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Influence of an Inclined Rock Stratum on In-Situ Stress State in an Open-Pit Mine

机译:露天矿倾斜岩层对地应力状态的影响

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摘要

In-situ stress plays a major role with respect to deformation and stability around underground or surficial excavations located at significant depth. Many sedimentary rock masses are more or less horizontally bedded. However, a possibility exists to have one or few inclined rock strata such as dikes in these horizontally bedded formations. It is important to know how the in situ stress changes from a purely horizontally bedded situation to a horizontally bedded rock mass that contains one or few inclined rock strata. This paper presents such an investigation using the largest open-pit metal mine in China-as a case study. This mine has a bedded rock mass with one steeply inclined rock stratum. For the bedded rock mass, the vertical stress was calculated based on the overburden above each lithology. The available in situ stress measurements conducted at the mine were used to estimate the ratios of horizontal to vertical stress. Numerical modeling was performed for the two scenarios: (a) the horizontally bedded system subjected to both the in situ and boundary stresses and (b) the mine lithological system that includes an inclined stiffer (denser) stratum intruding softer horizontally bedded system subjected to only boundary stresses to investigate the influence of an inclined rock stratum on the computed stress field. Thirty points were selected to compute the stresses on six planes of the inclined rock stratum. Due to the discontinuous nature of the geologic system at the interface between the stiffer inclined stratum and softer horizontally bedded system, one principal stress has become normal to the interface plane and the other two have become parallel to the interface plane with all three being perpendicular to each other. Presence of the stiffer inclined rock stratum has given rise to (a) increase in normal stresses up to about 120 % in the inclined rock stratum and (b) new shear stresses approximately in the range -10.0 to 15.0 MPa. This means, because most of the rock masses are not purely horizontally bedded, estimation of in situ stress through measurements as well as application of in situ stress in numerical modeling associated with underground or surficial excavations located at significant depth is a difficult exercise. A better way to estimate the in situ stresses for complex geologic systems may be through application of appropriate boundary stresses to the geologic system in a numerical model.
机译:就位于深处的地下或地面开挖周围的变形和稳定性而言,原地应力起着主要作用。许多沉积岩体或多或少是水平分层的。但是,在这些水平层状地层中可能存在一个或几个倾斜的岩层,例如堤防。重要的是要知道,原位应力是如何从纯粹的水平层状状态变为包含一个或几个倾斜岩层的水平层状岩体的。本文以中国最大的露天金属矿为例进行了调查。该矿山具有层状岩体,岩层陡峭。对于层状岩体,垂直应力是根据每种岩性上方的覆盖层计算的。在矿山进行的现场应力测量可用于估算水平应力与垂直应力之比。在两种情况下进行了数值模拟:(a)既受原位应力又受边界应力作用的水平岩床系统;(b)包括倾斜的较硬的(密集)地层侵入较软的水平岩床系统的矿山岩性系统。边界应力以研究倾斜岩石地层对计算应力场的影响。选择了30个点来计算倾斜岩层的六个平面上的应力。由于地质系统在较硬的倾斜地层和较软的水平层状系统之间的界面处具有不连续性,因此一个主应力已垂直于界面平面,另外两个主应力已平行于界面平面,所有三个方向均垂直于彼此。较硬的倾斜岩石地层的存在引起了(a)倾斜岩石地层中的正应力增加到大约120%,并且(b)新剪切应力大约在-10.0到15.0 MPa范围内。这意味着,由于大多数岩体都不是纯水平地层状的,因此很难通过测量以及在与位于深处的地下或地面开挖有关的数值模拟中应用原位应力来估计原位应力。估算复杂地质系统地应力的更好方法是在数值模型中对地质系统应用适当的边界应力。

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