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Three-dimensional stress state in inclined backfilled stopes obtained from numerical simulations and new closed-form solution

机译:从数值模拟和新的闭合溶液中获得的倾斜回填停止的三维应力状态

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摘要

Backfill is commonly used world-wide in underground mines to improve ground stability and reduce solid waste disposal on the surface. Practical solutions are required to assess the stress state in the backfilled stopes, as the stress state is influenced by the fill settlement that produces a stress transfer to the adjacent rock walls. The majority of existing analytical and numerical solutions for the stresses in backfilled openings were developed for two-dimensional (plane strain) conditions. In reality, mine stopes have a limited extension in the horizontal plane so the stresses are influenced by the four walls. This paper presents recent three-dimensional (3D) simulations results and a new 3D closed-form solution for the vertical and horizontal stresses in inclined backfilled stopes with parallel walls. This solution takes into account the variation of the stresses along the opening width and height, for various inclination angles and fills properties. The numerical results are used to validate the analytical solution and illustrate how the stress state varies along the opening height, length, and width, for different opening sizes and inclination angles of the footwall and hanging wall. Experimental results are also used to assess the validity of the proposed solution.
机译:回填在世界各地的地下矿山中普遍使用,以提高地面稳定性,减少地表固体废物的处置。需要实际的解决方案来评估回填采场中的应力状态,因为应力状态受充填沉降的影响,充填沉降会产生应力传递到相邻岩壁。大多数现有的回填开口应力分析和数值解是针对二维(平面应变)条件开发的。实际上,矿山采场在水平面上的延伸有限,因此应力受到四面墙的影响。本文介绍了倾斜平行壁充填采场垂直和水平应力的最新三维(3D)模拟结果和一种新的3D封闭式解。该解考虑了不同倾角和填充物特性下,应力沿开口宽度和高度的变化。数值结果用于验证解析解,并说明在不同开口尺寸和下盘和上盘倾角下,应力状态如何沿开口高度、长度和宽度变化。实验结果也被用来评估所提出的解决方案的有效性。

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