Gas seepage equation of deep mined coal seams and its application

In order to obtain a gas seepage law of deep mined coal seams, according to the properties of coalbed methane seepage in in-situ stress and geothermal temperature fields, the gas seepage equation of deep mined coal seams with the Klinkenberg effect was obtained by confirming the coatbed methane perm...

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Published inJournal of China University of Mining and Technology Vol. 18; no. 4; pp. 483 - 487
Main Authors HU, Guo-zhong, WANG, Hong-tu, TAN, Hai-xiang, FAN, Xiao-gang, YUAN, Zhi-gang
Format Journal Article
LanguageEnglish
Published Elsevier B.V 01.12.2008
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ISSN1006-1266
DOI10.1016/S1006-1266(08)60280-1

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Abstract In order to obtain a gas seepage law of deep mined coal seams, according to the properties of coalbed methane seepage in in-situ stress and geothermal temperature fields, the gas seepage equation of deep mined coal seams with the Klinkenberg effect was obtained by confirming the coatbed methane permeability in in-situ stress and geothermal temperature fields. Aimed at the condition in which the coal seams have or do not have an outcrop and outlet on the ground, the application of the gas seepage equation of deep mined coal seams in in-situ stress and geothermal temperature fields on the gas pressure calculation of deep mined coal seams was investigated. The comparison between calculated and measured results indicates that the calculation method of gas pressure, based on the gas seepage equation of deep mined coal seams in in-situ stress and geothermal temperature fields can accu- rately be identical with the measured values and theoretically perfect the calculation method of gas pressure of deep mined coal seams.
AbstractList In order to obtain a gas seepage law of deep mined coal seams, according to the properties of coalbed methane seepage in in-situ stress and geothermal temperature fields, the gas seepage equation of deep mined coal seams with the Klinkenberg effect was obtained by confirming the coalbed methane permeability in in-situ stress and geothermal temperature fields. Aimed at the condition in which the coal seams have or do not have an outcrop and outlet on the ground, the application of the gas seepage equation of deep mined coal seams in in-situ stress and geothermal temperature fields on the gas pressure calculation of deep mined coal seams was investigated. The comparison between calculated and measured results indicates that the calculation method of gas pressure, based on the gas seepage equation of deep mined coal seams in in-situ stress and geothermal temperature fields can accurately be identical with the measured values and theoretically perfect the calculation method of gas pressure of deep mined coal seams.
In order to obtain a gas seepage law of deep mined coal seams, according to the properties of coalbed methane seepage in in-situ stress and geothermal temperature fields, the gas seepage equation of deep mined coal seams with the Klinkenberg effect was obtained by confirming the coatbed methane permeability in in-situ stress and geothermal temperature fields. Aimed at the condition in which the coal seams have or do not have an outcrop and outlet on the ground, the application of the gas seepage equation of deep mined coal seams in in-situ stress and geothermal temperature fields on the gas pressure calculation of deep mined coal seams was investigated. The comparison between calculated and measured results indicates that the calculation method of gas pressure, based on the gas seepage equation of deep mined coal seams in in-situ stress and geothermal temperature fields can accu- rately be identical with the measured values and theoretically perfect the calculation method of gas pressure of deep mined coal seams.
Author HU Guo-zhong WANG Hong-tu TAN Hai-xiang FAN Xiao-gang YUAN Zhi-gang
AuthorAffiliation Key Lab for Exploitation of China Southwestern Resources & Environmental Disaster Control Engineering, Ministry of Education, Chongqing University, Chongqing 400030, China
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10.1016/0148-9062(84)91534-1
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10.1023/A:1006572324102
10.2118/7551-PA
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Issue 4
Keywords deep mining
geothermal temperature field
gas seepage equation of coal seam
in-situ stress field
gas pressure
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geothermal temperature field
in-situ stress field
gas pressure
gas seepage equation of coal seam
deep mining; in-situ stress field; geothermal temperature field; gas seepage equation of coal seam; gas pressure
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  article-title: Gas flow in porous media with Klinkenberg effects
  publication-title: Transp Porous Media
  doi: 10.1023/A:1006535211684
– volume: 17
  start-page: 447
  issue: 4
  year: 2007
  ident: 10.1016/S1006-1266(08)60280-1_bib2
  article-title: Characteristics of gas emission at super-length fully-mechanized top coal caving face
  publication-title: Journal of China University of Mining & Technology
  doi: 10.1016/S1006-1266(07)60123-0
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Snippet In order to obtain a gas seepage law of deep mined coal seams, according to the properties of coalbed methane seepage in in-situ stress and geothermal...
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SubjectTerms deep mining
gas pressure
gas seepage equation of coal seam
geothermal temperature field
in-situ stress field
地热温度
深部矿床开采
瓦斯泄漏
Title Gas seepage equation of deep mined coal seams and its application
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Volume 18
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