Garden folding type academic communication center building structure

By designing a stacked garden structure in the Academic Exchange Center building, including green planting modules, water collection tanks and spray components, the problem of monotonymism is solved, the green area and comfort are improved, and the recycling of water resources is realized.

CN222962590UActive Publication Date: 2025-06-10上海兴筑建筑设计有限公司
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Patent Information

Application Number
CN202420828343.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-04-22
Publication Date
2025-06-10
Estimated Expiration
2034-04-22

AI Technical Summary

Technical Problem

The existing academic exchange center has a monotonous environment and lacks greening, which affects the mood of communicators and academic collisions.

Method used

Design a stacked academic exchange center building structure, including green plant modules, water collection tanks, water storage tanks and spray components, and realize the recycling of water resources by collecting rainwater and using green plant racks.

Benefits of technology

It has improved the green area and diversity of the academic exchange center, provided a comfortable environment, enhanced the effect of academic exchanges, and realized the rational recycling of water resources.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of academic communication centers, and discloses a garden folding type academic communication center building structure which comprises a foundation, an academic communication building arranged on the top of the foundation and a reservoir arranged on the foundation. According to the academic communication center with the stacked garden concept, the green plant frame and the water collecting tank are arranged, so that the green area of the academic communication building is increased through the green plant frame, rainwater in the nature can be collected through the water collecting tank and the water storage tank, and the collected rainwater is discharged into the water storage pool through the water collecting pipe network to be collected; the spraying assembly can be used for irrigating plants in the green plant frame and the green plant groove with collected rainwater, so that rainwater in the nature is recycled, water resources are reasonably recycled, the greening area of the academic communication building is increased through the plants in the green plant frame and the green plant groove, the greening diversity of the academic communication building is improved, and the ecological environment of the academic communication building is improved. And the academic communicator can carry out academic communication in a comfortable environment.
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Description

Technical Field

[0001] The utility model relates to the technical field of academic exchange centers, and particularly relates to a stacked garden-style architectural structure of an academic exchange center. Background Art

[0002] An academic exchange center is also called an academic exchange hall or an academic exchange building. It is a place where multiple schools can communicate and study together. The academic exchange center is equipped with a drainage system, a ventilation system, a parking garage, academic exchange rooms, a cafeteria, and a series of other living facilities and places, which can provide for the food, clothing, housing, and short-term residence of academic communicators.

[0003] In the prior art, the environment of the academic exchange center is relatively monotonous. Only the green plants around the academic exchange center are used as the guarantee for the exchange environment. Conducting academic exchanges in a monotonous environment will affect the mood of academic communicators and is not likely to trigger the spark of academic collision. Therefore, a stacked garden-style architectural structure of an academic exchange center is proposed to solve the above problems. Content of the Utility Model

[0004] Aiming at the deficiencies of the prior art, the utility model provides a stacked garden-style architectural structure of an academic exchange center, which has the advantages of good environment and recycling of water resources, and solves the problems that the environment of the academic exchange center is relatively monotonous, only the green plants around the academic exchange center are used as the guarantee for the exchange environment, conducting academic exchanges in a monotonous environment will affect the mood of academic communicators, and it is not easy to trigger the spark of academic collision.

[0005] In summary, the utility model provides the following technical solution: A stacked garden-style architectural structure of an academic exchange center, including a foundation, an academic exchange building arranged on the top of the foundation, a water storage tank arranged on the foundation, and a green plant module arranged on the academic exchange building;

[0006] The green plant module includes a green plant trough fixedly installed on the academic exchange building, a water storage trough fixedly installed on the academic exchange building and located on the right side of the green plant trough, a water collection tank fixedly installed on the top of the academic exchange building and used for collecting rainwater, a water collection pipe network arranged on the academic exchange building and used for connecting the water storage trough and the water collection tank, a water level sensor fixedly installed inside the water collection tank, a water pumping component arranged inside the water collection tank and used for pumping the rainwater inside the water storage trough, green plant racks fixedly installed on the left and right sides of the academic exchange building, and an irrigation unit arranged on one side of the water collection tank;

[0007] The irrigation unit includes a water pumping structure arranged on one side of the water collection tank and used for pumping the rainwater inside the water collection tank, a spraying component arranged at the bottom of the left green plant rack and connected with the water pumping structure, and a communication pipe network arranged in the water storage trough and used for communicating the water storage trough and the water storage tank.

[0008] By adopting the above technical solution, the utility model realizes increasing the greening area of the academic exchange building by using the green plant stand. Moreover, rainwater in nature can be collected through the water collection tank and the water storage tank, and the collected rainwater can be discharged into the reservoir through the water collection pipe network for collection. In addition, the collected rainwater can be used to irrigate the plants in the green plant stand and the green plant trough by using the spraying component, so as to recycle the rainwater in nature, achieve the reasonable recycling of water resources, and increase the greening area of the academic exchange building by using the plants in the green plant stand and the green plant trough, improve the diversity of the greening of the academic exchange building, and enable academic communicators to conduct academic exchanges in a more comfortable environment.

[0009] Furthermore, the spraying component includes a mounting hoop fixedly installed at the bottom of the green plant stand, a connecting water pipe fixedly installed inside the mounting hoop, and a nozzle fixedly installed at the bottom of the connecting water pipe for irrigating plants.

[0010] The beneficial effect of adopting the above further solution is that it is convenient to irrigate the planted green plants.

[0011] Furthermore, the academic exchange building is built on the top of the foundation, the reservoir is opened inside the foundation, and a garage is built at the bottom of the academic exchange building.

[0012] The beneficial effect of adopting the above further solution is that it is convenient to store the collected rainwater and park vehicles.

[0013] Furthermore, the number of both the green plant troughs and the water storage troughs is three, and the water collection pipe network sequentially communicates with the three water storage troughs and penetrates into the interior of the water collection tank.

[0014] The beneficial effect of adopting the above further solution is that it is convenient to collect rainwater in nature.

[0015] Furthermore, the water pumping component includes a water pump and a water pumping pipeline. The water pump is fixedly installed inside the water collection tank, the water pumping pipeline is fixedly connected to one end of the water pump, and one end of the water pumping pipeline penetrates through the water collection tank and extends into the interior of the reservoir.

[0016] The beneficial effect of adopting the above further solution is that it is convenient to timely supplement the rainwater inside the water collection tank.

[0017] Furthermore, the green plant stand includes a connecting frame and a plurality of support rods. The connecting frame is fixedly connected to the side surface of the academic exchange building, the support rods are fixedly installed between the front and rear side walls of the inner cavity of the connecting frame, and the number of the green plant stands is six.

[0018] The beneficial effect of adopting the above further solution is that it is convenient to plant more green plants on the academic exchange building.

[0019] Further, the pumping structure includes a spray pump and a spray pipeline. The spray pump is fixedly installed on the left side of the water collection tank. The top of the spray pump is fixedly connected to a water inlet pipeline that penetrates and extends into the interior of the water collection tank. The spray pipeline connects the spray pump and the connecting water pipe.

[0020] The beneficial effect of adopting the above further solution is that it is convenient to pump out the rainwater inside the water collection tank and use it for watering plants.

[0021] Further, the connecting pipe network includes a water outlet pipeline and a control valve. One end of the water outlet pipeline penetrates into the interior of the lowest water storage tank, and the other end of the water outlet pipeline penetrates into the interior of the water storage pool. The control valve is fixedly installed on the water outlet pipeline.

[0022] The beneficial effect of adopting the above further solution is that it is convenient to drain all the collected rainwater into the interior of the water storage pool.

[0023] Compared with the prior art, the technical solution of the present application has the following beneficial effects:

[0024] For this stacked garden-style academic exchange center building structure, by setting up a green plant rack and a water collection tank, the greening area of the academic exchange building is increased by using the green plant rack. Moreover, rainwater in nature can be collected through the water collection tank and the water storage tank, and the collected rainwater can be drained into the water storage pool through the water collection pipe network for collection. Also, the collected rainwater can be used to water the plants in the green plant rack and the green plant trough through the spray assembly, so as to achieve the recycling of rainwater in nature, achieve the reasonable recycling of water resources, and increase the greening area of the academic exchange building by using the plants in the green plant rack and the green plant trough, improve the diversity of the greening of the academic exchange building, enabling academic exchanges to be carried out in a more comfortable environment and enhancing the practicality of this stacked garden-style academic exchange center building structure. BRIEF DESCRIPTION OF THE DRAWINGS

[0025] Figure 1 It is a schematic structural diagram of the present utility model;

[0026] Figure 2 For the present utility model Figure 1 The enlarged structural schematic diagram of part A in it;

[0027] Figure 3 For the present utility model Figure 1 The enlarged structural schematic diagram of part B in it.

[0028] Description of the reference numerals:

[0029] 1. Foundation; 2. Academic Exchange Building; 3. Reservoir; 41. Green Planting Trough; 42. Water Storage Trough; 43. Rainwater Collection Tank; 44. Water Collection Pipe Network; 45. Water Level Sensor; 46. Water Pumping Assembly; 47. Green Planting Rack; 48. Water Pumping Structure; 49. Spraying Assembly; 50. Connecting Pipe Network. Detailed Embodiment

[0030] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. Based on the embodiments in the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present utility model.

[0031] Please refer to Figures 1-3 , a stacked garden-style academic exchange center building structure in this embodiment, including a foundation 1, an academic exchange building 2 arranged on the top of the foundation 1, a reservoir 3 arranged on the foundation 1, a green plant module arranged on the academic exchange building 2. The academic exchange building 2 is built on the top of the foundation 1, the reservoir 3 is opened inside the foundation 1, and a garage is built at the bottom of the academic exchange building 2.

[0032] Please refer to Figures 1-3 , the green plant module includes a green planting trough 41 fixedly installed on the academic exchange building 2, a water storage trough 42 fixedly installed on the academic exchange building 2 and located on the right side of the green planting trough 41, a rainwater collection tank 43 fixedly installed on the top of the academic exchange building 2 and used for collecting rainwater, a water collection pipe network 44 arranged on the academic exchange building 2 and used for connecting the water storage trough 42 and the rainwater collection tank 43, a water level sensor 45 fixedly installed inside the rainwater collection tank 43, a water pumping assembly 46 arranged inside the rainwater collection tank 43 and used for pumping the rainwater inside the water storage trough 42, green planting racks 47 fixedly installed on the left and right sides of the academic exchange building 2, and an irrigation unit arranged on one side of the rainwater collection tank 43.

[0033] Among them, the spraying assembly 49 includes a mounting hoop fixedly installed at the bottom of the green planting rack 47, a connecting water pipe fixedly installed inside the mounting hoop, and a nozzle fixedly installed at the bottom of the connecting water pipe and used for irrigating plants, thereby facilitating the irrigation of the planted plants with rainwater.

[0034] In addition, the number of the green planting trough 41 and the water storage trough 42 is three each. The water collection pipe network 44 sequentially communicates with the three water storage troughs 42 and penetrates into the inside of the rainwater collection tank 43, facilitating the collection of the rainwater collected by the three water storage troughs 42 in one place.

[0035] It should be noted that the pumping assembly 46 includes a water pump and a pumping pipeline. The water pump is fixedly installed inside the water collection tank 43. One end of the pumping pipeline is fixedly connected to the water pump, and one end of the pumping pipeline penetrates through the water collection tank 43 and extends into the inside of the reservoir 3, so as to facilitate pumping the water in the reservoir 3 into the water collection tank 43.

[0036] Moreover, the green plant stand 47 includes a connecting frame and a plurality of support rods. The connecting frame is fixedly connected to the side surface of the academic exchange building 2. The support rods are fixedly installed between the front and rear side walls of the inner cavity of the connecting frame. The number of green plant stands 47 is six, which is convenient for planting vine-like green plants on the green plant stands 47.

[0037] By adopting the above technical solution, it is realized to plant a variety of plants by using the green plant trough 41 and the green plant stand 47, so as to increase the greening area of the academic exchange building 2. The rainwater in nature is collected through the water storage trough 42 and the water collection tank 43, and the water in the reservoir 3 can be pumped into the water collection tank 43 by using the pumping assembly 46 to ensure that the rainwater inside the water collection tank 43 is sufficient for watering plants.

[0038] Please refer to Figures 1-3 , the irrigation unit includes a pumping structure 48 arranged on one side of the water collection tank 43 and used for pumping the rainwater inside the water collection tank 43, a spraying assembly 49 arranged at the bottom of the left green plant stand 47 and connected to the pumping structure 48, and a communication pipe network 50 arranged in the water storage trough 42 and used for communicating the water storage trough 42 and the reservoir 3.

[0039] Among them, the pumping structure 48 includes a spraying pump and a spraying pipeline. The spraying pump is fixedly installed on the left side of the water collection tank 43. The top of the spraying pump is fixedly connected with a water inlet pipeline that penetrates through and extends into the inside of the water collection tank 43. The spraying pipeline communicates the spraying pump and the connecting water pipe, which is convenient for pumping the rainwater inside the water collection tank 43 for watering plants.

[0040] In addition, the communication pipe network 50 includes a water outlet pipeline and a control valve. One end of the water outlet pipeline penetrates into the inside of the lowest water storage trough 42, and the other end of the water outlet pipeline penetrates into the inside of the reservoir 3. The control valve is fixedly installed on the water outlet pipeline, which is convenient for discharging the collected rainwater into the inside of the reservoir 3.

[0041] By adopting the above technical solution, it is realized to collect the rainwater into the reservoir 3 through the communication pipe network 50, and the rainwater in the water collection tank 43 can be pumped by the pumping structure 48 in the water collection tank 43, and the rainwater is sprayed onto the plants in the green plant trough 41 and the green plant stand 47 through the spraying assembly 49, so as to ensure the water demand for planting plants.

[0042] The working principle of the above embodiment is:

[0043] When in use, the stacked garden-style academic exchange center building structure utilizes the green plant trough 41 and the green plant shelf 47 to plant a variety of plants, so as to increase the greening area of the academic exchange building 2. The rainwater in nature is collected through the water storage tank 42 and the water collection tank 43, and then the rainwater is collected into the water storage pool 3 through the connecting pipe network 50. Moreover, the pumping structure 48 in the water collection tank 43 can be used to pump the rainwater in the water collection tank 43, and the rainwater is sprayed onto the plants on the green plant trough 41 and the green plant shelf 47 through the spraying component 49, so as to ensure the water demand for planting plants. In addition, the pumping component 46 can be used to pump the water in the water storage pool 3 into the water collection tank 43 to ensure that the rainwater inside the water collection tank 43 is sufficient for plant irrigation.

Claims

1. A stacked garden-style academic exchange center building structure, characterized by: It comprises a foundation (1), an academic exchange building (2) arranged on the top of the foundation (1), a water reservoir (3) arranged on the foundation (1), and a green plant module arranged on the academic exchange building (2); The green plant module comprises a green plant trough (41) fixedly mounted on the academic exchange building (2), a water storage tank (42) fixedly mounted on the academic exchange building (2) and located on the right side of the green plant trough (41), a water collection tank (43) fixedly mounted on the top of the academic exchange building (2) and used to collect rainwater, a water collection pipe network (44) arranged on the academic exchange building (2) and used to connect the water storage tank (42) and the water collection tank (43), a water level sensor (45) fixedly mounted inside the water collection tank (43), a pumping assembly (46) arranged inside the water collection tank (43) and used to extract rainwater from the water storage tank (42), a green plant rack (47) fixedly mounted on the left and right sides of the academic exchange building (2), and an irrigation unit arranged on one side of the water collection tank (43); The irrigation unit comprises a pumping structure (48) disposed on one side of the water collecting tank (43) and used to extract rainwater from the water collecting tank (43), a spray assembly (49) disposed at the bottom of the green plant rack (47) on the left side and connected to the pumping structure (48), and a connecting pipe network (50) disposed in the water storage tank (42) and used to connect the water storage tank (42) and the water reservoir (3).

2. The stacked garden-style academic exchange center building structure according to claim 1 is characterized by: The spray assembly (49) comprises a mounting hoop fixedly mounted on the bottom of the green plant rack (47), a connecting water pipe fixedly mounted inside the mounting hoop, and a spray head fixedly mounted on the bottom of the connecting water pipe and used for irrigating plants.

3. The stacked garden-style academic exchange center building structure according to claim 1 is characterized by: The academic exchange building (2) is constructed on the top of the foundation (1), the water reservoir (3) is opened inside the foundation (1), and a garage is constructed at the bottom of the academic exchange building (2).

4. The stacked garden-style academic exchange center building structure according to claim 1 is characterized by: The number of the greening troughs (41) and the water storage troughs (42) are both three, and the water collection pipe network (44) is connected to the three water storage troughs (42) in sequence and penetrates into the interior of the water collection tank (43).

5. The stacked garden-style academic exchange center building structure according to claim 1 is characterized by: The pumping assembly (46) comprises a pump and a pumping pipe. The pump is fixedly mounted inside the water collecting tank (43). The pumping pipe is fixedly connected to one end of the pump. One end of the pumping pipe passes through the water collecting tank (43) and extends to the inside of the water reservoir (3).

6. The stacked garden-style academic exchange center building structure according to claim 1 is characterized by: The green plant rack (47) comprises a connection frame and a plurality of support rods. The connection frame is fixedly connected to the side of the academic exchange building (2). The support rods are fixedly installed between the front and rear side walls of the inner cavity of the connection frame. The number of the green plant racks (47) is six.

7. The stacked garden-style academic exchange center building structure according to claim 2 is characterized by: The pumping structure (48) comprises a spray pump and a spray pipe. The spray pump is fixedly installed on the left side of the water collecting tank (43). The top of the spray pump is fixedly connected to a water inlet pipe having one end passing through and extending into the interior of the water collecting tank (43). The spray pipe is connected to the spray pump and the connecting water pipe.

8. The stacked garden-style academic exchange center building structure according to claim 1 is characterized by: The connecting pipe network (50) comprises a water outlet pipe and a control valve, one end of the water outlet pipe penetrates into the interior of the lowest water storage tank (42), the other end of the water outlet pipe penetrates into the interior of the water storage tank (3), and the control valve is fixedly mounted on the water outlet pipe.