Underground cavern group rock pillar stability estimation method

A technology for underground caverns and evaluation methods, which is applied in the testing of measuring devices, instruments, machines/structural components, etc., can solve the problems of lack of clear understanding of the mechanical state of rock pillars, mutual disturbance of cavern groups, and lack of evaluation methods. To achieve the effect of easy implementation and saving engineering investment

Pending Publication Date: 2018-06-15
POWERCHINA HUADONG ENG COPORATION LTD
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

The above achievements are basically based on engineering experience. Specific projects need to be analyzed in detail. However, at present, there is a lack of evaluation methods that are actually available on site. They mainly rely on engineering experience or numerical simulation. There is no clear understanding of the real mechanical state in rock pillars. Mutual disturbance often occurs between chamber groups

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  • Underground cavern group rock pillar stability estimation method
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Embodiment Construction

[0024] With reference to the accompanying drawings, the underground cavern group rock pillar stability evaluation method provided by the present invention can be carried out as follows during implementation:

[0025] (1) Excavate auxiliary tunnel 1 in an area with similar geological conditions to the excavation of underground caverns, and measure the initial stress in the auxiliary tunnel to determine the magnitude and direction of the initial stress for later data analysis; the auxiliary tunnel line should be It is basically perpendicular to the axis of the underground cavern group, so that the axis of the expanded excavation hole arranged later can be parallel to the direction of the underground cavern group, so that the in-situ stress field in which the expanded excavation hole is located is the same as that of the actual project.

[0026] The diameter of the auxiliary tunnel is generally 5~6m. The hole shape is preferably circular, and mechanical excavation is adopted to av...

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Abstract

The present invention provides an underground cavern group rock pillar stability estimation method. The method comprises the following steps of: (1) arranging an auxiliary cavern; (2) arranging expanded digging caverns; (3) arranging monitoring holes from the auxiliary cavern at the middle position of the two expanded digging caverns, and arranging stress detectors at the wall of the monitoring holes; and (4) performing expanding excavation of the expanded digging caverns at different time, checking read of monitoring instruments after the expanding excavation each time, wherein if the read has no obvious change, it shows that rock pillars between the expanded digging caverns are still in a safe state, the expanding excavation can be continuously performed, if the read of the monitoring instruments has obvious change, it shows that the initial stress states in the rock pillars have been changed, there is mutual interference between the two expanded digging caverns, and a spacing between the expanded digging caverns is a safe spacing of the caverns. The thickness of rock pillars is changed by manual operation to excite inherent strain change of the rock pillars so as to achieve reasonable assessment of the spacing of the cavern group, fully reflect actual geological conditions and crustal stress conditions, and therefore, the underground cavern group rock pillar stability estimation method has an important value for reasonable arrangement of the cavern group, the cavern diameter design, saving of engineering investment and the like.

Description

technical field [0001] The invention relates to a method for evaluating the stability of underground cavern group rock pillars, and is mainly aimed at deep underground projects with multiple caverns and multiple tunnels, such as underground powerhouse cavern groups, mountain-crossing tunnel groups, hydraulic tunnel groups and the like in hydropower projects. technical background [0002] In the construction process of underground caverns or tunnels in hydropower, subways, highways or railways, a parallel arrangement scheme is often adopted. The rock mass between the two caverns is called a rock pillar, and the thickness of the rock pillar is directly related to the cavern. layout. If the thickness of the rock pillars between the two caverns is too large, it will not only increase the project cost, but also affect the use function of the project; if the thickness of the rock pillars is too small, it will cause problems in the construction and operation between the two caverns...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): G01M99/00
CPCG01M99/00
Inventor 刘宁张春生褚卫江陈平志
Owner POWERCHINA HUADONG ENG COPORATION LTD
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