Analyses and prevention of coal spontaneous combustion risk in gobs of coal mine during withdrawal period

Coal spontaneous combustion (CSC) in gob causes notorious safety issues to workers, especially during withdrawal period. Withdrawal period was normally divided into three stages (initial stage, expanding back channel stage and equipment returning stage) when evaluating and preventing the risk of CSC...

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Main Authors: Wan-Xing Ren, Qing Guo, Hui-Hui Yang
Format: Article
Language:English
Published: Taylor & Francis Group 2019-01-01
Series:Geomatics, Natural Hazards & Risk
Subjects:
Online Access:http://dx.doi.org/10.1080/19475705.2018.1523237
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spelling doaj-06c74c6429e04fe6b8abb767376fc8392020-11-25T01:15:32ZengTaylor & Francis GroupGeomatics, Natural Hazards & Risk1947-57051947-57132019-01-0110135336710.1080/19475705.2018.15232371523237Analyses and prevention of coal spontaneous combustion risk in gobs of coal mine during withdrawal periodWan-Xing Ren0Qing Guo1Hui-Hui Yang2China University of Mining & TechnologyChina University of Mining & TechnologyWest Virginia UniversityCoal spontaneous combustion (CSC) in gob causes notorious safety issues to workers, especially during withdrawal period. Withdrawal period was normally divided into three stages (initial stage, expanding back channel stage and equipment returning stage) when evaluating and preventing the risk of CSC. This study first analyzed the characteristics of ventilation system at each stage, such as oxidized zone movement, local fire wind pressure and air leakage. Then, principles and specialized measurements were applied to minimize the ranges and effects of CSC in gob. In detail, this includes reducing the total air volume flow of mining face in initial stage, adding windscreen in outlet way and local fan in inlet way to increase the pressure of working face, and lowering external air leakage. Considering the working face ventilation area shrinks at equipment returning stage, keeping it bigger than windscreen’s areas can help to reduce air leakage. Further, foamed gel was grouted into gob to narrow and stop the moving forward of oxidized zone. Field application was applied in Zhang Shuang-lou coal mine. Findings of these studies could be used in other coal mine with similar conditions during withdrawal period.http://dx.doi.org/10.1080/19475705.2018.1523237coal spontaneous combustionwithdrawalfire wind pressureventilation systemfoamed gel
collection DOAJ
language English
format Article
sources DOAJ
author Wan-Xing Ren
Qing Guo
Hui-Hui Yang
spellingShingle Wan-Xing Ren
Qing Guo
Hui-Hui Yang
Analyses and prevention of coal spontaneous combustion risk in gobs of coal mine during withdrawal period
Geomatics, Natural Hazards & Risk
coal spontaneous combustion
withdrawal
fire wind pressure
ventilation system
foamed gel
author_facet Wan-Xing Ren
Qing Guo
Hui-Hui Yang
author_sort Wan-Xing Ren
title Analyses and prevention of coal spontaneous combustion risk in gobs of coal mine during withdrawal period
title_short Analyses and prevention of coal spontaneous combustion risk in gobs of coal mine during withdrawal period
title_full Analyses and prevention of coal spontaneous combustion risk in gobs of coal mine during withdrawal period
title_fullStr Analyses and prevention of coal spontaneous combustion risk in gobs of coal mine during withdrawal period
title_full_unstemmed Analyses and prevention of coal spontaneous combustion risk in gobs of coal mine during withdrawal period
title_sort analyses and prevention of coal spontaneous combustion risk in gobs of coal mine during withdrawal period
publisher Taylor & Francis Group
series Geomatics, Natural Hazards & Risk
issn 1947-5705
1947-5713
publishDate 2019-01-01
description Coal spontaneous combustion (CSC) in gob causes notorious safety issues to workers, especially during withdrawal period. Withdrawal period was normally divided into three stages (initial stage, expanding back channel stage and equipment returning stage) when evaluating and preventing the risk of CSC. This study first analyzed the characteristics of ventilation system at each stage, such as oxidized zone movement, local fire wind pressure and air leakage. Then, principles and specialized measurements were applied to minimize the ranges and effects of CSC in gob. In detail, this includes reducing the total air volume flow of mining face in initial stage, adding windscreen in outlet way and local fan in inlet way to increase the pressure of working face, and lowering external air leakage. Considering the working face ventilation area shrinks at equipment returning stage, keeping it bigger than windscreen’s areas can help to reduce air leakage. Further, foamed gel was grouted into gob to narrow and stop the moving forward of oxidized zone. Field application was applied in Zhang Shuang-lou coal mine. Findings of these studies could be used in other coal mine with similar conditions during withdrawal period.
topic coal spontaneous combustion
withdrawal
fire wind pressure
ventilation system
foamed gel
url http://dx.doi.org/10.1080/19475705.2018.1523237
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