Numerical Simulation of Seepage-Heat-Solid Coupling of Gas Seepage in Prepumped Boreholes under Electrothermal High Temperature Field

In order to verify the law of coal bed gas desorption and permeability under electrothermal high-temperature field, by establishing the mathematical model of gas seepage-heat-solid coupling, and taking gas drainage working face in Guizhou as an engineering example, the characteristics of the high-te...

Full description

Saved in:
Bibliographic Details
Main Authors: Xionggang Xie, Jin Yang, XiangYing Luo, Jianjun Ren
Format: Article
Language:English
Published: Wiley 2022-01-01
Series:Geofluids
Online Access:http://dx.doi.org/10.1155/2022/8706365
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1832545277591945216
author Xionggang Xie
Jin Yang
XiangYing Luo
Jianjun Ren
author_facet Xionggang Xie
Jin Yang
XiangYing Luo
Jianjun Ren
author_sort Xionggang Xie
collection DOAJ
description In order to verify the law of coal bed gas desorption and permeability under electrothermal high-temperature field, by establishing the mathematical model of gas seepage-heat-solid coupling, and taking gas drainage working face in Guizhou as an engineering example, the characteristics of the high-temperature field of coal under different heating hole temperatures are simulated. The COMSOL software is used to simulate the high-temperature field characteristics, thermal damage, and permeability of coal under different heating hole temperatures. The numerical simulation results show the following:(1) the influence trend of a high-temperature field on coal thermal damage and permeability is consistent, when the heating temperature is higher than 600°C, the thermal damage and permeability of coal seam change suddenly and increase with the increase of temperature. (2) When the temperature of a heating hole is 200-800°C, the gas permeability in the damaged area increases with the increase of temperature. When the heating temperature is greater than 600°C, the radial and axial permeability around the heating hole will increase. (3) Compared with the experimental data obtained by the existing researchers, the simulation results of coal permeability under the electric heating high-temperature field have a high consistency with the experimental results of Junrong and others.
format Article
id doaj-art-fed11723c5a14710b7872fc03cb62e1c
institution Kabale University
issn 1468-8123
language English
publishDate 2022-01-01
publisher Wiley
record_format Article
series Geofluids
spelling doaj-art-fed11723c5a14710b7872fc03cb62e1c2025-02-03T07:26:19ZengWileyGeofluids1468-81232022-01-01202210.1155/2022/8706365Numerical Simulation of Seepage-Heat-Solid Coupling of Gas Seepage in Prepumped Boreholes under Electrothermal High Temperature FieldXionggang Xie0Jin Yang1XiangYing Luo2Jianjun Ren3Institute of MiningInstitute of MiningInstitute of MiningCollege of Physics and EngineeringIn order to verify the law of coal bed gas desorption and permeability under electrothermal high-temperature field, by establishing the mathematical model of gas seepage-heat-solid coupling, and taking gas drainage working face in Guizhou as an engineering example, the characteristics of the high-temperature field of coal under different heating hole temperatures are simulated. The COMSOL software is used to simulate the high-temperature field characteristics, thermal damage, and permeability of coal under different heating hole temperatures. The numerical simulation results show the following:(1) the influence trend of a high-temperature field on coal thermal damage and permeability is consistent, when the heating temperature is higher than 600°C, the thermal damage and permeability of coal seam change suddenly and increase with the increase of temperature. (2) When the temperature of a heating hole is 200-800°C, the gas permeability in the damaged area increases with the increase of temperature. When the heating temperature is greater than 600°C, the radial and axial permeability around the heating hole will increase. (3) Compared with the experimental data obtained by the existing researchers, the simulation results of coal permeability under the electric heating high-temperature field have a high consistency with the experimental results of Junrong and others.http://dx.doi.org/10.1155/2022/8706365
spellingShingle Xionggang Xie
Jin Yang
XiangYing Luo
Jianjun Ren
Numerical Simulation of Seepage-Heat-Solid Coupling of Gas Seepage in Prepumped Boreholes under Electrothermal High Temperature Field
Geofluids
title Numerical Simulation of Seepage-Heat-Solid Coupling of Gas Seepage in Prepumped Boreholes under Electrothermal High Temperature Field
title_full Numerical Simulation of Seepage-Heat-Solid Coupling of Gas Seepage in Prepumped Boreholes under Electrothermal High Temperature Field
title_fullStr Numerical Simulation of Seepage-Heat-Solid Coupling of Gas Seepage in Prepumped Boreholes under Electrothermal High Temperature Field
title_full_unstemmed Numerical Simulation of Seepage-Heat-Solid Coupling of Gas Seepage in Prepumped Boreholes under Electrothermal High Temperature Field
title_short Numerical Simulation of Seepage-Heat-Solid Coupling of Gas Seepage in Prepumped Boreholes under Electrothermal High Temperature Field
title_sort numerical simulation of seepage heat solid coupling of gas seepage in prepumped boreholes under electrothermal high temperature field
url http://dx.doi.org/10.1155/2022/8706365
work_keys_str_mv AT xionggangxie numericalsimulationofseepageheatsolidcouplingofgasseepageinprepumpedboreholesunderelectrothermalhightemperaturefield
AT jinyang numericalsimulationofseepageheatsolidcouplingofgasseepageinprepumpedboreholesunderelectrothermalhightemperaturefield
AT xiangyingluo numericalsimulationofseepageheatsolidcouplingofgasseepageinprepumpedboreholesunderelectrothermalhightemperaturefield
AT jianjunren numericalsimulationofseepageheatsolidcouplingofgasseepageinprepumpedboreholesunderelectrothermalhightemperaturefield