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Maintenance structure used for large-gradient stone side slope

A stone slope and large slope technology, applied in infrastructure engineering, applications, drinking water installations, etc., can solve problems such as long time period, damage to natural ecological harmony, danger, etc., and achieve the goal of reducing the difficulty of installation and simplifying the installation process Effect

Inactive Publication Date: 2016-07-20
GUIZHOU TRANSPORTATION PLANNING SURVEY & DESIGN ACADEME
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

In recent years, with large-scale engineering construction and mining, a large number of exposed slopes have been formed in karst landforms, resulting in a large number of rocky slopes that cannot recover vegetation. It is almost impossible to restore vegetation coverage naturally on the surface in a short period of time; Some slope engineering reinforcement measures mostly pursue strength and efficacy, and most of them use gray protection such as stone masonry and shotcrete, which destroys the harmony of natural ecology
With people's emphasis on ecological environment protection and the further increase of my country's economic strength, vegetation slope protection engineering technology has gradually been applied to engineering construction. Existing applications mostly use blasting afforestation methods, which are not suitable for karst landforms, or The slope is fixed by masonry and divided into small grids to make vegetation components, and then soil is planted in the divided grids to cultivate vegetation. Although such vegetation slope protection engineering technology has a certain greening effect, it still cannot meet the ecological requirements. Harmony and unity, man-made traces are too obvious
Most of the existing artificial slope greening and reconstruction projects are aimed at rocky slopes with a slope less than 75°. The planting components for slope protection of shrubs installed on the slopes in karst areas" and the "T-shaped planting boards for slope protection of slopes with shrubs installed on slopes in karst areas" can both achieve a good artificial soil attachment rate, which can be used after construction. Vegetation greening and regeneration will be completed within a few years; however, facing the complex and changeable characteristics of rocky slopes, rocky slopes larger than 75° or even 90° are often encountered during construction. There is no good solution yet. The common method is to re-clean the rocky slope to make the slope smaller. However, this method requires a large amount of construction, a long period of time, and is more dangerous

Method used

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  • Maintenance structure used for large-gradient stone side slope
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Embodiment Construction

[0016] The present invention will be described in detail below with reference to the accompanying drawings and examples.

[0017] Such as figure 1 with 2 As shown, a nursing structure for a large slope stone slope of the present invention includes a plurality of nursing structure modules distributed in an array on the hillside, and each module includes a planting board, a frame, anchor fixing holes, rainwater Collection bags, drip irrigation pipes and valves; the frame is rectangular, and the vegetation boards are fixed on the frame at intervals, and the vegetation boards are at a certain angle to the plane where the frame is located; Hanging under the planting board, the upper opening of the rainwater collection bag communicates with the opening on the planting board; the drip irrigation pipe is fixed below the rainwater collection bag, one end of the drip irrigation pipe is closed, and the other end is connected to the opening below the rainwater collection bag through a va...

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Abstract

The invention discloses a maintenance structure used for a large-gradient stone side slope. Through modular design of the maintenance structure, plant growing plates and a frame can be assembled in advance. A user just needs to fix modules of the maintenance structure to a slope through anchor part fixing holes during on-site installation, in this way, the installation process can be simplified, and the installation difficulty is lowered. Rainwater collecting bags are arranged below the plant growing plates and used for collecting rainwater seeping from openings of the plant growing plates, and in this way, rainwater can be canned automatically on rainy days and stored for standby application. Then holes are formed in the lower ends of the rainwater collecting bags and connected with drop irrigation pipes, in this way, the whole slope needing to be maintained can be replenished with water through the drop irrigation pipes by opening the control valve in rainless seasons, the moisture required by plant growth is guaranteed, and the water delivery cost is reduced.

Description

technical field [0001] The invention relates to the construction technology of shrub slope protection in the karst (KST) area, in particular to a nursing structure for large slope stone slopes. Background technique [0002] Karst landform refers to various landforms formed by the dissolution of soluble rocks by water and the accompanying mechanical action. Karst landforms are widely distributed in Guangxi, Guizhou, Yunnan and other places in China. In recent years, with large-scale engineering construction and mining, a large number of exposed slopes have been formed in karst landforms, resulting in a large number of rocky slopes that cannot recover vegetation. It is almost impossible to restore vegetation coverage naturally on the surface in a short period of time; In some slope engineering reinforcement measures, the emphasis is on strength and efficiency, and most of them use gray protection such as stone masonry and shotcrete, which destroys the harmony of natural ecolog...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): E02D17/20A01G9/02A01G27/02E03B3/02
CPCY02A20/108
Inventor 吴辉晁建强赖生猛袁盛华李怀国杨堂超陈亮
Owner GUIZHOU TRANSPORTATION PLANNING SURVEY & DESIGN ACADEME
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