Characteristics of apparent resistivity of coals with different particle sizes

The theory and technology of stress released CBM development is a new theory and technology for CBM development of tectonically deformed coals. The research on the apparent resistivity of tectonically deformed coal can provide technical support for the identification of tectonically deformed coal fo...

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Main Authors: Shiqi LIU, Deyi GAO, Shuxun SANG, He WANG
Format: Article
Language:zho
Published: Editorial Department of Coal Science and Technology 2022-12-01
Series:Meitan kexue jishu
Subjects:
Online Access:http://www.mtkxjs.com.cn/article/doi/10.13199/j.cnki.cst.2021-0340
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author Shiqi LIU
Deyi GAO
Shuxun SANG
He WANG
author_facet Shiqi LIU
Deyi GAO
Shuxun SANG
He WANG
author_sort Shiqi LIU
collection DOAJ
description The theory and technology of stress released CBM development is a new theory and technology for CBM development of tectonically deformed coals. The research on the apparent resistivity of tectonically deformed coal can provide technical support for the identification of tectonically deformed coal for the stress release applied extraction of CBM. In this paper, the apparent resistivity and stress-strain monitoring experiments of tectonically deformed coals with different particle sizes were carried out under uniaxial loading, and the change law and response mechanism of the apparent resistivity in the stress-strain process were discussed. The results show that when the axial load is greater than the uniaxial compressive strength, the apparent resistivity of tectonically deformed coal decreases negatively exponentially with the increase of the axial load. When the axial load ≥10 MPa, the sensitivity of the apparent resistivity to the load decreases. With the particle size decreasing, the apparent resistivity of tectonically deformed coal decreases. Under the same axial load, the smaller the particle size is, the more sensitive the apparent resistivity of tectonically deformed coal is to the axial load. Affected by the accumulation mode and cementation type of coal particles, the structural coal of 5~200 mesh(4.000~0.075 mm) is special, with small apparent resistivity and relatively sensitive to load. The changes of apparent resistivity of tectonically deformed coal with axial load can be divided into four stages. In the compaction stage, the apparent resistivity decline of tectonically deformed coal depends on the accumulation mode and cementation type of coal particles. In elastic stage, particle size determines the apparent resistivity decline of tectonically deformed coal. The larger the grain size is, the better the original macropores and microcracks of structural coal remain, the stronger the compressibility is, and the higher the apparent resistivity reduction is. In the dilatation stage, radial deformation and micro-fracturing lead to the increase of apparent resistivity of tectonically deformed coal, while the mechanical strength of tectonically deformed coal determines the change characteristics of apparent resistivity. With the decrease of particle size, the cementation strength and uniaxial compressive strength of tectonically deformed coal increase, while the increase of apparent resistivity decreases. In the continuous elastic stage, crushing and compaction make the particle size distribution of tectonically deformed coal more uniform, and the stacking more compact, which enhances the electronic conductivity and decreases the apparent resistivity.
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spelling doaj.art-109c27962eca48d2a0567b570bacf7d92024-01-18T08:42:50ZzhoEditorial Department of Coal Science and TechnologyMeitan kexue jishu0253-23362022-12-01501216216910.13199/j.cnki.cst.2021-03402021-0340Characteristics of apparent resistivity of coals with different particle sizesShiqi LIU0Deyi GAO1Shuxun SANG2He WANG3Jiangsu Key Laboratory of Coal-based Greenhouse Gas Control and Utilization, China University of Mining and Technology, Xuzhou 221008, ChinaKey Laboratory of CBM Resources and Reservoir Strata Process State Ministry of Education, China University of Mining and Technology, Xuzhou 221116, ChinaJiangsu Key Laboratory of Coal-based Greenhouse Gas Control and Utilization, China University of Mining and Technology, Xuzhou 221008, ChinaKey Laboratory of CBM Resources and Reservoir Strata Process State Ministry of Education, China University of Mining and Technology, Xuzhou 221116, ChinaThe theory and technology of stress released CBM development is a new theory and technology for CBM development of tectonically deformed coals. The research on the apparent resistivity of tectonically deformed coal can provide technical support for the identification of tectonically deformed coal for the stress release applied extraction of CBM. In this paper, the apparent resistivity and stress-strain monitoring experiments of tectonically deformed coals with different particle sizes were carried out under uniaxial loading, and the change law and response mechanism of the apparent resistivity in the stress-strain process were discussed. The results show that when the axial load is greater than the uniaxial compressive strength, the apparent resistivity of tectonically deformed coal decreases negatively exponentially with the increase of the axial load. When the axial load ≥10 MPa, the sensitivity of the apparent resistivity to the load decreases. With the particle size decreasing, the apparent resistivity of tectonically deformed coal decreases. Under the same axial load, the smaller the particle size is, the more sensitive the apparent resistivity of tectonically deformed coal is to the axial load. Affected by the accumulation mode and cementation type of coal particles, the structural coal of 5~200 mesh(4.000~0.075 mm) is special, with small apparent resistivity and relatively sensitive to load. The changes of apparent resistivity of tectonically deformed coal with axial load can be divided into four stages. In the compaction stage, the apparent resistivity decline of tectonically deformed coal depends on the accumulation mode and cementation type of coal particles. In elastic stage, particle size determines the apparent resistivity decline of tectonically deformed coal. The larger the grain size is, the better the original macropores and microcracks of structural coal remain, the stronger the compressibility is, and the higher the apparent resistivity reduction is. In the dilatation stage, radial deformation and micro-fracturing lead to the increase of apparent resistivity of tectonically deformed coal, while the mechanical strength of tectonically deformed coal determines the change characteristics of apparent resistivity. With the decrease of particle size, the cementation strength and uniaxial compressive strength of tectonically deformed coal increase, while the increase of apparent resistivity decreases. In the continuous elastic stage, crushing and compaction make the particle size distribution of tectonically deformed coal more uniform, and the stacking more compact, which enhances the electronic conductivity and decreases the apparent resistivity.http://www.mtkxjs.com.cn/article/doi/10.13199/j.cnki.cst.2021-0340deformed coalsaxial loadcementation typeuniaxial compressive strengthelastic limitmylonitized coalapparent resistivity
spellingShingle Shiqi LIU
Deyi GAO
Shuxun SANG
He WANG
Characteristics of apparent resistivity of coals with different particle sizes
Meitan kexue jishu
deformed coals
axial load
cementation type
uniaxial compressive strength
elastic limit
mylonitized coal
apparent resistivity
title Characteristics of apparent resistivity of coals with different particle sizes
title_full Characteristics of apparent resistivity of coals with different particle sizes
title_fullStr Characteristics of apparent resistivity of coals with different particle sizes
title_full_unstemmed Characteristics of apparent resistivity of coals with different particle sizes
title_short Characteristics of apparent resistivity of coals with different particle sizes
title_sort characteristics of apparent resistivity of coals with different particle sizes
topic deformed coals
axial load
cementation type
uniaxial compressive strength
elastic limit
mylonitized coal
apparent resistivity
url http://www.mtkxjs.com.cn/article/doi/10.13199/j.cnki.cst.2021-0340
work_keys_str_mv AT shiqiliu characteristicsofapparentresistivityofcoalswithdifferentparticlesizes
AT deyigao characteristicsofapparentresistivityofcoalswithdifferentparticlesizes
AT shuxunsang characteristicsofapparentresistivityofcoalswithdifferentparticlesizes
AT hewang characteristicsofapparentresistivityofcoalswithdifferentparticlesizes