Yao Weijing, Wang Chengjun, Pang Jianyong, Liu Yushan, Zhang Jinsong
Base for innovative Methods Promotion Application and Demonstration of Anhui Province, Anhui University of Science and Technology, Huainan, 232001, Anhui Province, China.
School of Civil Engineering and Architecture, Anhui University of Science and Technology, Huainan, 232001, Anhui Province, China.
Sci Rep. 2024 Feb 8;14(1):3279. doi: 10.1038/s41598-024-53972-7.
The TRIZ theory was used to accurately discover the problems to be solved in the design of roadway surrounding rock control technology. This paper tried to solve the complex issue of surrounding rock control in deep roadways from a new perspective. Based on the functional component analysis and causal axis analysis of the problem's primary reason, simultaneously, the surrounding rock control technology was optimized through technical contradiction analysis, physical contradiction analysis, and substance and field model analysis. As a result, a fully enclosed wire-shell support technology was proposed. Finally, taking the typical soft rock roadway engineering of Pansan Coal Mine in Huainan Mining Area, Anhui Province, China, as the engineering background, the engineering application and effect evaluation were completed. This paper provides a reference for controlling the instability of deep soft rock roadways in coal mines. A new idea of optimizing roadway support engineering based on TRIZ theory was proposed.
运用TRIZ理论准确发现巷道围岩控制技术设计中有待解决的问题。本文试图从新的视角解决深部巷道围岩控制这一复杂问题。基于对问题主要原因的功能组件分析和因果轴分析,同时通过技术矛盾分析、物理矛盾分析以及物质与场模型分析对围岩控制技术进行优化。结果,提出了一种全封闭金属网壳支护技术。最后,以中国安徽省淮南矿区潘三煤矿典型软岩巷道工程为工程背景,完成了工程应用及效果评价。本文为控制煤矿深部软岩巷道失稳提供了参考。提出了基于TRIZ理论优化巷道支护工程的新思路。