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Effect of Key Parameters on Top Coal First Caving and Roof First Weighting in Longwall Top Coal Caving: A Case Study

机译:关键参数对长壁顶煤放顶煤放顶和顶煤权重的影响:一个案例研究

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摘要

The first caving of top coal and the first weighting of roof strata in Longwall Top Coal Caving (LTCC) mining were analyzed in a parametric study by using a discontinuum modeling technique with plastic rock material. The analysis demonstrated that an increase in the value of cover depth decreases the stability of main roof strata, while the impact of horizontal stress on the main roof strata stability is not consistent under different stress magnitudes. The study confirmed that an increase in the value of immediate roof rock strength, coal strength, coal elastic modulus, and coal bedding spacing improves the stability of top coal before its first caving, whereas an increase in the value of top coal thickness, cover depth, and horizontal stress magnitude facilitates the commencement of top coal caving. Based on the parametric study's result, a new criterion for the prediction of face distance where top coal starts to cave was statistically developed and named Top coal First Caving Distance (TFCD). TFCD is successful in using immediate rock strength, coal elastic modulus, coal bedding spacing, top coal thickness, and horizontal stress magnitude for a reliable prediction of the face distance. The findings of this paper are helpful in better understanding basic caving/weighting mechanics, predicting face/roof instability risks, and assessing coal loss in LTCC, which contribute to improving safety and productivity in thick seam extraction.
机译:在参数研究中,通过使用塑性岩石材料的不连续模型技术,对长壁顶煤放开采(LTCC)开采中的顶煤的首次放出和顶板地层的权重进行了分析。分析表明,覆盖深度值的增加会降低主顶板地层的稳定性,而水平应力对主顶板地层稳定性的影响在不同应力大小下并不一致。研究证实,立即顶板岩石强度,煤强度,煤弹性模量和煤层距的增加可提高顶煤初次崩塌之前的稳定性,而顶煤厚度,覆盖层深度的增加,水平应力大小有利于放顶煤。根据参数研究的结果,统计开发了预测顶煤开始塌陷的工作面距离的新标准,并将其命名为“顶煤首次放煤距离”(TFCD)。 TFCD成功地使用了即时岩石强度,煤弹性模量,煤层距,顶煤厚度和水平应力大小来可靠地预测工作面距离。本文的研究结果有助于更好地理解基本的崩落/加重机理,预测工作面/屋顶失稳风险以及评估LTCC中的煤炭损失,从而有助于提高厚煤层开采的安全性和生产率。

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