Research on Similarity Simulation Experiment of Mine Pressure Appearance in Surface Gully Working Face Based on BOTDA

Author:

Zhang Dingding12ORCID,Huang Zhiming1,Ma Zhe1,Yang Jianfeng12,Chai Jing12

Affiliation:

1. College of Energy Engineering, Xi’an University of Science and Technology, Xi’an 710054, China

2. Key Laboratory of Western Mine Exploitation and Hazard Prevention, Ministry of Education, Xi’an 710054, China

Abstract

In order to study the mountain deflection characteristics and the pressure law of the working face after the mining of a shallow coal seam under the valley terrain, a geometric size of 5.0 × 0.2 × 1.33 m is used in the physical similarity model. Brillouin optical time domain analysis (BOTDA) technology is applied to a similar physical model experiment to monitor the internal strain of the overlying rock. In this paper, the strain law of the horizontal optical fiber at different stages of the instability of the mountain structure is analyzed. Combined with the measurement of the strain field on the surface of the model via digital image correlation (DIC) technology, the optical fiber strain characteristics of the precursor of mountain instability are given. The optical fiber characterization method of working face pressure is proposed, and the working face pressures at different mining stages in gully terrain are characterized. Finally, the relationship between the deflection instability of the mountain and the strong ground pressure on the working face is discussed. The sudden increase in the strain peak point of the horizontally distributed optical fiber strain curve can be used to distinguish the strong ground pressure. At the same time, this conclusion is verified by comparing the measured underground ground pressure values. The research results can promote the application of optical fiber sensing technology in the field of mine engineering.

Funder

National Natural Science Foundation of China

Shanxi Province Qin Chuangyuan “Scientists+Engineers” Team Construction Project

Publisher

MDPI AG

Subject

Electrical and Electronic Engineering,Biochemistry,Instrumentation,Atomic and Molecular Physics, and Optics,Analytical Chemistry

Reference21 articles.

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2. Linkage-induced mechanism and control technology of pressure bump and surface geological damage in shallow coal seam mining of gully area;Li;Arab. J. Geosci.,2019

3. Study on Influence Laws of Strata Behaviors for Shallow Coal Seam Mining beneath Gully Terrain;Wang;Shock Vib.,2021

4. Huang, Q., and He, Y. (2019). Research on overburden movement characteristics of large mining height working face in shallow buried thin bedrock. Energies, 12.

5. Dynamic changes in surface damage induced by high-intensity mining of shallow, thick coal seams in gully areas;Li;Adv. Civ. Eng.,2020

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