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Irrigation system for green plants on bridge and application

An irrigation system and green plant technology, applied in applications, drinking water installations, general water supply conservation, etc., can solve problems such as reducing municipal water use, reducing green plant transplantation or fixing, drought and water shortage, etc., to increase available space and improve The effect of cleaning convenience and reducing potential safety hazards

Pending Publication Date: 2022-02-11
成都庆坤声学工程有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0009] 1. In order to solve the problem that the green plants on the elevated can not be irrigated under the condition of insufficient rainwater, a water storage tank and a green plant hanging pot are designed, and the top of the green plant hanging pot is open, and the green plant hanging pot and the water storage tank are connected through pipe fittings In the future, it is only necessary to manually start and stop the water pump in the remote control center to control the module to realize remote control of irrigation of green plants; in order to reduce the water supply of water conservancy projects, the top of the green plant hanging pot is opened. On the one hand, the green plant hanging pot provides accommodation for transplanting In the space for green plants, the green plants will be placed in the green plant hanging pots later to reduce the transplantation or fixation of green plants in subsequent high-risk operations. On the other hand, it can also play the role of collecting rainwater; its drainage holes are connected through pipe fittings and water storage tanks , collect rainwater in the water storage tank for use when the plant water is insufficient, and solve the problem of plant drought and water shortage. Finally, in order to reduce the manual workload, alleviate high-risk irrigation operations, and reduce the manual workload, finally, the Rainwater collection is used as a secondary cycle irrigation to reduce municipal water use. At the same time, the implementation of this scheme is less restricted by the distribution of municipal water pipes, and it can be used in areas lacking municipal water pipe distribution. The applicability is compared to the green plants under urban viaducts The same goes for irrigation

Method used

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  • Irrigation system for green plants on bridge and application
  • Irrigation system for green plants on bridge and application
  • Irrigation system for green plants on bridge and application

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0025] like Figure 1-7 As shown, the present embodiment provides a green plant irrigation system for bridges, including a green plant hanging pot 2, a water storage tank 9 and a water pump 7; the green plant hanging pot 2 is installed on the support 3, and the green plant hanging pot 2 The top opening of the green plant hanging pot 2 also has a drainage hole 22 and a water inlet hole 21; the water storage tank 9 is connected to the base 1 through a support seat; The water inlet hole 21 of the green plant hanging basin 2 communicates with the water storage tank 9 through the pipe fitting 4, the water inlet 14 of the water pump 7 communicates with the inside of the water tank, and the signal input end of the water pump 7 communicates with the center The signal output terminal of the control module is connected.

[0026] In the above process, in order to solve the problem that the green plants on the elevated can not be irrigated under the condition of insufficient rainwater, t...

Embodiment 2

[0029] Carried out based on the previous embodiment, such as Figure 2-6 As shown, a stirring assembly 91 is arranged in the water storage tank 9, and the stirring assembly 91 is installed along the central axis of the water storage tank 9. The stirring assembly 91 is an auger blade, and the two ends of the stirring assembly 91 are connected to the water storage tank through a bearing seat. 9, water inlet pipe 11 and drain pipe 5 are installed along the central axis of mixing assembly 91 on both sides of water storage tank 9, and water inlet pipe 11 and drain pipe 5 are all communicated with water storage tank 9; A drive assembly 10 for driving the stirring assembly 91 to roll is arranged between the water storage tanks 9, and the drive assembly 10 is connected with the water storage tank 9;

[0030] Among them, in order to solve the problem that the particles washed by the rainwater enter the water storage tank 9 through the channel of the drainage hole 22 to gather and settl...

Embodiment 3

[0034] Carried out based on the previous embodiment, such as Figure 7 As shown, the green plant hanging pot 2 is provided with a filter plate 16, the filter plate 16 is connected to the middle part of the green plant hanging pot 2 through a tripod, and the filter plate 16 is fixed on the inner side wall of the green plant hanging pot 2 middle part through a tripod, and the follow-up When it is convenient to place the subsequent green plants, the green plant hanging pot 2 itself has a certain water storage space for the green plants to use water. Secondly, the filter plate 16 itself has flow holes, which can be used for the roots of the subsequent green plants to pass through the flow holes and enter the filter plate. The water storage space at the bottom of 16 plays a fixed role for the green plants whose roots pass through the flow holes, and strengthens the connection between the green plants and the green plant hanging pot 2 to be more stable.

[0035] Most preferably, as ...

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PUM

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Abstract

The invention discloses an irrigation system for green plants on a bridge, relates to the technical field of bridge greening, and solves the technical problem of lack of watering for green plants planted on the bridge. The system comprises a green plant hanging pot, the green plant hanging pot is installed on a support, the top of the green plant hanging pot is open, and the side surface of the green plant hanging pot is further provided with a drainage hole and a water inlet hole; the water storage tank is connected to the base through a supporting seat; and a drainage end of the water pump is communicated with a water inlet hole of the green plant hanging pot through a pipe fitting, a drainage hole of the green plant hanging pot is communicated with the water storage tank through a pipe fitting, a water inlet end of the water pump is communicated with the inside of the water tank, and a signal input end of the water pump is connected with a signal output end of the central control module. The top of the green plant hanging pot is open, on one hand, the green plant hanging pot provides a space for containing transplanted green plants, green plant transplanting or fixing under follow-up high-risk operation is reduced, the effect of collecting rainwater can be achieved, and the rainwater is collected for follow-up water supply for plant irrigation.

Description

technical field [0001] The invention relates to the technical field of bridge greening, and more specifically relates to the technical field of an irrigation system for green plants on bridges and its application. Background technique [0002] For the installation of sound barriers on many elevated bridges, brackets will be built on the reserved bases of the bridges, and sound barrier panels will be installed between two adjacent brackets to play the role of sound insulation and noise reduction. [0003] However, in the published literature: "The application number is: CN201911233409.7, and the patent name is: an automatic irrigation system for green plants under urban viaducts", which is designed for irrigation of green plants under urban viaducts, but The planting of green plants on the bridge is not disclosed, and it is impossible to irrigate the green plants on the bridge under the condition of insufficient rainwater, and there are certain safety hazards for the artifici...

Claims

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Application Information

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IPC IPC(8): A01G9/02A01G27/00B01D29/03E03B3/02
CPCA01G9/024A01G27/005B01D29/03A01G27/003E03B3/02Y02A20/108
Inventor 赖庆国赖永森
Owner 成都庆坤声学工程有限公司
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