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Global Trends in Coal Mine Horizontal Stress Measurements

机译:煤矿水平应力测量的全球趋势

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Knowledge of in situ stresses is fundamental to many studies in earth sciences, and coal mine ground control is no exception. During the past 20 years, it has become clear that horizontal stress is a critical factor affecting roof stability in underground coal mines. The theory of plate tectonics and the World Stress Map (WSM) project has been extremely helpful in explaining the sources and the orientations of the horizontal stresses observed underground. Recently, WSM geophysicists studying deep-seated stresses have developed a model of how stress magnitudes vary with depth in the crust. They have devoted relatively little attention to near-surface stresses, however. This paper explores the relationships between deep-seated and shallow in situ stresses in several of the world's coalfields, using a data base of more than 350 stress measurements from underground coal mines. The analysis indicates that distinct regional trends exist, corresponding roughly to the regional stress fields identified by the WSM. The paper presents equations for estimating stress magnitudes that were developed by treating depth and elastic modulus as independent variables in regression analysis. The magnitude of the horizontal stress increases with depth, at rates that range from 0.8 to 2.0 times the vertical stress, just as the WSM "critically stressed crust" model predicts. Overall, it seems that the stress regimes encountered in underground coal mines are closely linked to those that exist deep in the earth's crust.
机译:对原地应力的了解是地球科学的许多研究的基础,煤矿地面控制也不例外。在过去的20年里,很明显,水平应力是影响地下煤矿屋顶稳定性的关键因素。板块构造和世界压力地图(WSM)项目的理论非常有助于解释地下观察到的水平应力的来源和方向。最近,研究深层应力的WSM地球物理学家已经开发了一种模型,这些模型如何在地壳中随着深度而变化。然而,它们对近表面应力进行了相对较少的关注。本文探讨了世界上几个世界煤田的深层和浅层强调之间的关系,使用来自地下煤矿的350多个压力测量的数据库。分析表明,存在不同的区域趋势,大致对应于WSM鉴定的区域应力字段。本文呈现了通过在回归分析中处理深度和弹性模量而开发的应力幅度的方程。水平应力的大小随深度增加,速度范围为垂直应力的0.8至2.0倍,就像WSM“批判性地壳”模型预测一样。总体而言,似乎地下煤矿遇到的压力制度与地壳中存在深处的那些紧密相连。

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