深层岩石工程隧道潜在开挖补偿方法概述

IF 3.9 2区 工程技术 Q3 ENERGY & FUELS Geomechanics and Geophysics for Geo-Energy and Geo-Resources Pub Date : 2024-08-07 DOI:10.1007/s40948-024-00856-9
Jie Hu, Manchao He, Zhigang Tao, Tai Cheng, Yingming Xiao, Hongru Li, Limin Li
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引用次数: 0

摘要

深部岩石复杂的地质环境给隧道和采矿工程带来了新的挑战。软岩大变形、岩爆等一些棘手的灾害日益突出。然而,以矿山掘进法和新奥地利掘进法为代表的经典掘进方法,由于围岩体的自稳性有限,在解决这些问题时普遍不尽如人意。因此,以主动应力补偿为核心的开挖补偿法(ECM)被提出并应用于实际工程建设中,以解决上述问题。经过大量的工程实践,ECM 的理论基础、关键技术和施工体系已经建立和完善。本文全面介绍了这种新型隧道开挖方法。此外,还通过两个典型的工程实例,展示了其对围岩的控制效果。它可以为未来隧道技术的发展提供一些新的思路和参考。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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An overview of potential excavation compensation method for tunnelling in deep rock engineering

The complicated geological environment of deep rocks poses new challenges to tunnel and mining engineering. Some thorny disasters such as large deformation of soft rock and rockburst are becoming more and more prominent. However, the classic tunnelling methods represented by the mine tunnelling method and the new Austrian tunnelling method are generally unsatisfactory in addressing these issues due to the limited self-stability of surrounding rock mass. Therefore, the excavation compensation method (ECM) with the core of active stress compensation has been proposed and applied in practical engineering construction to solve the above problems. After extensive engineering practice, the theoretical foundation, key technologies, and construction system of ECM have been established and improved. This article provides a comprehensive overview of this novel tunnelling method. In addition, its controlling effects on surrounding rock are demonstrated by two typical engineering examples. It could provide some new ideas and references for the development of future tunnelling technology.

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来源期刊
Geomechanics and Geophysics for Geo-Energy and Geo-Resources
Geomechanics and Geophysics for Geo-Energy and Geo-Resources Earth and Planetary Sciences-Geophysics
CiteScore
6.40
自引率
16.00%
发文量
163
期刊介绍: This journal offers original research, new developments, and case studies in geomechanics and geophysics, focused on energy and resources in Earth’s subsurface. Covers theory, experimental results, numerical methods, modeling, engineering, technology and more.
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