|
Global Geology 2021, 24(4) 239-248 DOI:
ISSN: 1673-9736 CN: 22-1371/P |
|
|
|
|
Current Issue |
Archive |
Search
[Print]
[Close]
|
|
|
|
Forward simulation of coal fire model by transient electromagnetic method with electrical source |
|
|
ZENG Fanjie1
,SONG Shuanlin2
and WANG Zhejiang1* |
|
|
1. College of Geo-Exploration Science and Technology,Jilin University,Changchun 130026,China;
2. State Key Laboratory of Coal Mine Safety Technology,Shenyang Research Institute of China Coal
Technology & Engineering Group,Shenyang 113122,China |
|
|
Abstract:
Uncontrolled coal fires are natural disasters that may cause mineral loss and environmental damage.
The traditional loop source transient electromagnetic method can effectively detect the low-resistivity region of coal fires,but its detection efficiency is not so good for high-resistivity regions. In view of this limitation,a technique based on electrical source transient electromagnetics is proposed in this paper to detect high-resistivity regions in the spontaneous combustion process of coal. Considering the complex geometry of the coal fire area,an unstructured tetrahedral grid is used in this study to realize the spatial discretization of the model,and solve the electromagnetic field based on a vector finite element algorithm. Numerical analysis is used to investigate methods for detecting coal fires and the characteristics of effective anomalies are further examined to provide guidance for practical detection. |
|
Keywords:
electrical source
transient electromagnetic method
coal spontaneous combustion
non-structural
finite element algorithm
|
|
|
Received Revised Online: |
|
|
DOI: |
|
|
Fund: |
|
Corresponding Authors: |
|
Email: |
|
|
About author: |
|
|
References: |
|
Similar articles |
1.XING Jian, SHAN Xuanlong, REN Xianjun, YI Jian, LIU Chaoyang and NIU Penghui.Formation mechanism of high-quality reservoirs in intermediate volcanic rocks: A case study of Longfengshan area in Songliao Basin[J]. Global Geology, 2022,25(2): 69-83 |
2.NIU Penghui, SHAN Xuanlong, REN Xianjun,YI Jian,LIU Chaoyang and XING Jian.Microscopic pore characteristics of andesite and implication from mineral content: A case study in Huoshiling Formation of Changling fault depression, Songliao Basin[J]. Global Geology, 2022,25(2): 84-96 |
3.YUAN Qiyu, LI Yangchun, SONG Chongyu,SUN Renbin and ZHANG Xingang.Prospect for strategic minerals exploration and development, investment environment and cooperation in Mozambique[J]. Global Geology, 2022,25(2): 97-108 |
4.WANG He and WU Qiong.Prediction of surface subsidence in Changchun City based on LSTM network[J]. Global Geology, 2022,25(2): 109-115 |
5.ZHANG Haobin, YANG Changbao,GUO Huali and HOU Guanglei.Characteristics of land use conversion in soda saline-alkali soil region of central Northeast China[J]. Global Geology, 2022,25(2): 116-125 |
6.XIU Chun, HUO Suxia, WANG Guogang,DUAN Haiqin, CHEN Shengtao and YAO Haiyan.Insights from coastline survey in Shandong Province, China[J]. Global Geology, 2022,25(2): 126-132 |
7.DONG Xuri and WANG Xin.Application of artificial bee colony algorithm in Rayleigh wave inversion[J]. Global Geology, 2022,25(1): 11-15 |
8.LUAN Yiming, HE Jinxin, DONG Yongsheng, JIANG Tian and XIAO Zhiqiang.Extraction of altered minerals from Aster remote sensing data in Gongchangling iron deposit of Liaoning, China[J]. Global Geology, 2022,25(1): 16-25 |
9.SHEN Jian.Research on influencing factors of coupling in SIMO antenna[J]. Global Geology, 2022,25(1): 34-40 |
10.SU Zhenning, JIAO Jian, ZHOU Shuai, YU Ping and ZHAO Xiao.Aeromagnetic compensation method based on ridge regression algorithm[J]. Global Geology, 2022,25(1): 41-48 |
11.WANG Mingchang, ZHOU Yuyang, LI Mingjie, JI Xue and LIU Ziwei.Literature analysis of Dendrolimus disasters based on remote sensing monitoring[J]. Global Geology, 2022,25(1): 49-59 |
12.ZHANG Lan and ZHANG Yanhong.Object-oriented crop classification based on UAV remote sensing imagery[J]. Global Geology, 2022,25(1): 60-68 |
13.CAO Jin and LIU Yunhe.Three-dimensional magnetotelluric forward modeling using structural-point EFGM and FEM coupling method[J]. Global Geology, 2022,25(1): 1-10 |
14.RONG Zhihao and LIU Yunhe.3D joint inversion of controlled-source audio-frequency magnetotelluric and magnetotelluric data[J]. Global Geology, 2022,25(1): 26-33 |
15.Shams M. Kamran,WANG Pujun,Nasar Khan and Muhammad Hassan.Organic geochemistry and source rock potential assessment
of Late Paleocene Patala Formation in Margalla Hill Range,North Pakistan[J]. Global Geology, 2021,24(4): 213-225 |
|
Copyright by Global Geology |