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首页> 外文期刊>International Journal of Rock Mechanics and Mining Sciences >Prediction of caving behavior of strata and optimum rating of hydraulic powered support for longwall workings
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Prediction of caving behavior of strata and optimum rating of hydraulic powered support for longwall workings

机译:长壁开采的地层崩塌行为预测和液压支架的最佳额定值

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摘要

A reliable prediction of the caving behavior of strata and support capacity requirement for longwall workings has always been a challenge for rock mechanics researchers and mine planning engineers. It is very important for successful planning and implementation of high capacity longwall projects to have proper selection of site and compatible roof supports, to ensure safe operation of longwall face especially in massive and difficult to cave strata conditions. This paper illustrates a numerical modeling based integrated approach for predicting the progressive caving behavior of strata and optimum capacity requirement of powered support for longwall working in a given geo-mining and strata condition. A set of design criteria for selection of optimal capacity support integrating the field experience and the numerical modeling results of longwall panels, operated in a widely varying strata conditions in different coalfields of India. Case studies of two typical longwall workings are presented to assess the caving behavior and support requirement for safe operation of longwall working under the site specific regular and en masse caving strata conditions.
机译:对于岩壁力学研究人员和矿山规划工程师而言,可靠地预测地层的崩塌行为和长壁开采的支撑能力要求一直是一个挑战。对大容量长壁项目的成功规划和实施而言,正确选择场地和兼容的屋顶支架对于确保长壁工作面的安全运行(特别是在大面积且难以塌陷的地层条件下)尤其重要。本文阐述了一种基于数值模型的集成方法,用于预测在给定的采矿和地层条件下长壁开采的地层渐进崩塌行为和动力支撑的最佳承载能力要求。一组用于选择最佳产能的设计标准,结合了现场经验和长壁板的数值模拟结果,在印度不同煤田的不同地层条件下运行。提出了两种典型长壁开采的案例研究,以评估在特定现场常规和整体开采地层条件下,长壁开采安全运行的崩塌行为和支撑要求。

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