Numerical simulation of realistic top coal caving intervals under different top coal thicknesses in longwall top coal caving working face

Abstract In the process of longwall top coal caving, the selection of the top coal caving interval along the advancing direction of the working face has an important effect on the top coal recovery. To explore a realistic top coal caving interval of the longwall top coal caving working face, longwal...

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Main Authors: Chuang Liu, Huamin Li
Format: Article
Language:English
Published: Nature Publishing Group 2021-06-01
Series:Scientific Reports
Online Access:https://doi.org/10.1038/s41598-021-92624-y
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spelling doaj-e9d28f4f47464cd89a279ca8a89be1a42021-06-27T11:32:35ZengNature Publishing GroupScientific Reports2045-23222021-06-0111111210.1038/s41598-021-92624-yNumerical simulation of realistic top coal caving intervals under different top coal thicknesses in longwall top coal caving working faceChuang Liu0Huamin Li1School of Resource and Safety Engineering, Henan University of EngineeringSchool of Energy Science and Engineering, Henan Polytechnic UniversityAbstract In the process of longwall top coal caving, the selection of the top coal caving interval along the advancing direction of the working face has an important effect on the top coal recovery. To explore a realistic top coal caving interval of the longwall top coal caving working face, longwall top coal caving panel 8202 in the Tongxin Coal Mine is used as an example, and 30 numerical simulation models are established by using Continuum-based Distinct Element Method simulation software to study the top coal recovery with 4.0 m, 8.0 m, 12.0 m, 16.0 m, 20.0 m and 24.0 m top coal thicknesses and 0.8 m, 1.0 m, 1.2 m, 1.6 m and 2.4 m top coal caving intervals. The results show that with an increase in the top coal caving interval, the single top coal caving amount increases. The top coal recovery is the highest with a 0.8 m top coal caving interval when the thickness of the top coal is 4.0 m, and it is the highest with a 1.2 m top coal caving interval when the coal seam thickness is greater than 4.0 m. These results provide a reference for the selection of a realistic top coal caving interval in thick coal seam caving mining.https://doi.org/10.1038/s41598-021-92624-y
collection DOAJ
language English
format Article
sources DOAJ
author Chuang Liu
Huamin Li
spellingShingle Chuang Liu
Huamin Li
Numerical simulation of realistic top coal caving intervals under different top coal thicknesses in longwall top coal caving working face
Scientific Reports
author_facet Chuang Liu
Huamin Li
author_sort Chuang Liu
title Numerical simulation of realistic top coal caving intervals under different top coal thicknesses in longwall top coal caving working face
title_short Numerical simulation of realistic top coal caving intervals under different top coal thicknesses in longwall top coal caving working face
title_full Numerical simulation of realistic top coal caving intervals under different top coal thicknesses in longwall top coal caving working face
title_fullStr Numerical simulation of realistic top coal caving intervals under different top coal thicknesses in longwall top coal caving working face
title_full_unstemmed Numerical simulation of realistic top coal caving intervals under different top coal thicknesses in longwall top coal caving working face
title_sort numerical simulation of realistic top coal caving intervals under different top coal thicknesses in longwall top coal caving working face
publisher Nature Publishing Group
series Scientific Reports
issn 2045-2322
publishDate 2021-06-01
description Abstract In the process of longwall top coal caving, the selection of the top coal caving interval along the advancing direction of the working face has an important effect on the top coal recovery. To explore a realistic top coal caving interval of the longwall top coal caving working face, longwall top coal caving panel 8202 in the Tongxin Coal Mine is used as an example, and 30 numerical simulation models are established by using Continuum-based Distinct Element Method simulation software to study the top coal recovery with 4.0 m, 8.0 m, 12.0 m, 16.0 m, 20.0 m and 24.0 m top coal thicknesses and 0.8 m, 1.0 m, 1.2 m, 1.6 m and 2.4 m top coal caving intervals. The results show that with an increase in the top coal caving interval, the single top coal caving amount increases. The top coal recovery is the highest with a 0.8 m top coal caving interval when the thickness of the top coal is 4.0 m, and it is the highest with a 1.2 m top coal caving interval when the coal seam thickness is greater than 4.0 m. These results provide a reference for the selection of a realistic top coal caving interval in thick coal seam caving mining.
url https://doi.org/10.1038/s41598-021-92624-y
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