Green plant curtain wall device with display function and green plant planting management equipment
By introducing display screen components and waterproof and heat-insulating panels into the green wall device, the problems of high poster replacement costs and poor visibility are solved, achieving improved stability and visibility, while ensuring the survival rate of green plants and the normal operation of the display screen.
Patent Information
- Application Number
- CN202511080118.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-04
- Publication Date
- 2025-11-14
AI Technical Summary
The existing green wall installation is costly and difficult to replace posters, and the posters have poor visibility, which affects the visitor experience, especially on cloudy days or at night when there is insufficient light. At the same time, the seepage of nutrient solution may damage the display screen and kill the plants.
Design a green wall device with display function, including a green wall component and a display screen component. The display screen component is fixed to one side of the green wall, and the back is used for cultivating green plants. The device is equipped with a waterproof and heat-insulating plate to isolate the nutrient solution and the display screen. The display screen displays poster content, and the stability is improved through heat dissipation channels and waterproof protection structures.
It reduces the cost and difficulty of poster replacement, improves poster visibility, prevents nutrient solution from seeping into and damaging the display screen, ensures the survival rate of green plants and the stability of the device, and reduces eye fatigue for tourists.
Smart Images

Figure CN120937657A_ABST
Abstract
Description
Technical Field
[0001] This disclosure relates to the technical field of green plant planting and management equipment, and in particular to a green plant curtain wall device with display function and green plant planting and management equipment. Background Technology
[0002] Within botanical gardens, the use of green walls for plant cultivation has become a common and effective method to maximize land utilization and efficiently conserve land resources. Green walls, with their unique vertical greening approach, cleverly utilize building facade space, significantly increasing green area and coverage, and enriching the ecological landscape of the botanical garden. For example, the innovative design shown in existing technology patent CN110089306B provides strong support for this. Simultaneously, botanical gardens often cleverly design the back of the green walls as display panels for displaying various promotional posters or plant-related information, allowing visitors to easily read and understand relevant content while appreciating the greenery. This design greatly enriches the visitor experience.
[0003] However, each time the poster content is updated, a lot of time and money is needed to reprint new posters that meet specific sizes and display requirements. What's more troublesome is that old posters are prone to causing a chain of problems when they are torn off—adhesive residue is left behind, which requires secondary cleaning and makes it much more difficult to replace the posters. At the same time, reading the posters on cloudy days or at night when there is insufficient light not only greatly reduces the visibility of the posters, but also has a certain impact on the eyesight of tourists. Summary of the Invention
[0004] The purpose of this disclosure is to overcome the shortcomings of the prior art and provide a green wall device and green plant planting management equipment with display function that can not only reduce the replacement cost and difficulty of posters, but also improve the visibility of posters.
[0005] The purpose of this disclosure is achieved through the following technical solution:
[0006] A green wall device with display function includes a green wall component and a display screen component. The display screen component is installed and fixed on one side of the green wall component. The side of the green wall component facing away from the display screen component is used for cultivating green plants. The display end of the display screen component is set in the direction facing away from the green wall component.
[0007] The green wall device with display function also includes a waterproof and heat-insulating plate, which is disposed between the display screen assembly and the green wall assembly.
[0008] In one embodiment, the green curtain wall assembly includes a waterproof curtain wall and a green planting cloth. The display screen assembly is installed and fixed on one side of the waterproof curtain wall, and the green planting cloth is installed on the side of the waterproof curtain wall opposite to the display screen assembly. The side of the green planting cloth opposite to the waterproof curtain wall has a plurality of planting bags, which are used to contain nutrient soil.
[0009] In one embodiment, the green planting fabric is detachably installed on the waterproof curtain wall.
[0010] In one embodiment, the waterproof curtain wall has a hook-shaped portion protruding on one side adjacent to the green planting fabric, and the green planting fabric has a fixing hole opposite to the hook-shaped portion. The hook-shaped portion passes through the fixing hole for hanging and fixing the green planting fabric.
[0011] In one embodiment, each of the planting bags is arranged parallel to each other at intervals, and each of the planting bags in the same column together forms a planting bag group. Each of the planting bags has a drainage and ventilation hole at its bottom, and the drainage and ventilation holes of each of the planting bags in each planting bag group are arranged opposite to each other. The green curtain wall assembly also includes a nutrient solution delivery assembly, and the delivery end of the nutrient solution delivery assembly is located inside the planting bag at the top of each planting bag group.
[0012] In one embodiment, the nutrient solution delivery assembly further includes a nutrient solution collection box, a connecting pipe, and a circulation pump. The nutrient solution collection box is disposed below the green plant planting cloth and forms a nutrient solution collection trough. The opening of each planting bag in each planting bag group is opposite to the drainage and ventilation hole of the corresponding planting bag for collecting nutrient solution. The first end of the connecting pipe is located inside the nutrient solution collection box and is connected to the nutrient solution collection trough. The infusion end of the nutrient solution assembly is disposed at the second end of the connecting pipe. The second end of the connecting pipe is connected to multiple infusion pipes. Each infusion pipe is configured one-to-one with each planting bag group. Each infusion pipe is partially disposed inside the planting bag at the top of the corresponding planting bag group. The circulation pump is installed on the waterproof curtain wall and is disposed on and connected to the connecting pipe. The suction end of the circulation pump is connected to the nutrient solution collection trough through the connecting pipe, and the discharge end of the circulation pump is connected to the infusion pipe through the connecting pipe.
[0013] In one embodiment, the heat-conducting end of the display assembly is spaced apart from the waterproof and heat-insulating plate, so that a heat dissipation channel is formed between the heat-conducting end of the display assembly and the waterproof and heat-insulating plate.
[0014] In one embodiment, the display assembly includes a waterproof protective base and a display screen. The display end of the display assembly is disposed on the display screen. The waterproof protective base is installed and fixed to the waterproof curtain wall adjacent to the waterproof heat insulation board. The waterproof protective base forms a waterproof protective groove, with the groove opening facing away from the waterproof heat insulation board. The display screen is installed and fixed inside the waterproof protective groove, with the display end facing the groove opening. The heat-conducting end of the display assembly is disposed on the waterproof protective base. The side of the waterproof protective base facing away from the waterproof protective groove is spaced apart from the waterproof heat insulation board to jointly form the heat dissipation channel.
[0015] In one embodiment, the display assembly further includes a transparent protective plate covering the opening of the waterproof protective groove. The display end of the display faces the transparent protective plate, and the outer periphery of the transparent protective plate is sealed and fixedly connected to the outer periphery of the waterproof protective base to jointly form the sealed cavity, in which the display is housed and sealed.
[0016] In one embodiment, the waterproof protective base includes a waterproof protective frame and a waterproof heat-conducting plate. The waterproof protective frame is installed and fixed on one side of the waterproof curtain wall adjacent to the heat insulation plate. The heat-conducting end of the display assembly is disposed on the waterproof heat-conducting plate. The waterproof heat-conducting plate is installed and fixed on one side of the waterproof protective frame. The outer periphery of the waterproof heat-conducting plate is sealed and connected to the outer periphery of the waterproof protective frame to jointly form the waterproof protective groove. The outer periphery of the display is fixed to the waterproof protective frame. The display end of the display is oriented away from the waterproof heat-conducting plate. The heat-generating end of the display abuts against the waterproof heat-conducting plate. The waterproof heat-conducting plate and the heat insulation plate are arranged at intervals to form the heat dissipation channel.
[0017] A green plant planting and management device includes a green plant curtain wall device with display function as described in any of the above embodiments.
[0018] Compared with the prior art, this disclosure has at least the following advantages:
[0019] 1. The aforementioned green wall device with display function includes a green wall component and a display screen component. The display screen component is installed and fixed on one side of the green wall component. The side of the green wall component facing away from the display screen component is used for cultivating green plants. The display end of the display screen component is set in the direction away from the green wall component. Compared with the above-mentioned related technologies that use posters pasted on the display board, the green wall device with display function disclosed in this invention can not only reduce the cost and difficulty of replacing posters, but also clearly display the poster content in low-light environments such as rainy weather or night, thereby greatly improving the visibility of the posters and reducing eye fatigue for tourists during reading.
[0020] 2. Since the green wall device with display function also includes a waterproof and heat-insulating plate, which is located between the display screen assembly and the green wall assembly, the waterproof and heat-insulating plate can effectively prevent the nutrient solution from seeping into and contacting the display screen assembly when the manager waters the green plants on the side of the green wall assembly away from the display screen assembly. This avoids damage to the display screen assembly due to moisture and allows the display screen assembly to maintain normal operation. At the same time, the waterproof and heat-insulating plate can prevent the heat generated by the display screen assembly from being conducted to the green plants through the green wall, preventing the green plants from dying due to high temperature. This not only greatly improves the stability of the green wall device with display function, but also ensures a high survival rate of the green plants. Attached Figure Description
[0021] To more clearly illustrate the technical solutions of the embodiments of this disclosure, the accompanying drawings used in the embodiments will be briefly described below. It should be understood that the following drawings only show some embodiments of this disclosure and should not be regarded as a limitation of the scope. For those skilled in the art, other related drawings can be obtained based on these drawings without creative effort.
[0022] Figure 1 This is a schematic diagram of a green wall device with display function according to an embodiment;
[0023] Figure 2 for Figure 1 Another perspective view of the green wall installation with display function shown;
[0024] Figure 3 for Figure 1 Another perspective view of the green wall installation with display function is shown.
[0025] Figure 4 for Figure 1Another perspective view of the green wall installation with display function is shown.
[0026] Figure 5 for Figure 4 A partially enlarged schematic diagram of a green wall installation with display functionality;
[0027] Figure 6 for Figure 1 Another partial structural schematic diagram of the green wall device with display function is shown;
[0028] Figure 7 for Figure 1 Another partial structural schematic diagram of the green wall device with display function is shown;
[0029] Figure 8 for Figure 1 Another partial structural schematic diagram of the green wall device with display function is shown;
[0030] Figure 9 for Figure 1 Another partial structural schematic diagram of the green wall device with display function is shown;
[0031] Figure 10 for Figure 9 A partial structural schematic diagram of a green wall device with display function is shown.
[0032] Figure 11 for Figure 1 Another partial structural schematic diagram of the green wall device with display function is shown;
[0033] Figure 12 This is a schematic diagram of the structural model of a green wall device with display function.
[0034] Reference numerals: 10. Green wall installation with display function; 100. Green wall component; 110. Waterproof wall; 111. Hook-shaped part; 112. Positioning hole; 113. Waterproof wall part; 114. Support part; 120. Green planting fabric; 121. Planting bag; 1211. Drainage and ventilation hole; 122. Fixing hole; 200. Display screen assembly; 210. Waterproof protective base; 211. Waterproof protective groove; 212. Waterproof protective frame; 21 3. Waterproof heat-conducting plate; 220. Display screen; 230. Transparent protective plate; 300. Waterproof heat insulation plate; 400. Nutrient solution delivery assembly; 410. Nutrient solution collection box; 411. Nutrient solution collection tank; 412. Threaded hole; 420. Connecting pipe; 430. Circulation pump; 440. Infusion pipe; 450. Filter; 451. Second threaded contact surface; 452. Filter element; 453. Mounting sleeve; 500. Heat dissipation channel; 600. Cooling fan. Detailed Implementation
[0035] To facilitate understanding of this disclosure, a more complete description will be given below with reference to the accompanying drawings, which illustrate preferred embodiments of the present disclosure. However, this disclosure can be implemented in many different forms and is not limited to the embodiments described herein. Rather, these embodiments are provided to provide a more thorough and complete understanding of the disclosure.
[0036] It should be noted that when an element is referred to as being "fixed to" another element, it can be directly attached to the other element or there may be an intervening element. When an element is referred to as being "connected to" another element, it can be directly connected to the other element or there may be an intervening element. The terms "vertical," "horizontal," "left," "right," and similar expressions used herein are for illustrative purposes only and do not represent the only possible implementation.
[0037] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this disclosure belongs. The terminology used herein is for the purpose of describing particular embodiments only and is not intended to be limiting of this disclosure. The term "and / or" as used herein includes any and all combinations of one or more of the associated listed items.
[0038] To better understand the technical solutions and beneficial effects of this disclosure, the following detailed description is provided in conjunction with specific embodiments:
[0039] like Figures 1 to 12 As shown, an embodiment of a green wall device 10 with display function includes a green wall component 100 and a display screen component 200. The display screen component 200 is installed and fixed on one side of the green wall component 100. The side of the green wall component 100 facing away from the display screen component 200 is used for cultivating green plants. The display end of the display screen component 200 is arranged facing away from the green wall component 100. Compared with the above-mentioned related technologies that use posters pasted on a display board, the green wall device 10 with display function disclosed in this invention can not only reduce the cost and difficulty of replacing posters, but also clearly display the poster content in low-light environments such as rainy weather or night, thereby greatly improving the visibility of the posters and reducing eye fatigue for tourists during reading.
[0040] like Figures 1 to 12As shown, the green wall device 10 with display function further includes a waterproof and heat-insulating plate 300. The waterproof and heat-insulating plate 300 is disposed between the display screen assembly 200 and the green wall assembly 100. When the manager waters the green plants on the side of the green wall assembly 100 away from the display screen assembly 200 with nutrient solution, the waterproof and heat-insulating plate 300 can effectively prevent the nutrient solution from seeping into the display screen assembly 200 and coming into contact with it, thus avoiding damage to the display screen assembly 200 due to moisture and ensuring that the display screen assembly 200 can maintain normal operation. At the same time, the waterproof and heat-insulating plate 300 can prevent the heat generated by the display screen assembly 200 from being conducted to the green plants through the green wall, thus preventing the green plants from dying due to high temperature. This not only greatly improves the stability of the green wall device 10 with display function, but also ensures a high survival rate of the green plants.
[0041] The aforementioned green wall device 10 with display function includes a green wall component 100 and a display screen component 200. The display screen component 200 is installed and fixed on one side of the green wall component 100. The side of the green wall component 100 facing away from the display screen component 200 is used for cultivating green plants. The display end of the display screen component 200 is set in the direction away from the green wall component 100. Compared with the above-mentioned related technologies that use posters pasted on display boards, the green wall device 10 with display function of this disclosure can not only reduce the cost and difficulty of replacing posters, but also clearly display the poster content in low-light environments such as rainy weather or night, thereby greatly improving the visibility of the posters and reducing eye fatigue for tourists during reading.
[0042] Furthermore, the green wall device 10 with display function also includes a waterproof and heat-insulating plate 300. The waterproof and heat-insulating plate 300 is disposed between the display screen assembly 200 and the green wall assembly 100. This allows the waterproof and heat-insulating plate 300 to effectively prevent the nutrient solution from seeping into and contacting the display screen assembly 200 when the manager waters the green plants on the side of the green wall assembly 100 away from the display screen assembly 200. This prevents the display screen assembly 200 from being damaged by moisture and allows it to maintain normal operation. At the same time, the waterproof and heat-insulating plate 300 can prevent the heat generated by the display screen assembly 200 from being conducted to the green plants through the green wall, preventing the green plants from dying due to high temperature. This not only greatly improves the stability of the green wall device 10 with display function but also ensures a high survival rate of the green plants.
[0043] like Figures 1 to 7As shown, in one embodiment, the green wall assembly 100 includes a waterproof wall 110 and a green planting fabric 120. The display screen assembly 200 is mounted and fixed to one side of the waterproof wall 110. The green planting fabric 120 is mounted on the side of the waterproof wall 110 opposite to the display screen assembly 200. Multiple planting bags 121 are formed on the side of the green planting fabric 120 opposite to the waterproof wall 110. The planting bags 121 are used to hold nutrient soil so that green plants can be cultivated inside the planting bags 121, enabling the green wall assembly 100 to... Vertical cultivation of green plants improves the utilization rate of land resources. At the same time, when nutrient solution is watered into the green plants in the planting bag 121, the waterproof curtain wall 110 and the waterproof heat insulation board 300 can jointly prevent the nutrient solution from seeping into the display screen assembly 200, effectively avoiding direct contact between the nutrient solution and the display screen assembly 200, preventing damage to the display screen assembly 200 due to moisture, and enabling the display screen assembly 200 to maintain normal working condition, thereby greatly improving the stability of the green curtain wall device 10 with display function.
[0044] like Figure 6 As shown, in one embodiment, the green plant planting cloth 120 is made of polypropylene nonwoven fabric or polyester fiber nonwoven fabric, so that the green plant planting cloth 120 has good corrosion resistance, tear resistance, abrasion resistance and breathability, and is non-toxic. This not only gives the green plant planting cloth 120 a long service life and structural strength, but also improves the efficiency of air exchange between the planting bag 121 and the outside air, ensuring sufficient oxygen content in the planting bag 121, which greatly improves the aerobic respiration of the plant roots, thereby greatly improving the survival rate of the plants.
[0045] It is understandable that when watering plants with nutrient solution, some nutrient solution often remains on the planting bag 121. Since the nutrient solution is rich in organic matter, this residue provides favorable conditions for the growth of mold and bacteria, easily causing the planting cloth 120 to become moldy and fungal. Mold and bacteria not only compete with the plants for nutrients and occupy their living space, interfering with the plants' normal physiological activities and affecting their healthy growth, thus greatly reducing the survival rate of the plants, but also the acidic substances produced by these microorganisms during metabolism can corrode the planting cloth 120, greatly reducing the structural strength of the planting bag 121. As a result, after long-term use, the planting bag 121 is prone to tearing and damage because it cannot bear the weight of the plants and nutrient soil, causing the plants to fall out of the planting bag 121, lose their support for growth, and die, thus greatly reducing the survival rate of the plants.
[0046] like Figures 1 to 7As shown, in one embodiment, the green planting cloth 120 is detachably installed on the waterproof curtain wall 110, so that the administrator can replace the green planting cloth 120 regularly to prevent the green planting cloth 120 from becoming moldy and fungal due to prolonged use, ensuring that the green plants can maintain normal physiological activities. At the same time, it can also ensure that the planting bag 121 has good structural strength, so that the planting bag 121 can effectively bear the weight of the green plants and nutrient soil, effectively reducing the possibility of the green plants falling out of the planting bag 121 due to tearing or damage, thereby greatly improving the survival rate of the green plants.
[0047] like Figures 1 to 7 As shown, in one embodiment, a hook-shaped portion 111 protrudes from one side of the waterproof curtain wall 110 adjacent to the green planting cloth 120. The green planting cloth 120 has a fixing hole 122 opposite to the hook-shaped portion 111. The hook-shaped portion 111 passes through the fixing hole 122 to hang and fix the green planting cloth 120, so as to facilitate the installation and disassembly of the green planting cloth 120. This greatly reduces the difficulty of replacing the green planting cloth 120 and thus greatly improves the ease of use of the green curtain wall device 10 with display function.
[0048] like Figures 1 to 7 As shown, in one embodiment, there are multiple hook-shaped parts 111 and multiple fixing holes 122. Multiple hook-shaped parts 111 are evenly arranged on the waterproof curtain wall 110, and multiple fixing holes 122 are evenly arranged on the green plant planting cloth 120. Each hook-shaped part 111 is corresponding to each fixing hole 122, so that the green plant planting cloth 120 is more securely fixed on the waterproof curtain wall 110, thereby greatly improving the stability of the green curtain wall device 10 with display function.
[0049] like Figure 7 As shown, in one embodiment, the hook-shaped portion 111 and the waterproof curtain wall 110 are integrally formed to improve the structural compactness of the waterproof curtain wall 110.
[0050] like Figures 1 to 6As shown, in one embodiment, each planting bag 121 is arranged parallel to each other at intervals. Each planting bag 121 in the same column forms a planting bag 121 group. The bottom of each planting bag 121 has a drainage and ventilation hole 1211, and the opening of each planting bag 121 in each planting bag 121 group is opposite to the drainage and ventilation hole 1211 of the corresponding planting bag 121. The green curtain wall assembly 100 also includes a nutrient solution delivery assembly 400. The delivery end of the nutrient solution delivery assembly 400 is disposed in the planting bag 121 at the top of each planting bag 121 group, so that the nutrient solution delivery assembly 400 delivers nutrient solution to the planting bag at the top of each planting bag 121 group. When the plant is inside the 121, excess nutrient solution can be discharged from the drainage and ventilation holes 1211 by its own gravity and enter the lower planting bag 121 through the bag opening. This allows the nutrient solution delivery component 400 to deliver nutrient solution to each planting bag 121 by only delivering nutrient solution to the top planting bag 121 of each planting bag group, thereby greatly improving the ease of use of the green wall device 10 with display function. At the same time, the planting bag 121 can also increase the exchange rate with the outside air through the drainage and ventilation holes 1211, ensuring sufficient air inside the planting bag 121, promoting the aerobic respiration of the green plants, and thus greatly improving the survival rate of the green plants.
[0051] It is understandable that some nutrient solution will be wasted during the process of watering green plants, which greatly increases the cost of planting green plants.
[0052] like Figures 1 to 8As shown, in one embodiment, the nutrient solution delivery assembly 400 further includes a nutrient solution collection box 410, a connecting pipe 420, and a circulation pump 430. The nutrient solution collection box 410 is disposed below the green plant planting cloth 120, and the nutrient solution collection box 410 forms a nutrient solution collection trough 411. The opening of the nutrient solution collection trough 411 is opposite to the drainage and ventilation hole 1211 of the planting bag 121 at the bottom of each planting bag 121 group for collecting nutrient solution. The first end of the connecting pipe 420 is located inside the nutrient solution collection box 410 and is connected to the nutrient solution collection trough 411. The infusion end of the nutrient solution assembly is located at the second end of the connecting pipe 420. The second end of the connecting pipe 420 is connected to a plurality of infusion pipes 440. Each infusion pipe 440 is correspondingly disposed to each planting bag 121 group, and each infusion pipe 440 is partially disposed inside the planting bag 121 at the top of the corresponding planting bag 121 group. A circulation pump 430 is installed on the waterproof curtain wall 110 and connected to a connecting pipe 420. The suction end of the circulation pump 430 is connected to the nutrient solution collection tank 411 through the connecting pipe 420, and the discharge end of the circulation pump 430 is connected to the delivery pipe 440 through the connecting pipe 420. This allows the nutrient solution collection tank 411 to collect excess nutrient solution when it is discharged from the drainage and ventilation holes 1211 of the bottom of each planting bag 121 group. The circulation pump 430 can then extract the nutrient solution from the collection tank 411 through the connecting pipe 420 and deliver it to the top of the planting bag 121 through the delivery pipe 440. This not only greatly reduces the difficulty of nutrient solution irrigation for green plants and improves the convenience of green plant management, but also greatly reduces the waste of nutrient solution and significantly lowers the cultivation cost of green plants.
[0053] like Figure 8 As shown, in one embodiment, the connecting tube 420 and the multiple infusion tubes 440 are integrally formed to improve the structural compactness of the connecting tube 420.
[0054] It is understandable that when the nutrient solution falls from the drainage and ventilation hole 1211 of the planting bag 121 at the bottom of each planting bag 121 group into the nutrient solution collection tank 411, some nutrient soil will be mixed in. If this nutrient soil enters the interior of the circulation pump 430, it will block or even damage the circulation pump 430, thereby greatly reducing the service life and stability of the circulation pump 430.
[0055] like Figure 8 and Figure 11As shown, in one embodiment, a filter 450 is provided in the pipe hole at the first end of the connecting pipe 420 so that when the connecting pipe 420 draws in the nutrient solution from the nutrient collection tank, the filter 450 can filter out the nutrient soil or other particulate impurities mixed in the nutrient solution, thereby reducing the phenomenon of blockage or even damage to the circulating pump 430, and thus greatly improving the service life and operational stability of the circulating pump 430.
[0056] It is understandable that when the filter 450 is used for a long time, nutrient soil or other particulate impurities will gradually accumulate inside it, which will easily lead to blockage. This will not only greatly reduce the filtration efficiency of the filter 450, but also greatly reduce the delivery efficiency of the nutrient solution delivery component 400. In order to ensure that the nutrient solution delivery component 400 can maintain normal operation, the filter 450 needs to be cleaned or replaced regularly.
[0057] like Figure 8 and Figure 11 As shown, in one embodiment, the filter 450 is detachably installed at the first end of the connecting pipe 420 so that the filter 450 can be removed for cleaning or replacement, which greatly improves the ease of maintenance of the filter 450 and ensures that the nutrient solution delivery assembly 400 can maintain normal operation.
[0058] like Figure 8 and Figure 11 As shown, in one embodiment, a first threaded abutment surface (not shown) is formed on the inner peripheral wall of the first end hole of the connecting pipe 420, and a second threaded abutment surface 451 adapted to the first threaded abutment surface is formed on the outer peripheral wall of the filter 450. The filter 450 is disposed in the first end hole of the connecting pipe 420 and threadedly connected to the first end of the connecting pipe 420. This not only greatly reduces the difficulty of installing and disassembling the filter 450, but also enables the filter 450 to be reliably installed and fixed to the first end of the connecting pipe 420, thereby greatly improving the maintenance convenience and usage stability of the filter 450.
[0059] like Figure 8 and Figure 11 As shown, in one embodiment, the filter 450 includes a filter element 452 and a mounting sleeve 453. The filter element 452 is disposed inside the mounting sleeve 453, and the outer peripheral wall of the filter element 452 is fixedly connected to the inner peripheral wall of the mounting sleeve 453. A second threaded abutment surface 451 is disposed on the outer peripheral wall of the mounting sleeve 453 to facilitate the installation and disassembly of the filter 450.
[0060] like Figure 8 As shown, in one embodiment, the circulating pump 430 is a screw pump or a centrifugal pump.
[0061] like Figure 8As shown, in one embodiment, the connecting pipe 420 and the infusion pipe 440 are both polyvinyl chloride pipes, polyethylene pipes, or polypropylene pipes, so that the connecting pipe 420 and the infusion pipe 440 can have good corrosion resistance and structural strength, and are non-toxic.
[0062] It is understandable that if nutrient solution is stored for a long time, its internal components will undergo a series of complex chemical and biological changes, leading to spoilage and mold. Spoiled fertilizer not only loses its original fertilizing effect and fails to provide sufficient nutrients for green plants, but also produces an unpleasant odor, adversely affecting the surrounding environment. At the same time, such an environment is prone to breeding mosquitoes, whose reproduction and activity may spread germs, posing a potential threat to the health of green plants. Therefore, it is necessary to replace the nutrient solution in the nutrient solution collection tank 411 regularly to ensure the quality and effectiveness of the nutrient solution. In addition, the inner wall of the nutrient solution collection box 410 is prone to becoming a breeding ground for mold and bacteria when it is in the nutrient solution environment for a long time. These microorganisms will multiply in large numbers on the inner wall, forming bacterial spots and dirt, which not only affects the appearance and hygiene of the nutrient solution collection box 410, but may also contaminate newly replaced nutrient solution, reduce the quality of the nutrient solution, and even damage the root system of green plants.
[0063] like Figures 1 to 8 As shown, in one embodiment, the nutrient solution collection box 410 is detachably installed on the waterproof curtain wall 110 so that the nutrient solution collection box 410 can be removed for cleaning and replacement of nutrient solution, which greatly reduces the difficulty of replacing nutrient solution and maintaining and cleaning nutrient solution collection box 410, thereby greatly improving the maintenance convenience of nutrient solution delivery component 400.
[0064] like Figures 1 to 8 As shown, in one embodiment, the nutrient solution delivery assembly 400 further includes fasteners (not shown). The waterproof curtain wall 110 has a positioning hole 112, and the outer peripheral wall of the nutrient solution collection box 410 has a threaded hole 412 that is opposite to the positioning hole 112. The fastener passes through the positioning hole 112 and is screwed into the threaded hole 412. This not only greatly reduces the difficulty of installing and disassembling the nutrient solution collection box 410, but also enables the nutrient solution collection box 410 to be securely fixed to the waterproof curtain wall 110, thereby greatly improving the ease of maintenance and stability of use of the nutrient solution collection box 410.
[0065] like Figures 3 to 5As shown, in one embodiment, the heat-conducting end of the display assembly 200 is spaced apart from the waterproof insulation plate 300, so that a heat dissipation channel 500 is formed between the heat-conducting end of the display assembly 200 and the waterproof insulation plate 300. This avoids direct contact between the heat-conducting end of the display assembly 200 and the waterproof insulation plate 300. The heat dissipation channel 500 not only effectively blocks direct heat transfer between the heat-conducting end of the display assembly 200 and the waterproof insulation plate 300, but also reduces the thermal bridge effect between the heat-conducting end of the display assembly 200 and the waterproof insulation plate 300, and works with the waterproof insulation plate 300 to achieve a double-layer heat insulation effect. At the same time, the heat dissipation channel 500 can also promote the formation of convective air between the heat-conducting end of the display assembly 200 and the waterproof insulation plate 300, so that the air can conduct heat away from the heat-conducting end of the display assembly 200, thereby greatly improving the heat dissipation effect of the display assembly 200, preventing the display assembly 200 from affecting normal use due to excessive temperature, and thus greatly improving the stability of the display assembly 200.
[0066] like Figures 3 to 10 As shown, in one embodiment, the display assembly 200 includes a waterproof protective base 210 and a display screen 220. The display end of the display assembly 200 is disposed on the display screen 220. The waterproof protective base 210 is installed and fixed to the waterproof curtain wall 110 adjacent to the waterproof heat insulation board 300. The waterproof protective base 210 forms a waterproof protective groove 211, with the groove opening facing away from the waterproof heat insulation board 300. The display screen 220 is installed and fixed inside the waterproof protective groove 211, with the display end of the display screen 220 facing the groove opening of the waterproof protective groove 211. The heat-conducting end of the display assembly 200 is disposed on the waterproof protective base 210. The side of the base 210 facing away from the waterproof protection groove 211 is spaced apart from the waterproof heat insulation plate 300 to form a heat dissipation channel 500. This not only allows the waterproof protection base 210 to effectively protect the display screen 220 and effectively reduce the possibility of direct collision or compression between external objects and the display screen 220, but also allows the waterproof protection base 210 to cooperate with the heat dissipation channel 500, the waterproof heat insulation plate 300 and the waterproof curtain wall 110 to prevent the nutrient solution in the planting bag 121 from seeping into the waterproof protection groove 211, effectively avoiding direct contact between the display screen 220 and the nutrient solution, thereby greatly improving the service life of the display screen 220.
[0067] like Figures 3 to 10As shown, in one embodiment, the display assembly 200 further includes a transparent protective plate 230, which covers the opening of the waterproof protective groove 211. The display end of the display screen 220 faces the transparent protective plate 230, allowing visitors to clearly read the content displayed on the display end of the display screen 220 through the transparent protective plate 230. The outer periphery of the transparent protective plate 230 is sealed and fixedly connected to the outer periphery of the waterproof protective seat 210 to form a sealed cavity. The display screen 220 is housed and sealed within the sealed cavity, which not only effectively prevents external water, other conductive liquids, or humid gases from entering the sealed cavity through the gap between the waterproof protective seat 210 and the transparent protective plate 230, thus avoiding short circuits caused by direct contact between the display screen 220 and external water, other conductive liquids, or humid gases, but also allows the waterproof protective seat 210 and the transparent protective plate 230 to jointly protect the display screen 220, preventing direct collisions or compression between the display screen 220 and external objects, thereby greatly improving the service life of the display screen 220.
[0068] In one embodiment, the gap between the outer periphery of the transparent protective plate 230 and the outer periphery of the waterproof protective base 210 is filled with a waterproof sealant block (not shown) so that the transparent protective plate 230 can be sealed and fixedly connected to the waterproof protective base 210.
[0069] like Figure 3 As shown, in one embodiment, the transparent protective plate 230 is an acrylic transparent plate or a glass plate, so that the transparent protective plate 230 can have good structural strength and transparency.
[0070] like Figures 3 to 10As shown, in one embodiment, the waterproof protective base 210 includes a waterproof protective frame 212 and a waterproof heat-conducting plate 213. The waterproof protective frame 212 is installed and fixed on one side of the waterproof curtain wall 110 adjacent to the heat insulation plate. The heat-conducting end of the display assembly 200 is disposed on the waterproof heat-conducting plate 213. The waterproof heat-conducting plate 213 is installed and fixed on one side of the waterproof protective frame 212. The outer periphery of the waterproof heat-conducting plate 213 is sealed and connected to the outer periphery of the waterproof protective frame 212 to form a waterproof protective groove 211. This prevents external water or other conductive liquids from entering the waterproof protective groove 211 through the gap between the waterproof heat-conducting plate 213 and the waterproof frame, effectively avoiding short circuits in the display 220 due to direct contact with external water or other conductive liquids, thereby greatly improving performance. The lifespan and operational stability of the display screen 220 are improved. The outer periphery of the display screen 220 is fixed to the waterproof protective frame 212. The display end of the display screen 220 is set away from the waterproof heat-conducting plate 213. The heat-generating end of the display screen 220 abuts against the waterproof heat-conducting plate 213, and the waterproof heat-conducting plate 213 and the heat insulation plate are set at intervals to form a heat dissipation channel 500. This allows the heat-generating end of the display screen 220 to conduct the heat it generates to the waterproof heat-conducting plate 213, and the heat on the waterproof heat-conducting plate 213 is carried away by the airflow in the heat dissipation channel 500. This greatly improves the heat dissipation effect of the display screen 220, ensuring that the display screen 220 can be maintained within the normal operating temperature range, thereby improving the lifespan and operational stability of the display screen 220.
[0071] like Figure 9 and Figure 10 As shown, in one embodiment, the outer periphery of the waterproof heat-conducting plate 213 and the outer periphery of the waterproof protective frame 212 are filled with waterproof sealant blocks (not shown) so that the waterproof heat-conducting plate 213 can be sealed and fixedly connected to the waterproof protective frame 212.
[0072] like Figures 3 to 10 As shown, in one embodiment, the outer surface of the waterproof curtain wall 110 is coated with a waterproof protective layer (not shown) to prevent the waterproof curtain wall 110 from directly contacting the nutrient solution. This not only greatly improves the waterproof effect of the waterproof curtain wall 110, but also prevents the nutrient solution from corroding the waterproof curtain wall 110, thereby greatly improving the service life of the waterproof curtain wall 110.
[0073] like Figure 7 As shown, in one embodiment, the waterproof curtain wall 110 is an aluminum alloy curtain wall or a stainless steel curtain wall, so that the waterproof curtain wall 110 can have better structural strength, waterproof effect and corrosion resistance.
[0074] like Figure 7As shown, in one embodiment, the waterproof protective layer is a polyurethane waterproof protective layer, an acrylic waterproof protective layer, a polymer cement-based waterproof protective layer, or an epoxy resin waterproof protective layer, so that the waterproof protective layer can have good waterproof effect and corrosion resistance.
[0075] like Figure 5 As shown, in one embodiment, the waterproof and heat-insulating board 300 is a polyurethane foam board, an extruded polystyrene board, or an expanded polystyrene board, so that the waterproof and heat-insulating board 300 can have better waterproof and heat-insulating effects.
[0076] like Figure 5 and Figure 7 As shown, in one embodiment, the waterproof heat-conducting plate 213 is a waterproof silicone heat-conducting plate, so that the waterproof heat-conducting plate 213 can have good waterproof and thermal conductivity.
[0077] like Figures 3 to 5 As shown, in one embodiment, the green wall device 10 with display function also includes a cooling fan 600. The cooling fan 600 is installed and fixed on the top of the display screen assembly 200. The air outlet of the cooling fan 600 is set towards the heat dissipation channel 500 to accelerate the airflow in the heat dissipation channel 500, improve the exchange efficiency between the air in the heat dissipation channel 500 and the outside air, so that the air can quickly remove the heat from the heat-conducting end of the display screen assembly 200, thereby greatly improving the heat dissipation effect of the display screen assembly 200 and ensuring that the display screen assembly 200 can be maintained within the normal operating temperature range, thereby greatly improving the service life and operational stability of the display screen assembly 200.
[0078] like Figures 3 to 5As shown, in one embodiment, the green wall device 10 with display function also includes a temperature detector (not shown). The temperature detector is installed on the waterproof wall 110 and located within the heat dissipation channel 500. The detection end of the temperature detector faces the heat-conducting end of the display assembly 200. The temperature detector is used to detect the temperature of the heat-conducting end of the display assembly 200. The signal transmission end of the temperature detector is electrically connected to the cooling fan 600. The temperature detector is used to control the opening or closing of the cooling fan 600, so that when the temperature detector detects that the temperature of the display assembly 200 reaches a preset temperature range, the temperature detector will transmit a first signal to the cooling fan 600. Upon receiving the first signal, the cooling fan 600 will start to accelerate the airflow within the heat dissipation channel 500 and improve the heat dissipation efficiency of the display assembly 200. When the temperature detector detects that the temperature of the display assembly 200 is lower than a preset temperature range, the temperature detector will transmit a second signal to the cooling fan 600. Upon receiving the second signal, the cooling fan 600 will stop running, which greatly reduces the power consumption of the cooling fan 600, thereby significantly reducing the operating cost of the cooling fan 600. It also reduces the wear and tear caused by prolonged operation of the cooling fan 600, thus greatly extending the service life of the cooling fan 600.
[0079] It should be noted that this disclosure only protects the position and connection relationship between the temperature detector and the cooling fan 600. The methods by which the temperature detector controls the cooling fan 600 to turn on via the first signal and controls the cooling fan 600 to turn off via the second signal are both existing technologies and will not be described in detail here.
[0080] like Figures 3 to 5 As shown, in one embodiment, there are multiple cooling fans 600, which are spaced apart on the top of the display assembly 200 to improve the heat dissipation effect of the display assembly 200, ensure that the display assembly 200 can be maintained within the normal operating temperature range, and avoid damage to the display assembly 200 due to excessive temperature.
[0081] like Figures 1 to 7As shown, in one embodiment, the waterproof curtain wall 110 includes a waterproof curtain wall portion 113 and a support portion 114. The waterproof curtain wall portion 113 is installed and fixed on the support portion 114. The support portion 114 supports the waterproof curtain wall portion 113 for being spaced apart from the ground. The display screen assembly 200 and the waterproof heat insulation board 300 are both installed and fixed on the support portion 114. The support portion 114 supports the display screen assembly 200 and the waterproof heat insulation board 300 for being spaced apart from the ground, so as to avoid the display screen assembly 200 from being in direct contact with the ground, allowing the ground moisture to seep into the interior of the display screen assembly 200 through capillary action or condensation, thereby reducing the risk of condensation in the display screen assembly 200 during use and greatly improving the service life of the display screen assembly 200.
[0082] like Figure 7 As shown, in one embodiment, the waterproof curtain wall portion 113 and the support portion 114 are integrally formed to improve the structural compactness of the waterproof curtain wall 110.
[0083] This disclosure also includes a green plant planting and management device, comprising the green plant curtain wall device 10 with display function described in any of the above embodiments.
[0084] Compared with the prior art, this disclosure has at least the following advantages:
[0085] 1. The aforementioned green plant planting and management equipment, including a green plant curtain wall device 10 with display function, comprises a green plant curtain wall component 100 and a display screen component 200. The display screen component 200 is installed and fixed on one side of the green plant curtain wall component 100. The side of the green plant curtain wall component 100 facing away from the display screen component 200 is used for cultivating green plants. The display end of the display screen component 200 is set in the direction away from the green plant curtain wall component 100. Compared with the above-mentioned related technologies that use posters pasted on display boards, the green plant curtain wall device 10 with display function disclosed in this invention can not only reduce the cost and difficulty of replacing posters, but also clearly display the poster content in low-light environments such as rainy weather or night, thereby greatly improving the visibility of the posters and reducing eye fatigue for tourists during reading.
[0086] 2. Since the green wall device 10 with display function also includes a waterproof and heat-insulating plate 300, which is located between the display screen assembly 200 and the green wall assembly 100, the waterproof and heat-insulating plate 300 can effectively prevent the nutrient solution from seeping into the display screen assembly 200 and coming into contact with it when the manager waters the green plants on the side of the green wall assembly 100 away from the display screen assembly 200. This avoids damage to the display screen assembly 200 due to moisture and allows the display screen assembly 200 to maintain normal operation. At the same time, the waterproof and heat-insulating plate 300 can prevent the heat generated by the display screen assembly 200 from being conducted to the green plants through the green wall, preventing the green plants from dying due to high temperature. This not only greatly improves the stability of the green wall device 10 with display function, but also ensures a high survival rate of the green plants.
[0087] The embodiments described above are merely illustrative of several implementations of this disclosure, and while the descriptions are specific and detailed, they should not be construed as limiting the scope of the disclosed patent. It should be noted that those skilled in the art can make various modifications and improvements without departing from the concept of this disclosure, and these all fall within the protection scope of this disclosure. Therefore, the protection scope of this patent should be determined by the appended claims.
Claims
1. A green wall device with display function, characterized in that, The device includes a green wall component and a display screen component. The display screen component is installed and fixed on one side of the green wall component. The side of the green wall component facing away from the display screen component is used for cultivating green plants. The display end of the display screen component is set in the direction facing away from the green wall component. The green wall device with display function also includes a waterproof and heat-insulating plate, which is disposed between the display screen assembly and the green wall assembly.
2. The green wall device with display function according to claim 1, characterized in that, The green curtain wall assembly includes a waterproof curtain wall and a green planting cloth. The display screen assembly is installed and fixed on one side of the waterproof curtain wall, and the green planting cloth is installed on the side of the waterproof curtain wall opposite to the display screen assembly. The side of the green planting cloth opposite to the waterproof curtain wall has multiple planting bags, which are used to contain nutrient soil.
3. The green wall device with display function according to claim 2, characterized in that, The green planting fabric can be detachably installed on the waterproof curtain wall.
4. The green wall device with display function according to claim 3, characterized in that, The waterproof curtain wall has a hook-shaped part protruding on one side adjacent to the green planting cloth. The green planting cloth has a fixing hole opposite to the hook-shaped part. The hook-shaped part passes through the fixing hole to hang and fix the green planting cloth.
5. The green wall device with display function according to claim 2, characterized in that, Each of the planting bags is arranged in parallel and spaced apart from each other. Each of the planting bags in the same column together forms a planting bag group. Each planting bag has a drainage and ventilation hole at the bottom. The opening of each planting bag in each planting bag group is opposite to the drainage and ventilation hole of the corresponding planting bag. The green curtain wall assembly also includes a nutrient solution delivery assembly. The delivery end of the nutrient solution delivery assembly is located inside the planting bag at the top of each planting bag group.
6. The green wall device with display function according to claim 5, characterized in that, The nutrient solution delivery assembly further includes a nutrient solution collection box, a connecting pipe, and a circulation pump. The nutrient solution collection box is located below the green plant planting cloth and forms a nutrient solution collection trough. The opening of the nutrient solution collection trough is aligned with the drainage and ventilation holes of the planting bags at the bottom of each planting bag group to collect nutrient solution. The first end of the connecting pipe is located inside the nutrient solution collection box and is connected to the nutrient solution collection trough. The infusion end of the nutrient solution assembly is located at the second end of the connecting pipe, and the second end of the connecting pipe is connected to multiple infusion tubes. Each infusion tube corresponds to each planting bag group, and each infusion tube is partially located inside the planting bag at the top of the corresponding planting bag group. The circulation pump is installed on the waterproof curtain wall and is located on and connected to the connecting pipe. The suction end of the circulation pump is connected to the nutrient solution collection trough through the connecting pipe, and the discharge end of the circulation pump is connected to the infusion tubes through the connecting pipe.
7. The green wall device with display function according to claim 1, characterized in that, The heat-conducting end of the display assembly is spaced apart from the waterproof and heat-insulating plate, so that a heat dissipation channel is formed between the heat-conducting end of the display assembly and the waterproof and heat-insulating plate.
8. The green wall device with display function according to claim 7, characterized in that, The display assembly includes a waterproof protective base and a display screen. The display end of the display assembly is disposed on the display screen. The waterproof protective base is installed and fixed to the waterproof curtain wall adjacent to the waterproof heat insulation board. The waterproof protective base forms a waterproof protective groove, with the groove opening facing away from the waterproof heat insulation board. The display screen is installed and fixed inside the waterproof protective groove, with the display end facing the groove opening. The heat-conducting end of the display assembly is disposed on the waterproof protective base. The side of the waterproof protective base facing away from the waterproof protective groove is spaced apart from the waterproof heat insulation board to form the heat dissipation channel.
9. The green wall device with display function according to claim 8, characterized in that, The display assembly further includes a transparent protective plate, which covers the opening of the waterproof protective groove. The display end of the display faces the transparent protective plate, and the outer periphery of the transparent protective plate is sealed and fixedly connected to the outer periphery of the waterproof protective base to form the sealed cavity. The display is housed and sealed within the sealed cavity; and / or, The waterproof protective base includes a waterproof protective frame and a waterproof heat-conducting plate. The waterproof protective frame is installed and fixed on one side of the waterproof curtain wall adjacent to the heat insulation plate. The heat-conducting end of the display assembly is disposed on the waterproof heat-conducting plate. The waterproof heat-conducting plate is installed and fixed on one side of the waterproof protective frame. The outer periphery of the waterproof heat-conducting plate is sealed and connected to the outer periphery of the waterproof protective frame to form the waterproof protective groove. The outer periphery of the display is fixed to the waterproof protective frame. The display end of the display is oriented away from the waterproof heat-conducting plate. The heat-generating end of the display abuts against the waterproof heat-conducting plate. The waterproof heat-conducting plate and the heat insulation plate are arranged at intervals to form the heat dissipation channel.
10. A green plant planting and management device, characterized in that, The green wall device with display function as described in any one of claims 1 to 9.
Citation Information
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