Green intelligent industrial park
By splicing precast concrete slabs to form roads and hard surfaces, combined with solar power generation and sponge-like storage yard design, the construction time and transportation problems of industrial parks have been solved, realizing a green and smart park that is fast to construct, saves resources, and reduces costs.
Patent Information
- Application Number
- CN202311439242.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-11-01
- Publication Date
- 2025-12-26
- Estimated Expiration
- 2043-11-01
AI Technical Summary
The construction of existing industrial park roads is time-consuming and labor-intensive, and the transportation of building materials is difficult, making subsequent maintenance troublesome.
The road surface and hard ground are spliced using precast concrete slabs, combined with solar power generation components and a sponge-like three-dimensional storage area design to achieve early transportation and later assembly of precast slabs, and combined with green planting and rainwater management systems.
It significantly reduces construction time, saves resources and costs, improves practicality, ensures convenient material transportation, prevents waterlogging, and achieves self-generation and energy conservation and environmental protection.
Smart Images

Figure CN117344592B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of industrial park, in particular to a green intelligent industrial park. BACKGROUND
[0002] Nowadays, the construction of industrial park is to pour the road surface after the main factory building is completed, which needs to dig first, then lay the gravel, and finally pour the concrete. This method is time-consuming and laborious, and the maintenance is very troublesome. In addition, it is difficult to transport building materials into the construction site due to the road surface. Therefore, it is particularly important to design a green intelligent industrial park to solve the above problems. SUMMARY
[0003] The present application is designed to solve the above problems, and a green intelligent industrial park is provided, wherein the road surface in the park site and the hard ground in the production plant are composed of concrete prefabricated panels. By using the concrete prefabricated panel connection method, the construction time is greatly reduced. In addition, the concrete prefabricated panels can be pre-laid for material transportation during the construction of the factory building. After the construction of the factory building is completed, the prefabricated panels can be reassembled by moving, which increases the practicality.
[0004] To solve the above technical problems, the present application provides a green intelligent industrial park, which comprises a park site, characterized in that: the end of the park site close to the river is provided with a ship loading and unloading area, the end of the park site close to the road is provided with an entrance and exit, the left and right sides of the entrance and exit in the park site are provided with non-motor vehicle parking and charging areas and motor vehicle parking and charging areas, the left side of the park site is sequentially provided with an office building area, a production plant area and a storage plant area from front to back, the right side of the park site is sequentially provided with a maintenance pool area and a sponge type three-dimensional yard area from front to back, the left and right sides of the maintenance pool area are provided with travelling cranes for lifting concrete prefabricated parts, the road surface in the park site and the hard ground in the production plant are composed of concrete prefabricated panels, the top of the production plant is provided with a plurality of solar power generation components, and the solar power generation components are electrically connected with the non-motor vehicle parking and charging areas and the motor vehicle parking and charging areas.
[0005] Further, the top of the office building area is provided with a green plant planting area, and the green plant planting area is provided with a spraying system above it, and the spraying system is connected with a track translation assembly.
[0006] Further, the ship loading and unloading area is provided with a plurality of cranes and a material temporary storage plant area, the top of the material temporary storage plant area is provided with a feeding port, the material temporary storage plant area is connected with the storage plant area through a pipeline transportation system, and the storage plant area is connected with the production plant through a monorail hopper circulating conveying system.
[0007] Further, the solar power generation assembly comprises an outer shell, a charging battery assembly, a partition plate, a lifting cylinder, a support plate, a U-shaped mounting frame and a solar power generation panel, two rotating shafts are rotatably connected between the two side walls of the U-shaped mounting frame, two servo motors are arranged on the front and back of the two rotating shafts and connected with the rotating shafts respectively, one solar power generation panel is connected with each rotating shaft, the U-shaped mounting frame is connected with the support plate through an angle adjusting mechanism, the support plate is connected with the partition plate through the lifting cylinder, the partition plate is detachably installed in the outer shell, and the charging battery assembly is installed in the outer shell below the partition plate.
[0008] Further, the angle adjusting mechanism comprises a support column, an electric telescopic rod, a sliding rail arranged at the bottom of the U-shaped mounting frame and a sliding block, the sliding rail is arranged in parallel with the rotating shaft, the support column is vertically fixed at the top of the left end of the support plate, the upper end of the support column is movably connected with the bottom of the U-shaped mounting frame, and the electric telescopic rod is vertically fixed at the top of the right end of the support plate, the extension end of the electric telescopic rod is movably connected with the sliding block and slidably connected with the sliding block on the sliding rail.
[0009] Further, two guide frames are arranged on the front and back of the top of the outer shell, a protective cover is slidably connected between the two guide frames on the same side, one on-off electric cylinder is arranged on the outer wall of each of the left and right sides of the outer shell, and the on-off electric cylinder is connected with the protective cover through a transmission assembly.
[0010] Further, the sponge type three-dimensional storage yard area is composed of a prefabricated plate layer, a gravel layer and a medium-coarse sand layer, a drainage layer is arranged in the medium-coarse sand layer, the drainage layer is composed of two-bag-membrane waterproof geotextile and a drainage blind pipe, the medium-coarse sand layer is divided into a lower layer medium-coarse sand layer, an intermediate layer medium-coarse sand layer and an upper layer medium-coarse sand layer, the two-bag-membrane waterproof geotextile is arranged between the lower layer medium-coarse sand layer and the intermediate layer medium-coarse sand layer, the drainage blind pipe is arranged between the intermediate layer medium-coarse sand layer and the upper layer medium-coarse sand layer, and a permeable geotextile layer is also arranged between the gravel layer and the upper layer medium-coarse sand layer, the drainage blind pipe is connected with a rainwater well, and the rainwater well is connected with a maintenance pool area through a pipeline system.
[0011] Further, an overflow pipeline is connected with the inner wall of the upper end of the rainwater well, the overflow pipeline is connected with an underground temporary storage pool, the underground temporary storage pool is connected with a liquid pumping pump through a first conveying pipeline, one end of the first conveying pipeline extends into the bottom of the underground temporary storage pool, and the liquid pumping pump is connected with a water storage tank and an external discharge pipeline through an on-off control valve.
[0012] Still further: the switch control valve includes a valve body, a flow guide channel in the valve body, a valve and a valve switch electric cylinder, the left and right ends of the flow guide channel are communicated with the liquid pumping pump and the external discharge pipeline respectively, a guide groove communicated with the flow guide channel is further arranged in the valve body, the valve is movably connected in the guide groove and is driven by the valve switch electric cylinder to extend into the flow guide channel to seal the flow guide channel, the valve switch electric cylinder is connected with the valve through a transmission rod, a liquid outlet communicated with the water storage tank is arranged at the top of the left flow guide channel of the valve, a pressure channel is arranged between the left and right ends of the valve, a valve core is movably connected in the pressure channel, a valve cover is connected with the outer wall of the right side of the valve through a connecting cylinder, the valve cover is opposite to the pressure channel, the valve core is connected with the valve cover through a first spring, a flow guide hole is arranged in the valve, one end of the flow guide hole is communicated with the pressure channel and is sealed by the valve core, the other end of the flow guide hole is communicated with the external discharge pipeline through the flow guide channel.
[0013] Still further: a connecting hole is arranged on the inner wall of the pressure channel, the connecting hole is connected with a spherical clamping head through a second spring, a semispherical clamping groove matched with the spherical clamping head is arranged on the outer wall of the valve core, a pushing rod is arranged at the right end of the valve core, the pushing rod passes through the valve cover and extends to the outside of the valve body, and the first spring is arranged around the outside of the pushing rod.
[0014] After the above structure is adopted, the road surface in the park area and the hard ground in the production plant area in the application are composed of the concrete precast slabs, the construction time is greatly reduced by adopting the concrete precast slab splicing mode, the concrete precast slabs can be pre-paved for material transportation when the factory building is constructed in the early stage, and the concrete precast slabs are reassembled by carrying after the factory building is constructed, so that the practical performance is increased; and the application not only can plant green plants on the top of the office building area, but also can generate electricity by itself through the solar power generation assembly on the top of the production plant area, so that the resources are saved and the cost is reduced. BRIEF DESCRIPTION OF DRAWINGS
[0015] The application will be further described in detail below in combination with the drawings and specific embodiments.
[0016] Figure 1 It is a top view of the application.
[0017] Figure 2 It is a top view of the solar power generation assembly.
[0018] Figure 3 It is an internal structure view of the solar power generation assembly.
[0019] Figure 4 It is a structure view of the angle adjusting mechanism.
[0020] Figure 5 It is the structural diagram of the sponge type three-dimensional yard area.
[0021] Figure 6 It is the connection structure diagram of the rainwater well.
[0022] Figure 7 It is the internal structure diagram of the switch control valve.
[0023] Figure 8 It is Figure 7 The enlarged view of A.
[0024] Figure 9 It is Figure 8 The enlarged view of B. DETAILED DESCRIPTION
[0025] As Figure 1 The green intelligent industrial park shown includes a park site 1, a ship loading and unloading area 8 is arranged at one end of the park site 1 close to a river, an entrance and exit gate 2 is arranged at one end of the park site close to a road, a non-motor vehicle parking and charging area 4 and a motor vehicle parking and charging area 3 are arranged in the park site on the left and right sides of the entrance and exit gate, an office building area 5, a production plant area 6 and a material storage plant area 7 are arranged in the park site on the left side from front to back in sequence, a maintenance pool area 9 and a sponge type three-dimensional yard area 10 are arranged in the park site on the right side from front to back in sequence, a travelling crane 16 for hoisting a concrete prefabricated part is arranged on the left and right sides of the maintenance pool area, the road surface in the park site and the hard ground in the production plant area are both composed of concrete prefabricated plates, a plurality of solar power generation components 14 are arranged on the top of the production plant area, and the solar power generation components are electrically connected with the non-motor vehicle parking and charging area and the motor vehicle parking and charging area respectively. In the present application, the road surface in the park site and the hard ground in the production plant area are both composed of concrete prefabricated plates, the construction time is greatly reduced by adopting the mode of concrete prefabricated plate splicing, and the concrete prefabricated plates can be pre-paved for material transportation when the plant is constructed in the early stage, and the plant is reassembled by transportation after the construction of the plant is completed, so that the practical performance is increased.
[0026] As Figure 1 A plurality of cranes 17 and a material temporary storage plant area 11 are arranged on the ship loading and unloading area, a feeding port is formed in the top of the material temporary storage plant area, the material temporary storage plant area is connected with the material storage plant area through a pipeline transportation system 12, and the material storage plant area is connected with the production plant area through a monorail hopper circulating conveying system 13.
[0027] As Figure 1 , Figure 2 and Figure 3 The top of the office building area is provided with a green planting area 15, the upper side of the green planting area is provided with a spraying system, the spraying system is connected with the track translation assembly; the solar power generation assembly comprises an outer shell 14-1, a charging battery assembly 14-7, a partition plate 14-8, a lifting electric cylinder 14-9, a support plate 14-11, a U-shaped mounting frame 14-3 and a solar power generation plate 14-4, two rotating shafts are rotatably connected between the two side walls of the U-shaped mounting frame, two rotating shafts are arranged in front of and behind each other and are connected with a servo motor 14-5 respectively, one solar power generation plate is connected to each rotating shaft, the U-shaped mounting frame is connected to the support plate through an angle adjusting mechanism, the support plate is connected to the partition plate through the lifting electric cylinder, the partition plate is detachably installed in the outer shell, and the charging battery assembly is installed in the outer shell below the partition plate. The solar power generation assembly on the top of the production plant area can generate electricity by itself, which saves resources and reduces costs.
[0028] As Figure 2 , Figure 3 and Figure 4 indicated, the angle adjusting mechanism comprises a supporting column 14-12, an electric telescopic rod 14-13, a sliding rail 14-14 arranged at the bottom of the U-shaped mounting frame and a sliding block 14-15, the sliding rail is arranged in parallel with the rotating shaft, the supporting column is vertically fixed at the top of the left end of the support plate, the upper end of the supporting column is movably connected with the bottom of the U-shaped mounting frame, the electric telescopic rod is vertically fixed at the top of the right end of the support plate, the extending end of the electric telescopic rod is movably connected with the sliding block and is slidably connected to the sliding rail through the sliding block. The solar power generation plate can be adjusted to face the sunlight by adopting the above structure, which improves the power generation efficiency.
[0029] As Figure 2 and Figure 3 indicated, the top of the outer shell is provided with two guide frames 14-6 on the front and rear sides, a protective cover body 14-2 is slidably connected between the two guide frames on the same side, a switching electric cylinder 14-10 is installed on the outer wall of each of the left and right sides of the outer shell, and the switching electric cylinder is connected with the protective cover body through a transmission assembly. When extreme weather is encountered, the solar power generation plate can be retracted into the outer shell and protected by the protective cover body, unnecessary damage of the solar power generation plate is prevented, and the practicality is improved.
[0030] As Figure 5The sponge-type three-dimensional storage area shown consists of a precast slab layer 10-1, a crushed stone layer 10-2, and a medium-coarse sand layer 10-3 from top to bottom. A drainage layer is provided in the medium-coarse sand layer, which is composed of a two-layer waterproof geotextile 10-5 and a drainage blind pipe 10-6. The medium-coarse sand layer is further divided into a lower medium-coarse sand layer 10-3-1, a middle medium-coarse sand layer 10-3-2, and an upper medium-coarse sand layer 10-3-3. The two-layer waterproof geotextile is placed between the lower and middle medium-coarse sand layers. The drainage blind pipe is placed between the middle and upper medium-coarse sand layers. A permeable geotextile layer 10-4 is also laid between the crushed stone layer and the upper medium-coarse sand layer. The drainage blind pipe is connected to a rainwater well 18, which is connected to the maintenance pond area through a pipeline system 20. This invention utilizes a sponge-type three-dimensional storage yard to accelerate the drainage of rainwater from hardened sites, preventing flooding within the park and enhancing its practical performance.
[0031] like Figure 6 An overflow pipe 23 is connected to the inner wall of the upper end of the rainwater well shown. The overflow pipe is connected to the underground temporary storage tank 21. The underground temporary storage tank is connected to the liquid pump 24 through the first conveying pipe 22. One end of the first conveying pipe extends into the bottom of the underground temporary storage tank. The liquid pump is connected to the water storage tank and the external discharge pipe through the switch control valve 25.
[0032] like Figure 7 and Figure 8 The on / off control valve includes a valve body 25-1, a flow guide channel 25-2 formed within the valve body, a valve 25-3, and a valve switching electric cylinder 25-5. The left and right ends of the flow guide channel are connected to a liquid pump and an external discharge pipe, respectively. The valve body also has a guide groove connected to the flow guide channel. The valve is movably connected within the guide groove and is driven by the valve switching electric cylinder to extend into the flow guide channel to seal it. The valve switching electric cylinder is connected to the valve via a transmission rod 25-4. A section is formed at the top of the flow guide channel on the left side of the valve... The valve has an outlet connected to the water storage tank. A pressure channel is provided between the left and right ends of the valve. A valve core 25-7 is piston-connected within the pressure channel. The outer wall of the right side of the valve is connected to a valve cover 25-10 via a connecting cylinder 25-9. The valve cover faces the pressure channel. The valve core is connected to the valve cover via a first spring 25-11. A guide hole 25-8 is provided inside the valve. One end of the guide hole is connected to the pressure channel and sealed by the valve core. The other end of the guide hole is connected to an external discharge pipe via a guide channel. This invention controls the valve with an electric cylinder, allowing selection between supplying water to the storage tank or discharging it externally. When the water storage tank is full and the electric cylinder malfunctions or is unattended, the valve core automatically opens for direct discharge, greatly increasing practicality.
[0033] As Figure 8 And Figure 9 The inner wall of the pressure channel is provided with a connecting hole, the connecting hole is connected with the spherical chuck 25-13 through the second spring 25-14, the outer wall of the valve core is provided with a hemispherical chuck slot 25-12 matched with the spherical chuck, the right end of the valve core is provided with a push rod 25-6, the push rod passes through the valve cover and extends to the outside of the valve body, and the first spring is arranged on the outer side of the push rod.
[0034] The above is only the preferred embodiment of the present application, the protection scope of the present application is not limited to the above-mentioned examples, all technical solutions belonging to the idea of the present application belong to the protection scope of the present application. It should be pointed out that, for ordinary skilled in the art, some improvements and decorations without departing from the principle of the present application should be regarded as the protection scope of the present application.
Claims
1. A green smart industrial park, comprising a park site (1), characterized in that: The garden site (1) is provided with a ship loading and unloading area (8) at one end close to a river, an access gate (2) at one end close to a road, a non-motor vehicle parking and charging area (4) and a motor vehicle parking and charging area (3) on both sides of the access gate, an office building area (5), a production plant area (6) and a storage plant area (7) from front to back on the left side of the garden site, a maintenance pool area (9) and a sponge type three-dimensional yard area (10) from front to back on the right side of the garden site, a travelling crane (16) for lifting concrete prefabricated parts is arranged on both sides of the maintenance pool area, the road surface in the garden site and the hard ground in the production plant area are composed of concrete prefabricated boards, a plurality of solar power generation components (14) are arranged on the top of the production plant area, and the solar power generation components are electrically connected with the non-motor vehicle parking and charging area and the motor vehicle parking and charging area respectively. The sponge type three-dimensional yard area is composed of a prefabricated board layer (10-1), a gravel layer (10-2) and a medium-coarse sand layer (10-3) from top to bottom, the medium-coarse sand layer is provided with a drainage layer composed of two-bag-membrane waterproof geotextile (10-5) and a drainage blind pipe (10-6), the medium-coarse sand layer is divided into a lower layer medium-coarse sand layer (10-3-1), a middle layer medium-coarse sand layer (10-3-2) and an upper layer medium-coarse sand layer (10-3-3), the two-bag-membrane waterproof geotextile is arranged between the lower layer medium-coarse sand layer and the middle layer medium-coarse sand layer, the drainage blind pipe is arranged between the middle layer medium-coarse sand layer and the upper layer medium-coarse sand layer, and a water-permeable geotextile layer (10-4) is arranged between the gravel layer and the upper layer medium-coarse sand layer, the drainage blind pipe is connected with a rainwater well (18), and the rainwater well is connected with the maintenance pool area through a pipeline system (20); An overflow pipeline (23) is connected to the inner wall of the upper end of the rainwater well, the overflow pipeline is connected with an underground temporary storage pool (21), the underground temporary storage pool is connected with a liquid pumping pump (24) through a first conveying pipeline (22), one end of the first conveying pipeline extends into the bottom of the underground temporary storage pool, and the liquid pumping pump is connected with a water storage tank and an external discharge pipeline through a switch control valve (25). The switch control valve comprises a valve body (25-1), a flow guide channel (25-2) formed in the valve body, a valve (25-3) and a valve switch electric cylinder (25-5), the left and right ends of the flow guide channel are communicated with a liquid pumping pump and an external discharge pipeline respectively, a guide groove communicated with the flow guide channel is further formed in the valve body, the valve is movably connected in the guide groove and is driven by the valve switch electric cylinder to extend into the flow guide channel to seal the flow guide channel, the valve switch electric cylinder is connected with the valve through a transmission rod (25-4), a liquid outlet communicated with a water storage tank is formed at the top of the left flow guide channel of the valve, a pressure channel is formed between the left and right ends of the valve, a valve core (25-7) is movably connected in the pressure channel, the right outer wall of the valve is connected with a valve cover (25-10) through a connecting cylinder (25-9), the valve cover is opposite to the pressure channel, the valve core is connected with the valve cover through a first spring (25-11), a flow guide hole (25-8) is formed in the valve, one end of the flow guide hole is communicated with the pressure channel and is sealed by the valve core, the other end of the flow guide hole is communicated with the external discharge pipeline through the flow guide channel. A connecting hole is formed in the inner wall of the pressure channel, the connecting hole is connected with a spherical clamping head (25-13) through a second spring (25-14), a semispherical clamping groove (25-12) matched with the spherical clamping head is formed in the outer wall of the valve core, a pushing rod (25-6) is arranged at the right end of the valve core, the pushing rod passes through the valve cover and extends to the outside of the valve body, and the first spring is arranged around the outside of the pushing rod.
2. The green smart industrial park according to claim 1, characterized in that: The top of the office building area is provided with a green plant planting area (15), a spraying system is arranged above the green plant planting area, and the spraying system is connected with the track translation assembly.
3. The green smart industrial park according to claim 1, characterized in that: A plurality of cranes (17) and material temporary storage areas (11) are arranged on the ship loading and unloading area, a feeding port is formed at the top of the material temporary storage area, the material temporary storage area is connected with a storage area through a pipeline transportation system (12), and the storage area is connected with a production area through a single-track hopper circulating conveying system (13).
4. The green smart industrial park of claim 1, wherein: The solar power generation assembly comprises an outer shell (14-1), a charging battery assembly (14-7), a partition plate (14-8), a lifting electric cylinder (14-9), a supporting plate (14-11), a U-shaped mounting frame (14-3) and solar power generation panels (14-4), two rotating shafts are rotatably connected between the two side walls of the U-shaped mounting frame, the two rotating shafts are arranged in front of and behind each other and are connected with a servo motor (14-5) respectively, one solar power generation panel is connected to each rotating shaft, the U-shaped mounting frame is connected to the supporting plate through an angle adjusting mechanism, the supporting plate is connected to the partition plate through the lifting electric cylinder, the partition plate is detachably installed in the outer shell, and the charging battery assembly is installed in the outer shell below the partition plate.
5. The green smart industrial park according to claim 4, characterized in that: The angle adjusting mechanism comprises a supporting column (14-12), an electric telescopic rod (14-13), a slide rail (14-14) arranged at the bottom of the U-shaped mounting frame body and a sliding block (14-15), the slide rail is arranged in parallel with the rotating shaft, the supporting column is vertically fixed at the top of the left end of the supporting plate, the upper end of the supporting column is movably connected with the bottom of the U-shaped mounting frame body, the electric telescopic rod is vertically fixed at the top of the right end of the supporting plate, the extending end of the electric telescopic rod is movably connected with the sliding block and is slidably connected on the slide rail through the sliding block.
6. The green smart industrial park according to claim 4, characterized in that: Two guide frames (14-6) are arranged on the front and rear sides of the top of the outer shell body, the two guide frames on the same side are slidably connected with a protective cover body (14-2), one on-off electric cylinder (14-10) is arranged on the outer wall of each of the left and right sides of the outer shell body, and the on-off electric cylinder is connected with the protective cover body through a transmission assembly.
Citation Information
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