storage through water pipes 821, and the water storage chamber 85 at the lowest point inputs rainwater into the water storage chamber 85 at the highest point through the connecting component 9, so as to reserve water for spraying by the spray pipe 61; when it does not rain, the moisture content of the potted plants decreases over time, and the placement plate 28 moves upward under the elastic force of the elastic component 3; when the detection component 63 detects the position of the placement plate 28 and the placement plate 28 is in a rotating state, and it is the appropriate time to add water to the potted plants, the control component 62 opens the spray pipe 61 to add water to the potted plants. As the moisture content of the potted plants increases, the potted plants become heavier and drive the potted plants and the placement plate 28 to move downward. When the detection component 63 does not detect the position of the placement plate 28, the control component 62 closes the spray pipe 61, automatically adding water to the potted plants, thereby improving the growth effect of the plants.

[0076] An embodiment of the present application discloses an installation method.

[0077] Reference Figure 1 、 Figure 2 and Figure 6 , the installation method includes the following steps: Install the first carrier 21 and the second carrier 22: fix the energy absorbing assembly 76 and the energy storing assembly 77 on the first carrier 21, fix the collecting box 82 on the second carrier 22, and fix the first carrier 21 and the second carrier 22 on the wall 1; Installing the cooling mechanism 7: Installing the cooling mechanism 7 on the first carrier 21 to cool the first carrier 21; Install the water adding assembly 6: Fix the water adding assembly 6 to the wall 1 , first fix the support member 81 to the wall 1 , and then connect the connecting pipe 64 and the water pipe 821 to the water storage chamber 85 .

[0078] The above are all preferred embodiments of the present application, and are not intended to limit the scope of protection of the present application. Therefore, any equivalent changes made based on the structure, shape, and principle of the present application should be included in the scope of protection of the present application.

Claims

1. A green building curtain wall, characterized by: The invention comprises a wall (1), and a planting device (2) arranged on the wall (1) and used for placing potted plants, wherein the planting device (2) comprises: A plurality of first carriers (21) are arranged on the wall (1) in a horizontal state and vertically spaced apart, and a plurality of trays (27) for placing potted plants are rotatably mounted on each of the first carriers (21); A second carrier (22) is arranged on the wall (1) and connected to the plurality of first carriers (21); A driving mechanism (4) is provided in the first carrier (21) and the second carrier (22) and controls the rotation or stop of the plurality of trays (27) according to time and light intensity and is powered by electrical energy; when light is irradiated, the rotation speed of the trays (27) gradually increases as the light becomes stronger or decreases as the light becomes weaker, and when the light disappears, the trays (27) stop rotating; The water adding component (6) detects the moisture in the potted plant and adds water to the potted plant at an appropriate time and causes the potted plant to rotate when water is added.

2. A green building curtain wall according to claim 1, characterized in that: The driving mechanism (4) comprises: A driving member (41) is connected to the plurality of trays (27) via a connecting assembly (5) and is used to drive the plurality of trays (27) to rotate simultaneously and to provide power through electrical energy; The time controller (42) and the light intensity detection module are both electrically connected to the driving member (41). The time controller (42) causes the driving member (41) to stop driving the tray (27) to rotate at night. The light intensity detection module controls the driving member (41) to drive the tray (27) to rotate during the day, and causes the rotation speed of the tray (27) to increase as the light intensity increases.

3. A green building curtain wall according to claim 2, characterized in that: The second carrier (22) is in a vertical state and is internally divided into a protective cavity (24) and a receiving cavity (25) arranged in an upper and lower direction by a partition plate (23). The driving member (41) and the time controller (42) are located in the protective cavity (24) for protection. The connecting component (5) is located in the receiving cavity (25) and passes through the partition plate (23) upward to be connected to the driving member (41). The connecting component (5) passes through the second carrier (22) and extends into the first carrier (21) to be connected to the plurality of trays (27). A cooling mechanism (7) for cooling the second carrier (22) is provided on the second carrier (22). The cooling mechanism (7) comprises: A mounting cover (71) is provided on a side wall of the second carrier (22) and is arranged corresponding to the protective cavity (24); a ventilation hole (75) is provided on the mounting cover (71) and is in communication with the second carrier (22) and allows air to pass through; A guide cover (72) is provided on the mounting cover (71) and is in an outwardly expanding shape; A mounting shaft (73) is rotatably mounted on the second carrier (22) and extends into the mounting cover (71); The fan blade (74) is arranged on the mounting shaft (73) and rotates under the flow of air and is located in the mounting cover (71).

4. A green building curtain wall according to claim 3, characterized in that: The cooling mechanism (7) further includes an energy absorbing component (76), and the energy absorbing component (76) includes: A light absorbing member, arranged on the outer side walls of the first carrier (21) and the second carrier (22) and used for absorbing light energy and converting it into electrical energy; An energy absorbing member (762) is disposed in the protective cavity (24) and electrically connected to the light absorbing member, wherein the energy absorbing member (762) is used to store electrical energy and to provide electrical energy to the driving member (41).

5. The green building curtain wall according to claim 3, characterized in that: The installation shaft (73) extends into the protective cavity (24). The cooling mechanism (7) further includes an energy storage component (77). The energy storage component (77) includes: A conversion member (78) is disposed in the protective cavity (24) and connected to the mounting shaft (73) and is used to convert kinetic energy of the mounting shaft (73) into electrical energy; An energy storage component (79) is disposed in the protective cavity (24) and electrically connected to the conversion component (78), wherein the energy storage component (79) is used to store electrical energy and to provide electrical energy to the driving component (41).

6. The green building curtain wall according to claim 1, characterized in that: The water adding assembly (6) is provided in plurality and is arranged corresponding to the plurality of first carriers (21), and the water adding assembly (6) comprises: A spray pipe (61) is provided on the wall (1) and extends above the potted plants and is used to add water to the potted plants; each of the trays (27) is vertically slidably mounted on a placement tray (28) for placing the potted plants via an elastic component (3), and can move vertically under the action of the elastic component (3) when the moisture in the potted plants changes; A control member (62) is provided on the spray pipe (61) and is used to control the opening and closing of the spray pipe (61); The detection member (63) is used to detect the state of the placement plate (28) and is electrically connected to the control member (62). When the moisture content of the placement plate (28) decreases and the placement plate (28) moves upward under the action of the elastic component (3), the detection member (63) senses the position of the placement plate (28) and the placement plate (28) is in a rotating state and it is at a suitable time for adding water to the potted plant. The detection member (63) opens the spray pipe (61) through the control member (62) to add water to the potted plant. After the potted plant is watered, the placement plate (28) is driven to move downward. After the detection member (63) fails to detect the placement plate (28), the spray pipe (61) is closed through the control member (62).

7. The green building curtain wall according to claim 6, characterized in that: A water storage mechanism (8) is provided on the wall (1), and the water storage mechanism (8) comprises: A support member (81) is provided on the wall (1) and has a storage chamber formed therein; A plurality of collecting boxes (82) are respectively arranged on the upper surfaces of the plurality of first carriers (21); and the plurality of trays (27) are rotatably mounted on the collecting boxes (82) and the first carriers (21); A plurality of water storage plates (83) are vertically spaced apart and arranged in the storage chamber to divide the storage chamber into a plurality of mutually independent water storage chambers (85); the plurality of water storage chambers (85) and the plurality of collection boxes (82) are correspondingly arranged; the spray pipe (61) and the collection box (82) located on the same first carrier (21) are respectively connected to two upper and lower adjacent water storage chambers (85), so that the water in the water storage chamber (85) is sprayed into the potted plant through the spray pipe (61) under the action of gravity; the collection box (82) is provided with a water delivery pipe (821) connected to the corresponding water storage chamber (85); the water delivery pipe (821) is provided with a water delivery one-way valve (822) that only supplies water into the water storage chamber (85); The connecting assembly (9) connects the water storage chambers (85) at the lowest position and the water storage chambers (85) at the highest position and allows water in the water storage chamber (85) at the lowest position to flow into the water storage chamber (85) at the highest position.

8. The green building curtain wall according to claim 7, characterized in that: The connectivity component (9) comprises: A counterweight plate (91) is vertically slidably mounted in the lowest water storage chamber (85) and divides the water storage chamber (85) into a first chamber (851) and a second chamber (852) that are arranged vertically and are independent of each other, and the water pipe (821) is in communication with the second chamber (852); The connecting pipe (92) is connected to the second chamber (852) and the water storage chamber (85) at the highest point and is provided with a connecting one-way valve (93) for allowing only water in the second chamber (852) to enter. The diameter of the connecting pipe (92) is smaller than the diameter of the water delivery pipe (821).

9. The green building curtain wall according to claim 2, characterized in that: The connecting component (5) comprises: A driving rod (51) is rotatably disposed in the second carrier (22) and connected to the driving member (41); A plurality of driving rods 2 (52) are rotatably disposed in the plurality of first carriers (21) and are each provided with a plurality of gears 1 (53) at intervals; A plurality of gears 2 (54) are arranged at intervals on the driving rod 1 (51); A plurality of gear threes (55) are disposed on the plurality of drive rods two (52) and mesh with the plurality of gear twos (54); A plurality of gear fours (56) are respectively arranged on a plurality of trays (27) and meshed with a plurality of gear ones (53).

10. A method for installing the green building curtain wall as claimed in claim 3, characterized in that: The following steps are involved: Installing the first carrier (21) and the second carrier (22): fixing the first carrier (21) and the second carrier (22) on the wall (1); Installing a cooling mechanism (7): installing the cooling mechanism (7) on the first carrier (21) and being used to cool the first carrier (21); Install the water adding assembly (6): Fix the water adding assembly (6) to the wall (1).

Citation Information

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