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Numerical modeling for longwall pillar design: a case study from a typical longwall panel in China

机译:Longwall Pillar设计的数值模型:中国典型的Longwall面板案例研究

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This paper presents a new numerical modeling procedure and design principle for longwall pillar design with the assistance of numerical simulation of FLAC3D. A coal mine located in Yanzhou city, Shandong Province, China, was selected for this case study. A meticulously validated numerical model was developed to investigate the stress changes across the longwall pillar with various sizes. In order to improve the reliability of the numerical modeling, a calibration procedure is undertaken to match the Salamon and Munro pillar strength formula for the coal pillar, while a similar calibration procedure is used to estimate the stress-strain response of a gob. The model results demonstrated that when the coal pillar width was 7-8 m, most of the vertical load was carried by the panel rib, whilst the gateroad was overall in a relatively low stress environment and could keep its stability with proper supports. Thus, the rational longwall pillar width was set as 8 m and the field monitoring results confirmed the feasibility of this pillar size. The proposed numerical simulation procedure and design principle presented in this study could be a viable alternative approach for longwall pillar design for other similar projects.
机译:本文介绍了在FLAC3D的数值模拟的帮助下,Longwall Pillar设计的新数值模拟程序和设计原理。煤矿位于中国山东省兖州市,选择了这种案例研究。开发了一种季节性验证的数值模型,以调查具有各种尺寸的长墙柱的应力变化。为了提高数值建模的可靠性,进行校准程序以与煤柱的萨拉蒙和蒙古柱强度配方相匹配,而类似的校准程序用于估计GOB的应力 - 应变响应。模型结果表明,当煤柱宽度为7-8米时,大部分垂直载荷由面板肋携带,同时在相对低的应力环境中总体上整体,并且可以保持其稳定性。因此,理性的Longwall柱宽度设定为8米,现场监测结果证实了该支柱尺寸的可行性。本研究中提出的拟议的数值模拟程序和设计原理可能是用于其他类似项目的长壁柱设计的可行替代方法。

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