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Rational cutting height for large cutting height fully mechanized top-coal caving

机译:合理的切割高度,可实现大切割高度的综采综放工作

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摘要

Large cutting height fully mechanized top-coal caving is a new mining method that improves recovery ratio and single-pass production.It also allows safe and efficient mining.A rational cutting height is one key parameter of this technique.Numerical simulation and a granular-media model experiment were used to analyze the effect of cutting height on the rock pressure of a fully mechanized top-coal caving work face.The recovery ratio was also studied.As the cutting height increases the top-coal thickness is reduced.Changing the ratio of cutting to drawing height intensifies the face pressure and the top-coal shattering.A maximum cutting height exists under a given set of conditions due to issues with surrounding rock-mass control.An increase in cutting height makes the top-coal cave better and the recovery ratio when drawing top-coal is then improved.A method of adjusting the face rock pressure is presented.Changing the cutting to drawing height ratio is the technique used to control face rock pressure.The recovery ratio when cutting coal exceeds that when caving top-coal so the face recovery ratio may be improved by over sizing the cutting height and increasing the top-coal drawing ratio.An optimum ratio of cutting to drawing height exists that maximizes the face recovery ratio.A rational cutting height is determined by comprehensively considering the surrounding rock-mass control and the recovery ratio.At the same time increasing the cutting height can improve single pass mining during fully mechanized top-coal caving.
机译:大切削高度综采性顶煤崩位是一种新的采矿方法,可提高恢复比和单通生产。它还允许安全有效的矿业.ARITATION的切割高度是该技术的一个关键参数。数值模拟和粒度 - 媒体模型实验用于分析切削高度对综合机械化顶煤落后工作面的岩石压力的影响。还研究了恢复比。切割高度增加了顶部煤厚度。加上比率切割到绘图高度加剧了面部压力和顶煤破碎。由于围绕岩石质量控制的问题,在一系列条件下存在最大切削高度。切割高度的增加使得顶煤洞更好然后改善了绘制顶煤时的恢复比。提出了调节面岩压力的方法。加上切割到拉伸高度比是用于控制FAC的技术E岩压力。割煤时的恢复比率超过落煤时,通过过度施加切削高度并增加顶煤比例,可以提高面部回收率。将切割与拉伸高度的最佳比率存在最大化面部回收率。通过综合考虑周围的岩体控制和回收率来确定合理的切割高度。同时增加切割高度可以改善在综合机械化的顶煤露天期间的单通挖掘。

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  • 来源
    《矿业科学技术(英文版)》 |2011年第3期|457-462|共6页
  • 作者单位

    School of Mines, China University of Mining & Technology. Xuzhou 221116, China;

    College of Safety Engineering. North China University of Science and Technology, Beijing 101601, China;

    School of Mines, China University of Mining & Technology. Xuzhou 221116, China;

    Xinglongzhuang Coal Mine, Yankuang Coal Group, Zoucheng 273500, China;

    School of Mines, China University of Mining & Technology. Xuzhou 221116, China;

  • 收录信息 中国科技论文与引文数据库(CSTPCD);
  • 原文格式 PDF
  • 正文语种 chi
  • 中图分类
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