A multi-industry integrated plant

CN121228903BActive Publication Date: 2026-08-11国舜绿建科技有限公司 +1
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-09-30
Publication Date
2026-08-11

AI Technical Summary

Technical Problem

当前出现了大棚观光旅游的一三产业结合建筑布局、天空农场的一三产业布局,天空农场虽然是屋顶绿化的一种形式,但它又有别于传统的屋顶绿化,天空农场将割裂的都市与农村重新联系起来,将农业引入公共的城市空间,被赋予了社会、经济、生产、互动等一系列特性,开创了农业与城市空间整合的一种新模式,但是上述建筑布局仅为第一产业和第三产业的融合,缺少第二产业,未有三个产业协调发展的新业态尝试

Benefits of technology

[0017]本发明的多产业融合的厂房,在工业厂房本体的屋顶上布置温室和游览娱乐区,并且设有第一参观通道和第二参观通道,实现了第一产业、第二产业和第三产业的融合布局,同时,通过风机、外侧竖向通道、内侧竖向通道、过滤机构、气罐的设置,实现了工业厂房本体的生产线生产时产生的二氧化碳过滤后引导至温室用于农业,形成了工业土地增值农业空间、工业反哺农业的新模式,形成了利用非耕地资源创造农业发展空间的新模式。

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Abstract

This invention relates to a multi-industry integrated factory building, comprising an industrial factory body with a production line inside. The roof of the industrial factory body features a greenhouse and a recreational area, with a first visitor access connecting the greenhouse and the recreational area. A second visitor access is located within the industrial factory body, and an elevator connects the first and second visitor access. A fan is located around the carbon dioxide generation area of ​​the industrial factory body, connected to an air duct. The air duct connects to an outer vertical channel located between the floor and roof of the industrial factory body. An inner vertical channel is located inside the outer vertical channel, communicating with the interior space of the outer vertical channel via an air inlet at its bottom. The inner vertical channel is equipped with a filtration mechanism, and its top is connected to a gas tank via a gas pipeline. The gas tank is located inside the greenhouse, and its outlet is equipped with a valve. This invention integrates three industries.
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Description

Technical Field

[0001] This invention relates to the field of building technology, and more specifically to a multi-industry integrated factory building. Background Technology

[0002] The statements herein provide only background information in relation to this invention and do not necessarily constitute prior art.

[0003] Agriculture, processing and manufacturing, construction, and service industries are relatively isolated in physical space and develop independently. The primary industry is still traditional greenhouse cultivation on agricultural land, and the characteristics of modern facility agriculture's three-dimensional space technology have not been fully utilized. Currently, there are architectural layouts that combine primary and tertiary industries, such as greenhouse sightseeing tourism, and sky farms. Although sky farms are a form of rooftop greening, they are different from traditional rooftop greening. Sky farms reconnect the fragmented urban and rural areas, introduce agriculture into public urban spaces, and are endowed with a series of characteristics such as social, economic, production, and interaction, creating a new model for the integration of agriculture and urban space. However, the above-mentioned architectural layouts only integrate the primary and tertiary industries, lacking the secondary industry and failing to explore new business models for the coordinated development of the three industries. Summary of the Invention

[0004] In view of the shortcomings of existing technologies, the purpose of this invention is to provide a multi-industry integrated factory building that integrates primary, secondary and tertiary industries, forming a new model of industrial land value-added agricultural space and industry supporting agriculture.

[0005] To achieve the above objectives, the present invention is implemented through the following technical solution:

[0006] An embodiment of the present invention provides a multi-industry integrated factory building, including an industrial plant body with a production line inside. The roof of the industrial plant body is equipped with a greenhouse and a recreational area. A first visitor passage is provided between the greenhouse and the recreational area. A second visitor passage is provided inside the industrial plant body. An elevator is provided between the first and second visitor passages. A fan is provided around the carbon dioxide generation area of ​​the industrial plant body. The fan is connected to an air duct. The air duct is connected to an outer vertical channel located between the ground and the roof of the industrial plant body. An inner vertical channel is provided inside the outer vertical channel. The inner vertical channel is connected to the inner space of the outer vertical channel through an air inlet at the bottom. The inner vertical channel is equipped with a filtration mechanism. The top of the inner vertical channel is connected to a gas tank through a gas pipeline. The gas tank is located inside the greenhouse and its outlet is equipped with a valve.

[0007] Optionally, the roof of the industrial plant is also equipped with a solar photovoltaic area, which is fitted with solar photovoltaic panels.

[0008] Optionally, the industrial plant body corresponding to the greenhouse is provided with multiple structural reinforcing columns inside, which support and reinforce the roof area of ​​the industrial plant body corresponding to the greenhouse.

[0009] Optionally, the industrial plant body has a first production line area and a second production line area arranged side by side, a warehouse between the first production line area and the second production line area, a raw material area on one side of the area occupied by the first production line area, the second production line area and the warehouse, and production equipment arranged in the first production line area and the second production line area to form a production line.

[0010] Optionally, one side of the raw material area is a warehouse area for the first production line and the second production line, and the other side is an electric vehicle charging area equipped with charging equipment. Above the electric vehicle charging area is an office area equipped with office equipment.

[0011] Optionally, the second visitor passage is distributed along the outer edge of the first production line area and the raw material area.

[0012] Optionally, the second visitor access is a visitor corridor located above the interior space of the industrial plant, with an elevator connecting the visitor corridor to the ground of the industrial plant and the first visitor access.

[0013] Optionally, the filtration mechanism employs a multi-layered filtration membrane distributed along the axis of the inner vertical channel.

[0014] Optionally, a carbon dioxide concentration detection element is installed in the greenhouse. The carbon dioxide concentration detection element is connected to the control system, and the control system is connected to the valve at the gas outlet of the gas tank.

[0015] Optionally, the industrial plant body is also equipped with an underground ventilation system.

[0016] The beneficial effects of this invention are as follows:

[0017] The multi-industry integrated factory building of this invention arranges greenhouses and recreational areas on the roof of the industrial plant, and provides a first visitor passage and a second visitor passage, realizing the integrated layout of primary, secondary and tertiary industries. At the same time, through the setting of fans, outer vertical passages, inner vertical passages, filtration mechanisms and gas tanks, the carbon dioxide generated during the production line of the industrial plant is filtered and guided to the greenhouse for agriculture, forming a new model of industrial land adding value to agricultural space and industry supporting agriculture, and forming a new model of creating agricultural development space by utilizing non-arable land resources. Attached Figure Description

[0018] The accompanying drawings, which form part of this invention, are used to provide a further understanding of the invention. The illustrative embodiments of the invention and their descriptions are used to explain the invention and do not constitute an improper limitation of the invention.

[0019] Figure 1 This is a schematic plan view of the roof of the industrial plant building in Embodiment 1 of the present invention;

[0020] Figure 2 This is a schematic plan view of the industrial plant body according to Embodiment 1 of the present invention;

[0021] Figure 3 This is a schematic diagram of the fan, duct, shaft, and gas tank in Embodiment 1 of the present invention.

[0022] The components include: 1. Greenhouse; 2. Visitor and entertainment area; 3. Solar photovoltaic area; 4. First visitor access route; 5. Second visitor access route; 6. Elevator; 7. First production line area; 8. Second production line area; 9. Warehouse area; 10. Raw material area; 11. Ancillary area; 12. Underground ventilation system; 13. Fan; 14. Air duct; 15. Shaft; 15-1. Outer vertical passage; 15-2. Inner vertical passage; 16. Ground; 17. Roof; 18. Carbon dioxide separation membrane; 19. Gas tank. Detailed Implementation

[0023] Example 1

[0024] This embodiment provides a multi-industry integrated factory, realizing the integration of primary, secondary, and tertiary industries. It involves improving existing industrial plants or constructing new plants, such as... Figures 1-2 As shown, the multi-industry integrated factory building includes an industrial plant body, which houses a production line for manufacturing industrial products for the secondary industry. The roof of the industrial plant body is equipped with a greenhouse 1 for growing crops. One side of the greenhouse 1 is equipped with a recreational area 2 containing entertainment equipment. The roof of the industrial plant body is also equipped with a solar photovoltaic area 3, which is fitted with solar photovoltaic panels to convert solar energy into electricity to power the production line, greenhouse 1, and recreational area 2 within the industrial plant body.

[0025] A first visitor passage 4 is provided between the greenhouse 1 and the recreational area 2, for visitors to visit the greenhouse 1 and enter the recreational area 2. A second visitor passage 5, corresponding to the first visitor passage 4, is provided within the industrial plant body. The second visitor passage 5 is used for visitors to visit the production line. The second visitor passage 5 is located at a set height in the upper part of the space within the industrial plant body, so that visitors can see the entire production line. Elevators 6 are provided between the first visitor passage 4, the second visitor passage 5, and the ground of the industrial plant body, so that visitors can easily enter the first visitor passage 4 or the second visitor passage 5 from the ground, and also easily enter the ground from the first visitor passage 4 or the second visitor passage 5.

[0026] In this embodiment, the industrial plant has a span of 300 meters, a depth of 180 meters, a height of 15 meters, and a building area of ​​54,000 square meters. The internal space of the industrial plant is divided into a first production line area 7, a second production line area 8, a warehouse area 9, and a raw material area 10.

[0027] The first production line area 7 and the second production line area 8 are arranged side by side. The warehouse area 9 is located between the first production line area 7 and the second production line area 8. The raw material area 10 is located on one side of the space occupied by the first production line area 7, the second production line area 8, and the warehouse area 9.

[0028] The first production line area 7 and the second production line area 8 are equipped with various equipment of the production line, which can be achieved using existing technology and will not be described in detail here. The warehouse area 9 is used to store finished industrial products, and the raw material area 10 is used to store raw materials used in the production line.

[0029] In this embodiment, the first production line area 7 has a width of 300 meters and a depth of 90 meters, the second production line area 8 has a width of 300 meters and a depth of 60 meters, and the building areas are 27,000 square meters and 18,000 square meters respectively. The warehouse area has a width of 300 meters and a depth of 30 meters, and the building area is 9,000 square meters.

[0030] The second visitor passage 5 is a visitor corridor, which is located on the upper part of the wall of the industrial plant and distributed along the edge of the first production line area 7 and the raw material area 10. Elevators 6 are provided between the two ends of the visitor corridor, the two ends of the first visitor passage 4 and the ground of the industrial plant.

[0031] One side of the raw material area 10 is the first production line area 7, the second production line area 8, and the warehouse area 9. The other side of the raw material area 10 is an auxiliary area 11, which includes an electric vehicle charging area and an office area. The electric vehicle charging area is equipped with multiple electric vehicle charging piles, and the office area is located above the electric vehicle charging area and is equipped with office equipment.

[0032] In this embodiment, the ancillary area 11 has a total building area of ​​5,400 square meters, divided into two floors with a floor height of 4.5 meters. The first floor is an electric vehicle charging area, and the second floor is an office area.

[0033] Furthermore, the addition of greenhouses to the roofs of traditional industrial plants results in insufficient structural strength. Therefore, in this embodiment, multiple structural reinforcement columns are installed inside the industrial plant body corresponding to the greenhouse to increase the load-bearing capacity of the roof.

[0034] When the industrial plant is a newly built plant, the number of structural reinforcement columns can be calculated in advance, and the structural reinforcement columns can be directly constructed during the plant construction.

[0035] When the industrial plant is an existing industrial plant, multiple structural reinforcement columns are added to the industrial plant area corresponding to greenhouse 1. The number and location of the structural reinforcement columns are sufficient to ensure that the load-bearing capacity of the roof of the industrial plant meets the requirements. This can be achieved using existing design methods and will not be described in detail here.

[0036] If the production equipment within the industrial plant hinders the installation of structural reinforcement columns, measures such as adding diagonal braces between the existing vertical columns and the roof or increasing the diameter of the vertical columns can be taken to ensure that the roof load-bearing capacity of the industrial plant meets the requirements.

[0037] Furthermore, the industrial plant body is also equipped with a duct ventilation system 12. The duct ventilation system 12 can be based on existing technology and will not be described in detail here. The duct ventilation system 12 is used to cool the interior of the industrial plant body.

[0038] The roof of the industrial plant is equipped with a greenhouse 1, a recreational area 2, and a solar photovoltaic area 3. The greenhouse 1 is 10,000 square meters, the solar photovoltaic area 3 is 40,000 square meters, and the recreational area 2 occupies 4,000 square meters. The height is determined according to the function. A first visitor passage 4 is provided between the greenhouse 1 and the recreational area 2, and between the recreational area 2 and the solar photovoltaic area 3.

[0039] Greenhouse 1 can be a modern agricultural smart greenhouse, and its specific structure will not be described in detail here.

[0040] During production, the production line generates a large amount of carbon dioxide gas. If the carbon dioxide gas is directly discharged from the industrial plant, it will cause a lot of waste and environmental pollution. However, carbon dioxide gas can be used for the growth of crops. Therefore, in this embodiment, the carbon dioxide gas from the production line is used to support agriculture.

[0041] Specifically:

[0042] like Figure 3 As shown, multiple fans 13 are installed around the workstations in the production line where carbon dioxide is generated, such as cutting and welding. One end of the fan 13 is connected to one end of the air duct 14, and the other end of the air duct 14 is connected to the shaft 15. The shaft 15 is located between the ground 16 and the greenhouse 1 on the roof 17 of the industrial plant body. The shaft 15 adopts a U-shaped structure, including an outer vertical channel 15-1 and an inner vertical channel 15-2 coaxially arranged inside the outer vertical channel 15-1.

[0043] The top of the outer vertical channel 15-1 is connected to the air outlet of multiple air ducts 14. The bottom of the inner vertical channel 15-2 is provided with multiple air inlets. The air inlets connect the internal space of the inner vertical channel 15-2 with the internal space of the outer vertical channel 15-1. Carbon dioxide gas introduced into the outer vertical channel 15-1 can enter the inner vertical channel 15-2 through the air inlets and flow upward along the inner vertical channel 15-2.

[0044] The inner vertical channel 15-2 is equipped with a filtration mechanism to filter the incoming gas, so that the carbon dioxide concentration meets the requirements.

[0045] In this embodiment, the carbon dioxide gas is filtered and collected using an existing membrane separation method. The carbon dioxide in the gas passing through the inner vertical channel 15-2 is separated by utilizing the different permeation rates of the gas through the membrane.

[0046] Therefore, the filtration mechanism employs multiple filter membranes distributed vertically along the inner vertical channel axis. The filter membranes are existing carbon dioxide separation membranes 18, which will not be described in detail here.

[0047] Multi-stage filtration is achieved through multiple layers of filter membranes, gradually increasing the concentration of carbon dioxide in the carbon dioxide-rich airflow until the gas reaches the concentration of carbon dioxide required for the greenhouse.

[0048] The top of the inner vertical channel 15-2 is connected to multiple gas cylinders 19 located inside the greenhouse 1 via gas pipelines. The gas cylinders 19 are equipped with valves at their outlets. When the valves are opened, carbon dioxide gas can be released into the greenhouse 1.

[0049] Preferably, the valve is an automatic valve that is connected to the control system of the intelligent greenhouse and can receive instructions from the control system to open and close.

[0050] Accordingly, a carbon dioxide concentration detection element is installed inside the greenhouse 1. The carbon dioxide concentration detection element can be an existing carbon dioxide concentration sensor, which is used to detect the carbon dioxide concentration in the greenhouse. The carbon dioxide concentration sensor is connected to the control system and can transmit the detected information to the control system.

[0051] When the control system receives a signal that the carbon dioxide content in the greenhouse is insufficient, it opens the valve at the outlet of the control gas cylinder 19, allowing the gas cylinder to supply carbon dioxide to the greenhouse until the gas concentration in the greenhouse reaches the most suitable concentration for crop growth.

[0052] In this embodiment, carbon dioxide-rich gas generated during cutting, welding, and other operations in the production line enters the vertical shaft 15 under the suction of a fan. It first flows downward in the outer vertical channel 15-1, then enters the inner vertical channel 15-2 through the air inlet, and then flows upward in the inner vertical channel 15-2. The carbon dioxide in the gas is separated step by step through multiple filter membranes to obtain gas that meets the carbon dioxide concentration requirements. This gas then enters the gas tank 19 for storage. When the carbon dioxide concentration sensor detects that the carbon dioxide concentration in the greenhouse 1 is too low, the valve at the outlet of the gas tank opens to release carbon dioxide gas until the carbon dioxide concentration in the greenhouse 1 reaches the most suitable requirements for crop growth.

[0053] The factory building in this embodiment has a greenhouse 1 and a recreational area 2 arranged on the roof of the industrial building, and is equipped with a first visitor passage 4 and a second visitor passage 5, realizing the integrated layout of primary, secondary and tertiary industries. At the same time, through the installation of fans 13, shafts 15, filtration mechanisms and gas tanks 19, the carbon dioxide generated during the production line of the industrial building is filtered and guided to the greenhouse 1 for agriculture, forming a new model of industrial land adding value to agricultural space and industry supporting agriculture, and forming a new model of creating agricultural development space by utilizing non-arable land resources.

[0054] The above description is merely a preferred embodiment of this application and is not intended to limit this application. Various modifications and variations can be made to this application by those skilled in the art. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this application should be included within the protection scope of this application.

Claims

1. A multi-industry integrated factory building, comprising an industrial plant body, wherein a production line is installed inside the industrial plant body, characterized in that, The roof of the industrial plant is equipped with a greenhouse and a recreational area. A first visitor passage is provided between the greenhouse and the recreational area. A second visitor passage is provided inside the industrial plant. An elevator is provided between the first and second visitor passages. A fan is provided around the carbon dioxide generating area of ​​the industrial plant. The fan is connected to an air duct. The air duct is connected to an outer vertical passage located between the ground and the roof of the industrial plant. An inner vertical passage is provided inside the outer vertical passage. The inner vertical passage is connected to the inner space of the outer vertical passage through an air inlet at the bottom. The inner vertical passage is equipped with a filter mechanism. The top of the inner vertical passage is connected to a gas tank through a gas pipeline. The gas tank is located inside the greenhouse and its outlet is equipped with a valve. The roof of the industrial plant is also equipped with a solar photovoltaic area, which is fitted with solar photovoltaic panels. The industrial plant has a first production line area and a second production line area arranged side by side inside. A warehouse is located between the first production line area and the second production line area. A raw material area is located on one side of the area occupied by the first production line area, the second production line area and the warehouse. Production equipment is arranged in the first production line area and the second production line area to form a production line. One side of the raw material area is the first production line area, the second production line area, and the warehouse area, while the other side is an electric vehicle charging area equipped with charging equipment. Above the electric vehicle charging area is an office area equipped with office equipment. The filtration mechanism employs a multi-layered filtration membrane distributed along the axis of the inner vertical channel. The industrial plant building is also equipped with an underground ventilation system.

2. The multi-industry integrated factory building as described in claim 1, characterized in that, The industrial plant corresponding to the greenhouse has multiple structural reinforcement columns inside, which support and reinforce the roof area of ​​the industrial plant corresponding to the greenhouse.

3. The multi-industry integrated factory building as described in claim 1, characterized in that, The second visitor access is distributed along the outer edge of the first production line area and the raw material area.

4. A multi-industry integrated factory building as described in claim 1, characterized in that, The second visitor access is a visitor corridor located in the upper part of the interior space of the industrial plant, with an elevator connecting the visitor corridor to the ground of the industrial plant.

5. A multi-industry integrated factory building as described in claim 1, characterized in that, The greenhouse is equipped with a carbon dioxide concentration detection element, which is connected to the control system. The control system is connected to the valve at the gas outlet of the gas tank.

Citation Information

Patent Citations

  • Multifunctional ecological circulation solar greenhouse

    CN107079737A

  • Combined multifunction stereo ecological building

    CN1429961A