High-pressure gas seam-expanding, grouting and water-plugging method for precutting trough of microfissure surrounding rock

A technology of high-pressure gas and micro-cracks, which is applied in earthwork drilling, wellbore lining, tunnel lining, etc., can solve problems such as difficult to accurately control the penetration of cracks and poor water blocking effect, achieve high direct application value on site, improve injection Slurry water blocking effect, simple effect of on-site operation and implementation

Active Publication Date: 2015-11-11
CHINA UNIV OF MINING & TECH
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Problems solved by technology

However, for micro-crack seepage channels in surrounding rocks, this method is not effective in blocking water
Analysis of the reason is that the blasting of deep hole explosives produces a spherical fracture surface, and the blasting produces a large number of cracks in the rock mass around the fracture surface, and these cracks are obviously random, and the degree of penetration of surroun

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  • High-pressure gas seam-expanding, grouting and water-plugging method for precutting trough of microfissure surrounding rock
  • High-pressure gas seam-expanding, grouting and water-plugging method for precutting trough of microfissure surrounding rock
  • High-pressure gas seam-expanding, grouting and water-plugging method for precutting trough of microfissure surrounding rock

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Embodiment Construction

[0019] like Figure 1~Figure 3 As shown, the technical solution of the present invention is mainly divided into three steps for implementation. First, the grouting hole grooving treatment and the installation of the grouting sleeve are carried out; secondly, high-pressure gas is used to artificially expand the surrounding rock; finally, the cracks of the surrounding rock are injected. Slurry plugging, the detailed steps are as follows:

[0020] The first step is to drill the grouting hole 1 in the micro-crack sweat seepage area of ​​the surrounding rock according to the designed arrangement of the plum blossom-shaped grouting holes, to ensure that the depth of each grouting hole is consistent, and the error is less than 1cm, and then the bottom of the grouting hole Grooving pretreatment is carried out at the same position of the surrounding rock, so that the surrounding rock at the bottom of the grouting hole produces a circumferential cutting groove 5, the grouting casing 3 i...

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Abstract

The invention relates to a high-pressure gas seam-expanding, grouting and water-plugging method for a precutting trough of microfissure surrounding rock. Annular cutting groove pretreatment is performed on the bottom of a grouting hole, the surrounding rock on the bottom of the grouting hole cracks in a directional manner along an annular cutting groove by a high-pressure gas seam-expanding mode, a through fracture plane is generated between the surrounding rock and an adjacent drilling hole, cement paste is injected in the through fracture plane so as to block the through fracture plane, a complete and effective water-plugging curtain is formed, the purpose of blocking a water seepage channel of the microfissure surrounding rock is achieved, new fissures in the surrounding rock can be avoided, water-plugging failure caused by secondary damage on the surrounding rock is avoided, a microfissure surrounding rock grouting and water-plugging effect is improved greatly, an application range is wide, field operation is simple, a blocking effect on permeated water of the microfissure surrounding rock is excellent, and the field direct application value is high.

Description

technical field [0001] The invention relates to a new method for grouting and water blocking in micro-crack surrounding rocks in wells, in particular to a method for pre-cutting grooves in micro-cracking surrounding rocks with high-pressure gas and grouting for water blocking. Background technique [0002] When coal mine shafts and roadways pass through the micro-cracked sandstone aquifer with small openings, the surrounding rock seepage is large, and the micro-crack seepage channels are difficult to seal, which often has a serious impact on the tunneling and maintenance. Most of the surrounding rock support materials in coal mine shafts are metal, and the high-strength sweat seepage fissure water increases the corrosion rate of the support materials and greatly reduces the strength of the support body, which is not conducive to the stable control of the surrounding rock, and the seepage of the fissure water in the surrounding rock Most of them accumulate on the floor of the...

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Application Information

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IPC IPC(8): E21D11/38E21D11/10
Inventor 陆银龙王连国蒋邦友孙小康
Owner CHINA UNIV OF MINING & TECH
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