Digital rock mechanics solutions for underground engineering problems such as coal mining
LI Haitao
QI Qingxin
DU Weisheng
ZHANG Haikuan
YANG Guanyu
WANG Shouguang
SHI Xiaoshan
LI Chunyuan
CUI Chunyang
ZHENG Weiyu
ZHENG Jianwei
HE Tuan
ZHU Wei
Abstract:The observability of underground engineering,such as coal mining,is extremely limited,which makes it difficult to obtain reli-able pre-analysis basis for many complex engineering problems.Especially in face of new engineering environment brought about by deep conditions and high-intensity mining,the applicability of the existing theoretical system and technical solutions is facing severe challenges.Based on the technical characteristics of the digital era,a digital rock mechanics solution that integrates data laws,mechanical logic and engineering experience is proposed.The solution makes full use of the objective characteristics of real engineering laws contained in en-gineering data,and gives a specific mode of underlying integration among theoretical achievements,engineering experience and data law mining.Through the non-damaged inference of mechanical parameters of coal specimens,the feasibility of the above technical path is verified,and the data mining and utilization with both reliability and interpretability are realized.Furthermore,a digital rock mechanics theoretical system with rock physical properties,geological structure and spatial stress as the basic elements is established,and a general operation mode of digital rock mechanics underground engineering with the steps of"engineering sketch,physical knowledge embedding,professional knowledge integration,decision generation"is proposed.The reliability of the digital rock mechanics solution is verified by the application in complex engineering,which provides a practical implementation path for the digital transformation and intelligent up-grading of underground engineering such as coal mining.
Keywords:digital rock mechanicscoal miningunderground engineeringgeneralized"Three Factors"rock burst
Publication Date:2024-09-25
Online Publishing Date:2025-08-15(First online date of this platform, not the publication date of the document)
Pages:12( 150-161 )
