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A tunnel comprehensive drainage, precipitation, decompression construction method

A construction method and technology for tunnels, which are applied in the directions of drainage, earth-moving drilling, safety devices, etc., can solve the problems of destroying the balance of water resources system, abandoning and changing the location of tunnels, and interrupting construction, so as to improve the physical and mechanical performance indicators of the stratum and ensure safety. , the effect of reducing humidity

Active Publication Date: 2018-08-21
CHINA RAILWAY 19TH BUREAU GRP SECOND ENG CO LTD
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AI Technical Summary

Problems solved by technology

[0005] (1) Causing engineering disasters and casualties
Tertiary sand-mudstone areas are characterized by rich water and mud and sand. When a large water inrush occurs during the construction of a tunnel, it is often accompanied by mud and sand gushing, which will submerge the tunnel and destroy the equipment. Tunnels are abandoned and easy to locate, and even cause heavy casualties. For example, tunnels on the Yiwan Railway Red Deer and other tunnels are constructed on a flat surface, and the surrounding rocks in the fracturing arch of the dissolved cavity water body are overlying, causing extremely large water inrush disasters. The maximum water inrush is as high as 30 ×104m 3 / h, resulting in 11 deaths
[0007] (3) Destroying the balance of the water resource system
[0008] (4) Other potential hazards

Method used

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  • A tunnel comprehensive drainage, precipitation, decompression construction method

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Embodiment Construction

[0020] Refer to attached figure 1 , the ground surface precipitation well 1 is respectively drilled at a distance of 8 meters from the sidelines on both sides of the frontal hole 5 on the surface, and a flat pilot hole 2 is set near the frontal hole on the surface, so as to achieve the purpose of water discharge, precipitation and decompression while increasing the excavation working face , from the flat guide tunnel to the surface to the surface to the positive tunnel obliquely above the drain hole 3, the surface to the positive tunnel base and the horizontal pilot tunnel base are drilled tunnel base dewatering wells 4, and the surface to the positive tunnel vault forward and upward. Oblique weep hole 6, above the vault of positive hole, set up the vertical weep hole 7 of positive hole on the ground surface, and the vertical weep hole 8 of flat pilot hole is also punched above the vault of flat pilot tunnel.

[0021] In the present invention, under the conditions of Tertiary ...

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Abstract

The invention provides a comprehensive tunnel drainage, precipitation and pressure reduction construction method, relates to an in-tunnel drainage, ground precipitation and comprehensive pressure reduction construction method for a water and mud burst segment of a tertiary system sand shale tunnel and is mainly designed to solve the problems that an existing tunnel is prone to deformation, collapse and even water burst and mud burst in the tertiary system sand shale construction process. Ground precipitation wells are drilled at the positions, eight meters away from the side lines on the two sides, of a ground-direction positive hole, a flat guide hole is formed near the ground-direction positive hole, a drainage hole is formed in the inclined upper direction of the ground-direction positive hole relative to the flat guide hole, tunnel substrate precipitation wells are drilled in both the substrate of the ground-direction positive hole and the substrate of the flat guide hole, a plurality of inclined drainage holes are formed above the inclined front portion of a vault of the ground-direction positive hole, a positive hole vertical drainage hole is formed above the vault of the ground-direction positive hole, and a flat guide hole vertical drainage hole is further formed above the vault of the flat guide hole. The comprehensive tunnel drainage, precipitation and pressure reduction construction method has the advantages that geological disasters such as collapse, deformation, water burst and mud burst are avoided, and tunnel construction safety can be guaranteed.

Description

Technical field: [0001] The invention relates to a construction method of water discharge, surface precipitation and comprehensive decompression in the water gushing and mud gushing section of the tertiary sand mudstone tunnel. Background technique: [0002] With the construction of large-scale, modernized and high-standard urban roads and transportation projects in my country, the number and construction scale of tunnel projects continue to expand, and the geological conditions passed through are becoming more and more complex. Tertiary sand-mudstone is a complex geological surrounding rock. The characteristics of Tertiary sand-mudstone: the main component is clay minerals, containing a small amount of silt, of which the silt content is 25%-50%, and the clay content is 75%-50%, which is easy to soften and erode when exposed to water; Poor self-stabilization ability, broken, swollen, low strength; development of joints and fissures, etc. The above characteristics lead to ce...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): E21F16/02
CPCE21F16/02
Inventor 杨保旭李红阳张明双李红峰邢晓锋李德武马学宁
Owner CHINA RAILWAY 19TH BUREAU GRP SECOND ENG CO LTD
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