A New Method to Predict Shock-Type Coal-Gas Outburst Disaster and Its Application

Coal-gas outburst is the one of most serious coal mine dynamic disasters which affects safety mining, with 39 deaths reported during 2019 in China. The mechanism of coal-gas outbursts is complex, and the prediction methods are immature at present. This article was based on previous research results....

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Main Authors: Pengfei Lyu, Tan Li, Xuehua Chen
Format: Article
Language:English
Published: Hindawi-Wiley 2023-01-01
Series:Geofluids
Online Access:http://dx.doi.org/10.1155/2023/6957653
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author Pengfei Lyu
Tan Li
Xuehua Chen
author_facet Pengfei Lyu
Tan Li
Xuehua Chen
author_sort Pengfei Lyu
collection DOAJ
description Coal-gas outburst is the one of most serious coal mine dynamic disasters which affects safety mining, with 39 deaths reported during 2019 in China. The mechanism of coal-gas outbursts is complex, and the prediction methods are immature at present. This article was based on previous research results. Firstly, the occurrence mechanism of coal-gas outburst disasters was summarized. It is clear that the occurrence of coal-gas outburst disasters is jointly affected based on the stability of the static structure of coal-rock, the gas parameters, and the release intensity of shock stress. Secondly, the stability evaluation models of coal-rock static structure, gas parameters, and shock stress release intensity were built, respectively, based on the influence factors. Then they were coupled and supposed to form a new prediction model. Finally, the prediction method was applied to the Ji15-17200 working face of No.12 coal mine in Pingmei company. The working face was divided into three danger levels including weak outburst danger area, medium outburst danger area, and strong outburst danger area. The accuracy of the predicted results was analyzed based on the actual mining condition of the Ji15-17200 working face. The results show that prediction accuracy is high, and it can be used for actual applications. The research results are of guiding significance to better prevent and control coal-gas outburst accidents and ensure safe production in coal mines.
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spelling doaj.art-1c7e5088ea2d42de93117ee92fcec6612023-02-13T01:08:12ZengHindawi-WileyGeofluids1468-81232023-01-01202310.1155/2023/6957653A New Method to Predict Shock-Type Coal-Gas Outburst Disaster and Its ApplicationPengfei Lyu0Tan Li1Xuehua Chen2Institute of Mining and CoalInstitute of Mining and CoalCollege of MiningCoal-gas outburst is the one of most serious coal mine dynamic disasters which affects safety mining, with 39 deaths reported during 2019 in China. The mechanism of coal-gas outbursts is complex, and the prediction methods are immature at present. This article was based on previous research results. Firstly, the occurrence mechanism of coal-gas outburst disasters was summarized. It is clear that the occurrence of coal-gas outburst disasters is jointly affected based on the stability of the static structure of coal-rock, the gas parameters, and the release intensity of shock stress. Secondly, the stability evaluation models of coal-rock static structure, gas parameters, and shock stress release intensity were built, respectively, based on the influence factors. Then they were coupled and supposed to form a new prediction model. Finally, the prediction method was applied to the Ji15-17200 working face of No.12 coal mine in Pingmei company. The working face was divided into three danger levels including weak outburst danger area, medium outburst danger area, and strong outburst danger area. The accuracy of the predicted results was analyzed based on the actual mining condition of the Ji15-17200 working face. The results show that prediction accuracy is high, and it can be used for actual applications. The research results are of guiding significance to better prevent and control coal-gas outburst accidents and ensure safe production in coal mines.http://dx.doi.org/10.1155/2023/6957653
spellingShingle Pengfei Lyu
Tan Li
Xuehua Chen
A New Method to Predict Shock-Type Coal-Gas Outburst Disaster and Its Application
Geofluids
title A New Method to Predict Shock-Type Coal-Gas Outburst Disaster and Its Application
title_full A New Method to Predict Shock-Type Coal-Gas Outburst Disaster and Its Application
title_fullStr A New Method to Predict Shock-Type Coal-Gas Outburst Disaster and Its Application
title_full_unstemmed A New Method to Predict Shock-Type Coal-Gas Outburst Disaster and Its Application
title_short A New Method to Predict Shock-Type Coal-Gas Outburst Disaster and Its Application
title_sort new method to predict shock type coal gas outburst disaster and its application
url http://dx.doi.org/10.1155/2023/6957653
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