Study on the Damage Model of Coal Rock Caused by Hydraulic Pressure and Electrical Impulse in Borehole

The purpose of this study is to study the damage and fracturing effects of high-voltage discharge on coal-rock mass under the action of hydrostatic pressure. Based on the traditional damage evolution model and the change of the effective bearing area and stress around the microcrack of coal-rock mas...

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Main Authors: Xiankai Bao, Jiaxing Cao, Wenxiang Zheng, Junyu Guo, Yuan Liu, Jinchang Zhao
Format: Article
Language:English
Published: Hindawi-Wiley 2021-01-01
Series:Geofluids
Online Access:http://dx.doi.org/10.1155/2021/6627242
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spelling doaj-89875b87372b4dd49e06cb3b3fc5f8cd2021-06-07T02:13:16ZengHindawi-WileyGeofluids1468-81232021-01-01202110.1155/2021/6627242Study on the Damage Model of Coal Rock Caused by Hydraulic Pressure and Electrical Impulse in BoreholeXiankai Bao0Jiaxing Cao1Wenxiang Zheng2Junyu Guo3Yuan Liu4Jinchang Zhao5School of Civil EngineeringState Key Laboratory of Coal Resources and Safe MiningSchool of Mining and CoalSchool of Civil EngineeringSchool of Civil EngineeringSchool of Mining TechnologyThe purpose of this study is to study the damage and fracturing effects of high-voltage discharge on coal-rock mass under the action of hydrostatic pressure. Based on the traditional damage evolution model and the change of the effective bearing area and stress around the microcrack of coal-rock mass on a microscopic scale, the expression of macroscopic damage variation of coal-rock mass under the action of electrohydraulic coupling was derived, and its damage constitutive relation was established. The high-voltage pulse water shock stress test of coal-rock mass under the conditions of different water pressures and voltages was carried out, and its damage numerical model was established by the ABAQUS/XFEM. The damage variable values of coal-rock mass with different electrohydraulic parameters were compared to characterize the generation and expansion of internal macroscopic cracks. From the results, it is shown that the damage variable based on the effective bearing area and stress around the crack can represent the morphology and expansion change of crack of coal-rock mass with different electrohydraulic parameters clearly and quantitatively. Different hydrostatic pressures and discharge voltages have influence on the damage variables of coal-rock mass, but different influencing degrees cause different damages on coal-rock mass. The damage of coal rock can be characterized by the change of the effective bearing area and stress around microcracks in coal body. So, stress testing and numerical simulation have verified the correctness of the damage model.http://dx.doi.org/10.1155/2021/6627242
collection DOAJ
language English
format Article
sources DOAJ
author Xiankai Bao
Jiaxing Cao
Wenxiang Zheng
Junyu Guo
Yuan Liu
Jinchang Zhao
spellingShingle Xiankai Bao
Jiaxing Cao
Wenxiang Zheng
Junyu Guo
Yuan Liu
Jinchang Zhao
Study on the Damage Model of Coal Rock Caused by Hydraulic Pressure and Electrical Impulse in Borehole
Geofluids
author_facet Xiankai Bao
Jiaxing Cao
Wenxiang Zheng
Junyu Guo
Yuan Liu
Jinchang Zhao
author_sort Xiankai Bao
title Study on the Damage Model of Coal Rock Caused by Hydraulic Pressure and Electrical Impulse in Borehole
title_short Study on the Damage Model of Coal Rock Caused by Hydraulic Pressure and Electrical Impulse in Borehole
title_full Study on the Damage Model of Coal Rock Caused by Hydraulic Pressure and Electrical Impulse in Borehole
title_fullStr Study on the Damage Model of Coal Rock Caused by Hydraulic Pressure and Electrical Impulse in Borehole
title_full_unstemmed Study on the Damage Model of Coal Rock Caused by Hydraulic Pressure and Electrical Impulse in Borehole
title_sort study on the damage model of coal rock caused by hydraulic pressure and electrical impulse in borehole
publisher Hindawi-Wiley
series Geofluids
issn 1468-8123
publishDate 2021-01-01
description The purpose of this study is to study the damage and fracturing effects of high-voltage discharge on coal-rock mass under the action of hydrostatic pressure. Based on the traditional damage evolution model and the change of the effective bearing area and stress around the microcrack of coal-rock mass on a microscopic scale, the expression of macroscopic damage variation of coal-rock mass under the action of electrohydraulic coupling was derived, and its damage constitutive relation was established. The high-voltage pulse water shock stress test of coal-rock mass under the conditions of different water pressures and voltages was carried out, and its damage numerical model was established by the ABAQUS/XFEM. The damage variable values of coal-rock mass with different electrohydraulic parameters were compared to characterize the generation and expansion of internal macroscopic cracks. From the results, it is shown that the damage variable based on the effective bearing area and stress around the crack can represent the morphology and expansion change of crack of coal-rock mass with different electrohydraulic parameters clearly and quantitatively. Different hydrostatic pressures and discharge voltages have influence on the damage variables of coal-rock mass, but different influencing degrees cause different damages on coal-rock mass. The damage of coal rock can be characterized by the change of the effective bearing area and stress around microcracks in coal body. So, stress testing and numerical simulation have verified the correctness of the damage model.
url http://dx.doi.org/10.1155/2021/6627242
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