Study on the law of coal resistivity variation in the process of gas adsorption/desorption

In order to detect coal and gas outburst disasters by means of electric exploration technology, the characteristics of gas adsorption/desorption electrical response were studied. The law of resistivity variation of different coal samples was investigated under different gas pressures with the aid of...

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Main Authors: Peng Chen, Shiyang Peng, Tao Yang, Xuexi Chen, Yongjie Liu, Pengfei Wang
Format: Article
Language:English
Published: De Gruyter 2019-11-01
Series:Open Physics
Subjects:
Online Access:https://doi.org/10.1515/phys-2019-0064
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author Peng Chen
Shiyang Peng
Tao Yang
Xuexi Chen
Yongjie Liu
Pengfei Wang
author_facet Peng Chen
Shiyang Peng
Tao Yang
Xuexi Chen
Yongjie Liu
Pengfei Wang
author_sort Peng Chen
collection DOAJ
description In order to detect coal and gas outburst disasters by means of electric exploration technology, the characteristics of gas adsorption/desorption electrical response were studied. The law of resistivity variation of different coal samples was investigated under different gas pressures with the aid of a self-built real-time test system of coal resistivity during gas adsorption/desorption. In addition, the mechanism of coal resistivity variation was studied. The research results indicate that coal resistivity decreases during gas adsorption and increases during gas desorption, but generally it cannot return to the initial value. Gas influences coal resistivity through a variety of mechanisms. In the gas adsorption process, coal resistivity decreases under the combined effect of surface energy decline, skeleton expansion, free gas pressure and adsorption swelling stress. In addition, as the gas pressure rises, the resistivity varies in a wider range. The coal resistivity shares the relation of y = a + b ln(x + c) with gas pressure and the relation of y = ax + b with the content of adsorbed gas. This study lays a foundation for the application of electrical prospecting technology to gas hazard prediction and provides technical support for safe production in coal mines.
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spelling doaj.art-8d09f8de533b4b46b7f4040afa5455672022-12-21T22:40:29ZengDe GruyterOpen Physics2391-54712019-11-0117162363010.1515/phys-2019-0064phys-2019-0064Study on the law of coal resistivity variation in the process of gas adsorption/desorptionPeng Chen0Shiyang Peng1Tao Yang2Xuexi Chen3Yongjie Liu4Pengfei Wang5School of Safety Engineering, North China Institute of Science and Technology, Beijing, 101601, ChinaSchool of Safety Engineering, North China Institute of Science and Technology, Beijing, 101601, ChinaSchool of Safety Engineering, North China Institute of Science and Technology, Beijing, 101601, ChinaSchool of Safety Engineering, North China Institute of Science and Technology, Beijing, 101601, ChinaSchool of Safety Engineering, North China Institute of Science and Technology, Beijing, 101601, ChinaSchool of Safety Engineering, North China Institute of Science and Technology, Beijing, 101601, ChinaIn order to detect coal and gas outburst disasters by means of electric exploration technology, the characteristics of gas adsorption/desorption electrical response were studied. The law of resistivity variation of different coal samples was investigated under different gas pressures with the aid of a self-built real-time test system of coal resistivity during gas adsorption/desorption. In addition, the mechanism of coal resistivity variation was studied. The research results indicate that coal resistivity decreases during gas adsorption and increases during gas desorption, but generally it cannot return to the initial value. Gas influences coal resistivity through a variety of mechanisms. In the gas adsorption process, coal resistivity decreases under the combined effect of surface energy decline, skeleton expansion, free gas pressure and adsorption swelling stress. In addition, as the gas pressure rises, the resistivity varies in a wider range. The coal resistivity shares the relation of y = a + b ln(x + c) with gas pressure and the relation of y = ax + b with the content of adsorbed gas. This study lays a foundation for the application of electrical prospecting technology to gas hazard prediction and provides technical support for safe production in coal mines.https://doi.org/10.1515/phys-2019-0064resistivityadsorption/desorptiongas pressureaction mechanism93.85.-q51.70.+f52.25.mq
spellingShingle Peng Chen
Shiyang Peng
Tao Yang
Xuexi Chen
Yongjie Liu
Pengfei Wang
Study on the law of coal resistivity variation in the process of gas adsorption/desorption
Open Physics
resistivity
adsorption/desorption
gas pressure
action mechanism
93.85.-q
51.70.+f
52.25.mq
title Study on the law of coal resistivity variation in the process of gas adsorption/desorption
title_full Study on the law of coal resistivity variation in the process of gas adsorption/desorption
title_fullStr Study on the law of coal resistivity variation in the process of gas adsorption/desorption
title_full_unstemmed Study on the law of coal resistivity variation in the process of gas adsorption/desorption
title_short Study on the law of coal resistivity variation in the process of gas adsorption/desorption
title_sort study on the law of coal resistivity variation in the process of gas adsorption desorption
topic resistivity
adsorption/desorption
gas pressure
action mechanism
93.85.-q
51.70.+f
52.25.mq
url https://doi.org/10.1515/phys-2019-0064
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AT taoyang studyonthelawofcoalresistivityvariationintheprocessofgasadsorptiondesorption
AT xuexichen studyonthelawofcoalresistivityvariationintheprocessofgasadsorptiondesorption
AT yongjieliu studyonthelawofcoalresistivityvariationintheprocessofgasadsorptiondesorption
AT pengfeiwang studyonthelawofcoalresistivityvariationintheprocessofgasadsorptiondesorption