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Numerical Modeling for Roadway Support Systems - A Comparison for Single and Multiple Seam Mining

机译:巷道支护系统的数值建模-单煤层与多煤层开采的比较。

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Geomechanical-numerical methods are an established tool for planning of underground excavations worldwide. By describing the interaction between heterogeneous layered strata and support elements it is possible to determine their suitability.The German hard coal mining industry has more than twenty years experience in investigation and using these parameters to carry out numerical calculations. Today, nearly all excavations (shafts, pit bottoms areas, bunkers, coal faces, development drivages, gate roads etc.) are calculated by geomechanical-numerical tools in combination with empirical planning methods.A high accuracy of planning results, which is a special requirement in the German coal industry with its deep-level longwalls, bedded and weak surrounding strata and multiple seam mining layouts, depends on the extensive calibration of the numerical models, which is achieved by:1) Taking a large number of underground measurements with empirical evaluation.2) Carrying out physical modeling.3) Using the characteristic features of the installed support elements.This paper compares the planning approach used for multiple and single seam mining and presents the advantages of this planning tool. The main focus is on the feasibility of rockbolting as the sole means of roadway support for multiple seam mining operations, though the paper will also look at how the costs can be improved by using a low bolting density in single seam layouts.
机译:地质力学-数值方法是规划世界范围内地下挖掘的既定工具。通过描述异质分层地层与支撑单元之间的相互作用,可以确定其适用性。 德国的硬煤开采行业拥有二十多年的调查经验,并使用这些参数进行了数值计算。如今,几乎所有的开挖(竖井,坑底区域,地堡,煤层,开发巷道,闸道等)都是通过地质力学数值工具结合经验规划方法来计算的。 计划结果的准确性很高,这是德国煤炭工业的特殊要求,其深层长壁,层状和薄弱的周围地层以及多个煤层开采布局取决于数值模型的广泛校准,这可以通过以下方法实现: 1)进行大量地下测量,并进行实证评估。 2)进行物理建模。 3)使用已安装的支撑元件的特征。 本文比较了用于多煤层和单煤层开采的计划方法,并介绍了该计划工具的优势。尽管本文还将探讨如何通过在单煤层布局中使用低锚杆密度来降低成本,但主要重点是将锚固技术作为多煤层开采作业的巷道支撑的唯一手段的可行性。

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