Landscape gallery frame capable of humidifying and cooling
By integrating cooling and air conditioning mechanisms on the landscape corridor frame and combining the green plant cultivation cylinder driven by the servo motor, the problem of existing landscape corridor frames being unable to effectively shade and cool down, achieving a better rest environment and green plant growth.
Patent Information
- Application Number
- CN202520749011.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-21
- Publication Date
- 2025-05-27
- Estimated Expiration
- 2035-04-21
AI Technical Summary
Due to the dispersed distribution of green plants, the existing landscape corridor frames cause sunlight to shine through the gaps and cannot provide a good resting environment.
An adjustable landscape corridor frame is designed, combining a cooling and air conditioning mechanism and an air conditioning mechanism to achieve dual modes of liquid circulation and atomization cooling through circulating water pipes and high-pressure atomized water pipes, and sunshade adjustment and water and fertilizer replenishment are achieved through a servo motor-driven green plant culture cylinder.
Effectively reduce the ambient temperature of the shaded area of the corridor frame, provide better shade and cooling services, improve the comfort of the corridor frame, and promote the healthy growth of green plants.
Smart Images

Figure CN222909576U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of air conditioning, in particular to a landscape gallery capable of humidifying and cooling. Background Art
[0002] Landscape pergolas are an indispensable landscape design in garden design. They are buildings for visitors to rest and for landscape embellishment. Pergolas can be combined with pavilions, corridors, waterside pavilions, etc. to form a beautiful garden complex. In residential green spaces and children's playgrounds, pergolas can be used for rest, sunshade and coolness. At the same time, pergolas can also replace corridors as verandas and corridors.
[0003] Since landscape corridors are mostly set up outdoors, they will be affected by temperature in hot weather, affecting visitors' rest and viewing. At the same time, green plants are often set up on existing landscape corridors for embellishment, so that they can provide viewing value while also providing shade for visitors in the corridor;
[0004] However, due to growth restrictions, the leaves of the green plants planted on the roof of the landscape pergola are relatively scattered. When the sun shines, a large amount of sunlight will still shine through the gaps to the corridor, which cannot provide a good resting environment for tourists in the corridor. Therefore, a landscape pergola that can humidify and cool is proposed. Utility Model Content
[0005] The purpose of the utility model is to solve the problem that the leaves of the green plants planted on the roof of the landscape gallery in the prior art are relatively dispersed due to growth restrictions, and a large amount of sunlight will still shine through the gaps to the corridor when the sun shines, making it impossible to provide a good resting environment for tourists in the corridor. A landscape gallery that can humidify and cool is proposed.
[0006] In order to achieve the above purpose, the utility model adopts the following technical solutions:
[0007] A landscape gallery capable of humidifying and cooling, comprising an adjustable gallery, a cooling adjustment mechanism for sunshade adjustment is arranged on the adjustable gallery, and an air conditioning mechanism for humidity adjustment is arranged below the cooling adjustment mechanism;
[0008] The cooling and regulating mechanism comprises a gallery frame fixedly mounted on the adjustable gallery frame, a green plant cultivation cylinder is slidably connected to the gallery frame via a cultivation groove, sunshade green plants are cultivated inside the green plant cultivation cylinder, a circulating water pipe is fixedly connected inside the gallery frame, and the circulating water pipe is connected to a liquid storage tank symmetrically arranged about the adjustable gallery frame via a circulating water pump;
[0009] The air conditioning mechanism includes a high-pressure atomizing water pipe arranged above the circulating water pipe, the high-pressure atomizing water pipe is connected to an atomizing nozzle, a temperature control component is arranged in the high-pressure atomizing water pipe, the temperature control component controls the atomizing nozzle through a solenoid valve, and the high-pressure atomizing water pipe is connected to a water supply pipe through a high-pressure water pump.
[0010] Preferably, a driving mechanism is provided at the bottom of the green plant cultivation tube, and the driving mechanism includes a servo motor fixedly mounted on an adjustable gallery frame, and the output shaft of the servo motor is transmission-connected to a lifting driving rope, and the lifting driving rope is suspended at the bottom of the gallery roof frame through a suspension hook.
[0011] Preferably, a lifting limit groove is provided at the bottom of the green plant cultivation cylinder, and liquid replenishing holes are provided on the side walls of the green plant cultivation cylinder, which are distributed in a rotationally symmetrical manner.
[0012] Preferably, the top of the circulating water pipe is in contact with the gallery roof frame, the cross-section of the liquid storage tank is set to be rectangular, and the top of the liquid storage tank is connected to a liquid injection pipe to replenish the liquid in the liquid storage tank.
[0013] Preferably, the atomizing nozzle is arranged in an inclined shape, and the atomizing nozzle is symmetrically arranged on the upper and lower sides of the high-pressure atomizing water pipe.
[0014] Preferably, the temperature control component is composed of a temperature sensor and an industrial computer, the temperature sensor is arranged in a high-pressure atomizing water pipe, and the industrial computer is electrically connected to the solenoid valve.
[0015] Preferably, a water replenishment mechanism is also provided on the gallery roof frame, and the water replenishment mechanism includes a collecting water pipe fixedly connected to the gallery roof frame, and the collecting water pipe is fixedly connected to a liquid replenishment pipe.
[0016] Compared with the prior art, the beneficial effects of the utility model are:
[0017] 1. By setting up a cooling adjustment mechanism in conjunction with the air adjustment mechanism, a dual mode of liquid circulation cooling and atomization cooling is formed. The water pump can be started at high temperature to exchange the low-temperature liquid in the storage tank with the high-temperature liquid in the circulation water pipe on the corridor roof. When the temperature exceeds the limit, the atomization nozzle is triggered to absorb heat through water mist vaporization.
[0018] 2. By setting up a green plant cultivation tube in conjunction with a water replenishment mechanism, it is possible to achieve shading and cooling during the day and water and fertilizer replenishment at night according to the ambient temperature, which is beneficial to the growth of green plants and provides better shading and cooling services for the pergola.
[0019] 3. By setting up the cooling adjustment mechanism, air conditioning mechanism and water replenishment mechanism to cooperate with each other, the mechatronic design is realized, the coordinated optimization of shading efficiency, thermal environment regulation and plant maintenance is achieved, and an ecological landscape gallery with self-regulating ability is formed; BRIEF DESCRIPTION OF THE DRAWINGS
[0020] Figure 1 This is a three-dimensional structural schematic diagram of a landscape gallery capable of humidifying and cooling proposed by the utility model;
[0021] Figure 2 This is an exploded view of the overall structure of a landscape gallery capable of humidifying and cooling proposed by the utility model;
[0022] Figure 3 This is a schematic diagram of the internal structure of a cross section of a cooling and regulating mechanism in a landscape gallery capable of humidifying and cooling proposed by the utility model;
[0023] Figure 4 This is a schematic diagram of the structure of an air conditioning mechanism in a landscape gallery that can increase humidity and reduce temperature, which is proposed by the utility model;
[0024] Figure 5 This is a schematic diagram of the internal structure of a cross section of an air conditioning mechanism in a landscape gallery capable of humidifying and cooling proposed by the utility model;
[0025] Figure 6 For this utility model Figure 5 A magnified view of the structure at center A;
[0026] Figure 7 This is a schematic diagram of the structure of a driving mechanism in a landscape gallery capable of humidifying and cooling proposed by the utility model;
[0027] Figure 8 This is a schematic diagram of the internal structure of the cross section of a green plant cultivation tube and a water collection pipe located at the top frame of a landscape gallery that can increase humidity and reduce temperature proposed by the utility model.
[0028] In the figure: 1. Adjustable gallery; 11. Gallery roof frame; 12. Green plant culture tube; 13. Collecting water pipe; 14. Liquid replenishing pipe; 2. Circulating water pipe; 21. Circulating water pump; 22. Liquid storage tank; 3. High-pressure atomizing water pipe; 31. Atomizing nozzle; 32. High-pressure water pump; 33. Water replenishing pipe; 4. Servo motor; 5. Lifting drive rope; 51. Suspension hook. DETAILED DESCRIPTION
[0029] The technical solutions in the embodiments of the utility model will be clearly and completely described below in conjunction with the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all of the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by ordinary technicians in this field without making creative work are within the scope of protection of the utility model.
[0030] Reference Figure 1-Figure 8A landscape gallery capable of humidifying and cooling comprises an adjustable gallery 1, a cooling adjustment mechanism for sunshade adjustment is arranged on the adjustable gallery 1, and an air conditioning mechanism for humidity adjustment is arranged below the cooling adjustment mechanism;
[0031] It should be noted that: in the present invention, the adjustable gallery 1 is composed of two parts: an arc-top gallery frame 11 and a support column. A seat for tourists to rest is arranged at the bottom of the gallery frame 11. This is a conventional setting of existing landscape gallery frames. When the basic setting of the adjustable gallery 1 is involved in the subsequent description, it will not be repeated.
[0032] Based on the above, in the present invention, the green plants proposed are heat-resistant plants that can withstand sunlight in a high temperature environment. They are existing discovered plants and will not be described in detail in the subsequent description of the plants cultivated in the green plant cultivation tube 12.
[0033] like Figure 1 and Figure 2 As shown, the cooling and regulating mechanism includes a gallery frame 11 fixedly mounted on the adjustable gallery frame 1, a green plant cultivation cylinder 12 is slidably connected to the gallery frame 11 through a cultivation groove, sunshade green plants are cultivated inside the green plant cultivation cylinder 12, and a circulating water pipe 2 is fixedly connected inside the gallery frame 11, and the circulating water pipe 2 is connected to a liquid storage tank 22 symmetrically arranged about the adjustable gallery frame 1 through a circulating water pump 21;
[0034] Furthermore, a driving mechanism is provided at the bottom of the green plant cultivation cylinder 12, and the driving mechanism includes a servo motor 4 fixedly mounted on the adjustable gallery 1, and the output shaft of the servo motor 4 is connected to a lifting driving rope 5, and the lifting driving rope 5 is suspended at the bottom of the gallery roof frame 11 through a hanging hook 51, so that when the sunshade capacity of the landscape gallery frame needs to be adjusted, the lifting driving rope 5 can be controlled by the servo motor 4 to be straightened and relaxed to control the height of the green plant cultivation cylinder 12, thereby adjusting the sunshade capacity of the green plants on the gallery roof and preliminarily adjusting the cooling capacity of the gallery frame;
[0035] Furthermore, the top of the circulating water pipe 2 is fitted with the gallery roof frame 11, the cross section of the liquid storage tank 22 is set to be rectangular, and the top of the liquid storage tank 22 is connected to a liquid injection pipe to replenish the liquid in the liquid storage tank 22, so that during the day when the temperature is high, the low-temperature liquid in the liquid storage tank 22 can be pumped to the other side through the circulating water pipe 2 set on the gallery roof frame 11 through the circulating water pump 21, bringing the heat on the gallery roof frame 11, thereby achieving the purpose of cooling the gallery sunshade environment;
[0036] It should be noted that: by planting green plants on the adjustable gallery 1, when the intensity of sunlight is high, the green plant leaves can provide shade for the people resting at the bottom of the gallery. At the same time, when the temperature is high, the circulating water pump 21 can be started to exchange the low-temperature liquid in the liquid storage tank 22 with the high-temperature liquid in the circulating water pipe 2 on the gallery roof frame 11, thereby reducing the ambient temperature of the gallery shade area, providing cooling and sunshade for the visitors at the bottom of the gallery, and providing cooling services for the green plants planted on the gallery, which is conducive to the better growth of the green plants and improves the sunshade and cooling capacity of the gallery.
[0037] The further benefit of adopting the above method is that when the ambient temperature drops to the point where shading is not required, the servo motor 4 is started, and the lifting drive rope 5 is controlled to be in a straight state, which will drive the green plant cultivation cylinder 12 to rise, and lift the plants cultivated in the green plant cultivation cylinder 12, thereby expanding the growth space between two adjacent green plant cultivation cylinders 12, reducing the growth density between each other, and providing a better growth environment for the plants;
[0038] Based on the above, when the ambient temperature rises to the point where shading is required, the servo motor 4 is started, and the lifting drive rope 5 is controlled to be in a relaxed state. At this time, the green plant cultivation tube 12 descends under the action of gravity, thereby narrowing the gap between two adjacent green plant cultivation tubes 12, increasing the shading area, and improving the ability to shade the bottom of the pergola, thereby being able to meet the growth needs of plants while also improving the shading and cooling capabilities of the pergola.
[0039] like Figure 2 and Figures 4 to 7 As shown, the air conditioning mechanism includes a high-pressure atomizing water pipe 3 arranged above the circulating water pipe 2, the high-pressure atomizing water pipe 3 is connected to an atomizing nozzle 31, a temperature control component is arranged in the high-pressure atomizing water pipe 3, the temperature control component controls the atomizing nozzle 31 through an electromagnetic valve, the high-pressure atomizing water pipe 3 is connected to a water supply pipe 33 through a high-pressure water pump 32, the temperature control component is composed of a temperature sensor and an industrial computer, the temperature sensor is arranged in the high-pressure atomizing water pipe 3, and the industrial computer is electrically connected to the electromagnetic valve;
[0040] Furthermore, the atomizing nozzle 31 is arranged in an inclined shape, and the atomizing nozzle 31 is symmetrically arranged on the upper and lower sides of the high-pressure atomizing water pipe 3;
[0041] It should be noted that: when the ambient temperature is higher than the high temperature threshold set by the temperature sensor, a high temperature signal will be transmitted to the industrial computer, and the solenoid valve and the circulating water pump 21 will be started by the industrial computer to connect the water inlet of the atomizing nozzle 31, so that water is sprayed out from the nozzle in the form of droplets, and the droplets are vaporized in the air, and the heat of the nozzle spray and the surrounding environment of the water pipe is quickly absorbed through the alternation of hot and cold water flow in the circulating water pipe 2, so as to achieve the purpose of cooling the gallery;
[0042] A further advantage of adopting the above method is that two groups of atomizing nozzles 31 are provided, one group is located at the top of the high-pressure atomizing water pipe 3, and can spray to the environment on the top of the green plants to provide cooling and humidifying services for the green plants, and one group is located at the bottom of the high-pressure atomizing water pipe 3, and can spray to the environment at the bottom of the corridor to provide humidifying and cooling services for resting tourists;
[0043] Based on the above, Figure 1 and Figure 8 In the embodiment, the water collecting pipe 13 is provided with a stable rotation hole at the atomizing nozzle 31 located below, which can provide a stable limit for the rotation of the atomizing nozzle 31. Meanwhile, the diameter of the atomizing nozzle 31 is smaller than the inner diameter of the water collecting pipe 13, which will not affect the liquid circulation in the water collecting pipe 13.
[0044] In addition, during the actual installation and construction of the pergola, in order to reduce the overall assembly difficulty and increase the liquid storage space in the collecting water pipe 13, the collecting water pipe 13 can also be installed in a staggered manner with the atomizing nozzle 31, that is, the atomizing nozzle 31 located below can be set between two adjacent collecting water pipes 13. At this time, the remaining components used in conjunction with the collecting water pipe 13, such as the green plant culture tube 12, will adaptively adjust the setting position and still be used in conjunction with the collecting water pipe 13.
[0045] like Figure 1 , Figure 2 and Figure 8 As shown, a water replenishment mechanism is also provided on the gallery roof frame 11, and the water replenishment mechanism includes a water collecting pipe 13 fixedly connected to the gallery roof frame 11, and the water collecting pipe 13 is fixedly connected to a liquid replenishment pipe 14;
[0046] Furthermore, a lifting limit groove is provided at the bottom of the green plant cultivation cylinder 12, and a liquid replenishing hole is provided on the side wall of the green plant cultivation cylinder 12, which is distributed in a rotationally symmetrical manner;
[0047] It should be noted that: when there is no need to improve the cooling capacity of the gallery, the servo motor 4 drives the lifting driving rope 5 to relax, and the green plant cultivation cylinder 12 will descend. At this time, after the liquid replenishment hole is connected with the collecting water pipe 13, the water in the collecting water pipe 13 can flow into the green plant cultivation cylinder 12, providing the plants in the green plant cultivation cylinder 12 with the water and nutrients required for growth;
[0048] The further advantage of adopting the above method is that the water collecting pipe 13 and the gallery frame 11 are arranged perpendicular to each other, and the setting position of the water collecting pipe 13 is adapted to the setting position of the green plant cultivation tube 12. Figure 7 and Figure 8 As shown, the green plant cultivation cylinder 12 is provided with upper and lower parts with different diameters, and the diameter of the upper part is adapted to the inner diameter of the water collecting pipe 13, and the diameter of the lower part is smaller than the inner diameter of the water collecting pipe 13, so that when replenishing water to the water collecting pipe 13, it is only necessary to raise the green plant cultivation cylinder 12 and make the lower part contact with the water collecting pipe 13 to complete the task;
[0049] Based on the above, the sliding connection between the green plant cultivation tube 12 and the gallery frame 11 adopts a sealed sliding form, so that when the water is replenished by the water collection pipe 13, it will not flow out from the gallery frame 11, and the operation of replenishing water cannot be completed;
[0050] When it is necessary to provide nutrients to the green plant cultivation cylinder 12, liquid fertilizers are only injected into the liquid replenishing pipes 14 at different heights to meet the growth needs of the green plant cultivation cylinders 12 set at the same height;
[0051] Based on the above, the above-mentioned water replenishment and fertilization process is often carried out at night. At this time, the servo motor 4 is controlled separately to make the green plant cultivation tube 12 descend, so that the sunshade green plants descend to the water replenishment height, and after a period of time, the servo motor 4 is driven in reverse to drive the green plant cultivation tube 12 to rise, ending its nutrient replenishment process. At the same time, through the collection water pipe 13 and the corridor roof frame 11, the heat in the collection water pipe 13 during the day can be taken away through the circulating water pipe 2, providing a better growth environment for the sunshade green plants.
[0052] Working principle:
[0053] When the utility model is in use, green plants are planted on the adjustable gallery 1. When the intensity of sunlight is high, the green plant leaves can provide shade for people resting at the bottom of the gallery. At the same time, when the temperature is high, the circulating water pump 21 can be started to exchange the low-temperature liquid in the liquid storage tank 22 with the high-temperature liquid in the circulating water pipe 2 on the gallery roof frame 11, thereby reducing the ambient temperature of the gallery shade area. While providing cooling and sunshade for tourists at the bottom of the gallery, it can also provide cooling services for the green plants planted on the gallery, which is conducive to better growth of green plants and improves the sunshade and cooling capacity of the gallery.
[0054] When the ambient temperature drops to a point where shading is not required, the servo motor 4 is started, and the lifting drive rope 5 is controlled to be in a stretched state, which drives the green plant cultivation cylinder 12 to rise, and lifts the plants cultivated in the green plant cultivation cylinder 12, thereby expanding the growth space between two adjacent green plant cultivation cylinders 12, reducing the growth density between each other, and providing a better growth environment for the plants;
[0055] When the ambient temperature is higher than the high temperature threshold set by the temperature sensor, a high temperature signal will be transmitted to the industrial computer, and the solenoid valve and the circulating water pump 21 will be started by the industrial computer to connect the water inlet of the atomizing nozzle 31, so that water will be sprayed out from the nozzle in the form of droplets, and the droplets will be vaporized in the air. In addition, the heat of the nozzle spray and the surrounding environment of the water pipe will be quickly absorbed through the alternation of hot and cold water flow in the circulating water pipe 2, so as to achieve the purpose of cooling the gallery.
[0056] Based on the above, when there is no need to improve the cooling capacity of the gallery, the green plant cultivation cylinder 12 will descend after the lifting driving rope 5 is relaxed by the servo motor 4. At this time, after the liquid replenishment hole is connected with the collecting water pipe 13, the water in the collecting water pipe 13 can flow into the green plant cultivation cylinder 12, providing the plants in the green plant cultivation cylinder 12 with the water and nutrients required for growth;
[0057] Based on the above, the water replenishment and fertilization process is often carried out at night. At this time, the servo motor 4 is controlled separately to make the green plant cultivation tube 12 descend, so that the sunshade green plants descend to the water replenishment height, and after a period of time, the servo motor 4 is driven in reverse to drive the green plant cultivation tube 12 to rise, ending its nutrient replenishment process. At the same time, through the collection water pipe 13 and the corridor roof frame 11, the heat in the collection water pipe 13 during the day can be taken away through the circulating water pipe 2, providing a better growth environment for the sunshade green plants.
[0058] The above description is only a preferred specific implementation manner of the present invention, but the protection scope of the present invention is not limited thereto. Any technician familiar with the technical field can make equivalent replacements or changes within the technical scope disclosed by the present invention according to the technical scheme and the utility model concept of the present invention, which should be covered by the protection scope of the present invention.
Claims
1. A landscape gallery capable of humidifying and cooling, comprising an adjustable gallery (1), characterized in that: The adjustable gallery (1) is provided with a cooling adjustment mechanism for sunshade adjustment, and an air conditioning mechanism for humidity adjustment is provided below the cooling adjustment mechanism; The temperature reduction and adjustment mechanism comprises a gallery frame (11) fixedly mounted on the adjustable gallery frame (1), a green plant cultivation cylinder (12) being slidably connected to the gallery frame (11) via a cultivation trough, sunshade green plants being cultivated inside the green plant cultivation cylinder (12), a circulating water pipe (2) being fixedly connected inside the gallery frame (11), and the circulating water pipe (2) being connected to a liquid storage tank (22) symmetrically arranged about the adjustable gallery frame (1) via a circulating water pump (21); The air conditioning mechanism comprises a high-pressure atomizing water pipe (3) arranged above the circulating water pipe (2); the high-pressure atomizing water pipe (3) is connected to an atomizing nozzle (31); a temperature control component is arranged in the high-pressure atomizing water pipe (3); the temperature control component controls the atomizing nozzle (31) via a solenoid valve; and the high-pressure atomizing water pipe (3) is connected to a water supply pipe (33) via a high-pressure water pump (32).
2. A landscape gallery capable of humidifying and cooling according to claim 1, characterized in that: A driving mechanism is provided at the bottom of the green plant cultivation cylinder (12), the driving mechanism comprising a servo motor (4) fixedly mounted on the adjustable gallery frame (1), the output shaft of the servo motor (4) being drivingly connected to a lifting driving rope (5), the lifting driving rope (5) being suspended at the bottom of the gallery roof frame (11) via a suspension hook (51).
3. A landscape gallery capable of humidifying and cooling according to claim 2, characterized in that: The bottom of the green plant cultivation cylinder (12) is provided with a lifting limit groove, and the side wall of the green plant cultivation cylinder (12) is provided with liquid replenishing holes, which are distributed in a rotationally symmetrical manner.
4. The landscape gallery capable of humidifying and cooling according to claim 1, characterized in that: The top of the circulating water pipe (2) is in contact with the gallery roof frame (11); the cross section of the liquid storage tank (22) is arranged to be rectangular; and the top of the liquid storage tank (22) is connected to a liquid injection pipe for replenishing the liquid in the liquid storage tank (22).
5. The landscape gallery capable of humidifying and cooling according to claim 1, characterized in that: The atomizing nozzle (31) is arranged in an inclined shape, and the atomizing nozzle (31) is symmetrically arranged on the upper and lower sides of the high-pressure atomizing water pipe (3).
6. The landscape gallery capable of humidifying and cooling according to claim 1, characterized in that: The temperature control component is composed of a temperature sensor and an industrial computer. The temperature sensor is arranged in a high-pressure atomizing water pipe (3), and the industrial computer is electrically connected to the solenoid valve.
7. The landscape gallery capable of humidifying and cooling according to claim 1, characterized in that: The gallery roof frame (11) is also provided with a water replenishment mechanism, the water replenishment mechanism comprising a water collection pipe (13) fixedly connected to the gallery roof frame (11), the water collection pipe (13) being fixedly connected to a liquid replenishment pipe (14).