通过建模解决岩石力学问题:过去、现在和未来?

J. Sjöberg
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引用次数: 2

摘要

自岩石力学数值模拟在工程科学领域首次出现以来,它的进步是毋庸置疑的。自从打孔卡和行打印机时代以来,建模工具已经取得了重大进展,现在建模工具很容易使用,并且能够复制岩石行为的许多方面,但不是全部。本文探讨了地下开采中一些常见的岩石力学问题,以及如何通过数值模拟来解决这些问题。所描述的问题包括矿柱设计、地面支护、崩落预测和地面沉降以及采矿诱发的地震活动。文中给出了建模技术多年来如何发展的例子,同时也指出了该技术目前的差距和局限性。最后,展望未来,包括我们面临的一些挑战。对许多岩石力学问题的基本理解仍然需要增加,但最终人们可以设想将岩石力学建模深入整合到矿山规划和生产中,以实现更可持续的未来采矿。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Solving rock mechanics issues through modelling: then, now, and in the future?
There is no dispute about the advances in numerical modelling for rock mechanics applications following its debut in engineering science some 50 years ago. Significant strides have been made since the days of punch cards and line printers, with modelling tools now being easy to use and capable of replicating many, but not all, aspects of rock behaviour. This paper explores some common rock mechanics problems in underground mining, and how these have been addressed through numerical modelling. The described issues include pillar design, ground support, caving prediction and ground subsidence, and mining-induced seismicity. Examples of how modelling technology has evolved over the years are given, while also pointing out current gaps and limitations in the technology. Finally, an outlook for the future is presented, including some of the challenges we are facing. An increased fundamental understanding of many rock mechanics issues is still required, but eventually one may envision a deep integration of rock mechanical modelling into mine planning and production, for a more sustainable future mining.
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