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GROUND CONTROL TOOLS IN UNDERGROUND COAL MINING CONVENIENCES AND PRECAUTIONS

机译:地下煤矿开采中的地面控制工具的便利性和预防措施

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摘要

Coal bearing rocks are low in strength and have geological discontinuities and moisture sensitivity. Roof and rib foils have been a major cause of fatalities in underground coal mines. Mine engineers design ground control plans for regulatory approvals. A number of tools are available from the National Institute for Occupational Safety and Health to design and assess these plans. Quite often there is not enough geotechnical input information available and databases are used. The Appalachian coalfields have extensive scientific studies to provide reliable regional inputs. Coal mines in the western United States and Canada have different geological and geotechnical conditions, and less available data. Use of inappropriate inputs in the tools like Analysis of Retreat Mining Pillar Stability, Analysis of Longwall Pillar Stability, and Analysis of Roof Bolt Systems may result in unsafe designs or over conservative designs. The tools are convenient but thorough understanding of the inputs, calibration with local test results, and operating experience are important for effective designs. The current paper contains examples of difficulties faced during mine planning using the above tools.
机译:含煤岩石强度低,具有地质不连续性和湿度敏感性。屋顶和肋骨箔一直是造成地下煤矿死亡的主要原因。矿山工程师设计地面控制计划以获得监管批准。国家职业安全与健康研究所提供了许多工具来设计和评估这些计划。通常,没有足够的岩土工程输入信息,只能使用数据库。阿巴拉契亚煤田进行了广泛的科学研究,以提供可靠的地区性投入。美国西部和加拿大的煤矿具有不同的地质和岩土条件,可用数据较少。在诸如“后退采矿支柱稳定性分析”,“长壁支柱稳定性分析”和“屋顶螺栓系统分析”之类的工具中使用不适当的输入可能会导致设计不安全或设计过于保守。这些工具很方便,但是对输入的全面了解,使用本地测试结果进行的校准以及操作经验对于有效的设计很重要。本文包含使用上述工具进行矿山规划时遇到的困难的例子。

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