Construction and correction of a 3D digital twin for a complex gangue-bearing coal seam

Objective3D digital twin for complex gangue-bearing coal seams are designed to achieve an information-based description of physical coal seams and faithfully map their virtual forms. digital twin is identified as a prerequisite for exploring the efficient cutting of intelligent shearers while provid...

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Main Authors: Meichen ZHANG, Lijuan ZHAO, Yadong WANG, Kai ZHANG
Format: Article
Language:zho
Published: Editorial Office of Coal Geology & Exploration 2024-12-01
Series:Meitian dizhi yu kantan
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Online Access:http://www.mtdzykt.com/article/doi/10.12363/issn.1001-1986.24.09.0568
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author Meichen ZHANG
Lijuan ZHAO
Yadong WANG
Kai ZHANG
author_facet Meichen ZHANG
Lijuan ZHAO
Yadong WANG
Kai ZHANG
author_sort Meichen ZHANG
collection DOAJ
description Objective3D digital twin for complex gangue-bearing coal seams are designed to achieve an information-based description of physical coal seams and faithfully map their virtual forms. digital twin is identified as a prerequisite for exploring the efficient cutting of intelligent shearers while providing an effective data guarantee for achieving unmanned mining. MethodsUsing data on samples from the mining face of coal seam 17 in the Yankuang Energy Group Co., Ltd. Shandong Province, this study proposed a methodology that integrates more information about the geological structural conditions of coal seams. Specifically, digital twining of iron sulfide nodules was performed using the irregular particle modeling technology, the coal-rock particle filling technology for coals was optimized, and the surface roughness of coal-rock particles was simulated using a user-defined contact model. Based on the constructed initial static 3D digital twin for a coal seam, this study compiled the application plugin for coal seams and added new attributes to coal-rock particles and structures according to geological characteristics, thus correcting the digital twin structure. The feasibility of the digital twin was verified using the cutting experiment with a shearer. Results and ConclusionsThe results indicate that the initial static 3D digital twin for the coal-seam mining face was constructed by adding iron sulfide nodules, faults, and coal seam roofs and floors. The dynamic 3D digital twin for a complex gangue-bearing coal seam was established, enabling the correction and replacement of the particle set. The cutting experiment with a shearer demonstrates the similarity of physical properties between the modeled coal seam and actual coals and rocks, yielding minor errors in drum load during coal-rock cutting between the 3D digital twin for a complex gangue-bearing coal seam and actual coals and rocks. The 3D digital twin was applied to the bidirectional coupling test of coal-rock cutting, demonstrating that the optimized, reconstructed 3D digital twin for coal-seam mining face faithfully reflected the coal seam morphology of the mining face. The dynamic 3D digital twin for a complex gangue-bearing coal seam, allowing for the correction and replacement of the particle set, can reflect the information about various geological structures in actual mining face more accurately and rapidly, enabling more effective acquisition of coal-rock cutting information.
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spelling doaj-art-3cfcedaf7b2541c29ff67aa4c71a5c132024-12-30T05:21:44ZzhoEditorial Office of Coal Geology & ExplorationMeitian dizhi yu kantan1001-19862024-12-015212405310.12363/issn.1001-1986.24.09.056824-09-0568zhangmeichenConstruction and correction of a 3D digital twin for a complex gangue-bearing coal seamMeichen ZHANG0Lijuan ZHAO1Yadong WANG2Kai ZHANG3Mining Hydraulic Technology and Equipment Engineering Research Center, Liaoning Technical University, Fuxin 123000, ChinaMining Hydraulic Technology and Equipment Engineering Research Center, Liaoning Technical University, Fuxin 123000, ChinaMining Hydraulic Technology and Equipment Engineering Research Center, Liaoning Technical University, Fuxin 123000, ChinaSchool of Mechanical Engineering, Changshu Institute of Technology, Suzhou 215500, ChinaObjective3D digital twin for complex gangue-bearing coal seams are designed to achieve an information-based description of physical coal seams and faithfully map their virtual forms. digital twin is identified as a prerequisite for exploring the efficient cutting of intelligent shearers while providing an effective data guarantee for achieving unmanned mining. MethodsUsing data on samples from the mining face of coal seam 17 in the Yankuang Energy Group Co., Ltd. Shandong Province, this study proposed a methodology that integrates more information about the geological structural conditions of coal seams. Specifically, digital twining of iron sulfide nodules was performed using the irregular particle modeling technology, the coal-rock particle filling technology for coals was optimized, and the surface roughness of coal-rock particles was simulated using a user-defined contact model. Based on the constructed initial static 3D digital twin for a coal seam, this study compiled the application plugin for coal seams and added new attributes to coal-rock particles and structures according to geological characteristics, thus correcting the digital twin structure. The feasibility of the digital twin was verified using the cutting experiment with a shearer. Results and ConclusionsThe results indicate that the initial static 3D digital twin for the coal-seam mining face was constructed by adding iron sulfide nodules, faults, and coal seam roofs and floors. The dynamic 3D digital twin for a complex gangue-bearing coal seam was established, enabling the correction and replacement of the particle set. The cutting experiment with a shearer demonstrates the similarity of physical properties between the modeled coal seam and actual coals and rocks, yielding minor errors in drum load during coal-rock cutting between the 3D digital twin for a complex gangue-bearing coal seam and actual coals and rocks. The 3D digital twin was applied to the bidirectional coupling test of coal-rock cutting, demonstrating that the optimized, reconstructed 3D digital twin for coal-seam mining face faithfully reflected the coal seam morphology of the mining face. The dynamic 3D digital twin for a complex gangue-bearing coal seam, allowing for the correction and replacement of the particle set, can reflect the information about various geological structures in actual mining face more accurately and rapidly, enabling more effective acquisition of coal-rock cutting information.http://www.mtdzykt.com/article/doi/10.12363/issn.1001-1986.24.09.05683d digital twincorrection and replacement of a particle setvirtual mappingcoal-rock cutting informationdiscrete elementcomplex gangue-bearing coal seam
spellingShingle Meichen ZHANG
Lijuan ZHAO
Yadong WANG
Kai ZHANG
Construction and correction of a 3D digital twin for a complex gangue-bearing coal seam
Meitian dizhi yu kantan
3d digital twin
correction and replacement of a particle set
virtual mapping
coal-rock cutting information
discrete element
complex gangue-bearing coal seam
title Construction and correction of a 3D digital twin for a complex gangue-bearing coal seam
title_full Construction and correction of a 3D digital twin for a complex gangue-bearing coal seam
title_fullStr Construction and correction of a 3D digital twin for a complex gangue-bearing coal seam
title_full_unstemmed Construction and correction of a 3D digital twin for a complex gangue-bearing coal seam
title_short Construction and correction of a 3D digital twin for a complex gangue-bearing coal seam
title_sort construction and correction of a 3d digital twin for a complex gangue bearing coal seam
topic 3d digital twin
correction and replacement of a particle set
virtual mapping
coal-rock cutting information
discrete element
complex gangue-bearing coal seam
url http://www.mtdzykt.com/article/doi/10.12363/issn.1001-1986.24.09.0568
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AT lijuanzhao constructionandcorrectionofa3ddigitaltwinforacomplexganguebearingcoalseam
AT yadongwang constructionandcorrectionofa3ddigitaltwinforacomplexganguebearingcoalseam
AT kaizhang constructionandcorrectionofa3ddigitaltwinforacomplexganguebearingcoalseam