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A multifactor coupling prediction model for the failure depth of floor rocks in fully mechanized caving mining: a numerical and in situ study

机译:综放开采底板岩石破坏深度的多因素耦合预测模型:数值与原位研究

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摘要

To study the mining-induced failure depth of floor rocks in a fully mechanized mining caving field affected by different coal seam pitches, mining face lengths, burial depths and aquifer water pressures, multifactor-coupled orthogonal numerical tests on the failure depth of floor rocks were conducted. The numerical results show that the failure depth of floor rocks increases with increasing mining face length, coal seam pitch and burial depth. According to the relationship between failure depth and these impact factors, a multifactor-coupled prediction model for the failure depth of floor rocks was established. In addition, the in situ measurement of the failure depth of floor rocks in the Yitang Coal Mine in Huoxi coal field in Shanxi Province, China, was performed, and the in situ failure depths of floor rocks in the 100 502 (80 m) and 100 502 (180 m) mining faces were approximately 12.50–14.65 m and 17.50–19.20 m, in good agreement with the results of the multifactor prediction model. Furthermore, the sensitivity of each impact factor in the prediction model of the floor failure depth was further analysed by F-test and range analysis, and the impact order of studied factors on the floor failure depth is coal seam pitch > mining face length > burial depth > aquifer water pressure.
机译:为了研究受不同煤层间距,采煤工作面长度,埋深和含水层水压影响的综采工作面底板岩石的破坏深度,对底板岩石破坏深度进行了多因素耦合正交数值试验。进行。数值结果表明,随着采掘工作面长度,煤层间距和埋深的增加,底板岩石的破坏深度增加。根据破坏深度与这些影响因素之间的关系,建立了底板岩石破坏深度的多因素耦合预测模型。此外,对山西省火溪煤田一塘煤矿底板岩石的破坏深度进行了原位测量,并在100 502(80 m)和100 502(80 m)范围内对底板岩石进行了破坏。 100 502(180 m)个工作面分别约为12.50–14.65 m和17.50–19.20 m,与多因素预测模型的结果高度吻合。此外,通过F检验和范围分析进一步分析了底板破坏深度预测模型中各影响因素的敏感性,研究因素对底板破坏深度的影响顺序为煤层间距>采掘工作面长度>埋藏量。深度>含水层水压。

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