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A triangular caving subsidence model

机译:三角崩塌沉降模型

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摘要

Surface grounds undermined by longwall mining are potentially susceptible to subsidence due to continuous or episodic movements of the inter-burden and over-burden rock, particularly in the absence of any remedial measures such as fill or grout materials (for minimising subsidence). There are a number of methods available to predict or estimate subsidence. However, most methods introduced to the practical mining engineers are either highly empirical and site specific, or highly theoretical or impractical in terms of parameters to be used, measured or assumed. There is certainly a gap between these two extreme approaches for a geotechnical engineer who is looking for a simple practical analytical tool. Based on a triangular zone of major caving, beyond which arching and within which caving is dominant, this short paper presents a simple model for estimating potential maximum ground surface subsidence caused by underground coal mines and the required volume of remedial fill or grout (materials) for its reduction or prevention.
机译:长壁开采破坏的地表可能会由于覆岩层和覆岩层的连续或偶发运动而易于下陷,尤其是在没有任何补救措施(例如填土或灌浆材料(用于尽量减少沉陷))的情况下。有许多方法可用于预测或估计沉降。但是,向实际采矿工程师介绍的大多数方法都是高度经验和针对特定地点的,或者就使用,测量或假定的参数而言,高度理论化或不切实际。对于寻求简单实用的分析工具的岩土工程师来说,这两种极端方法之间肯定存在差距。这篇简短的论文基于主要崩落的三角形区域(该范围内是拱形且占主导作用的区域),提供了一个简单的模型,用于估算由地下煤矿引起的潜在最大地面沉降以及所需的填充或注浆量(材料)为减少或预防。

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