首页> 外文期刊>International Journal of Oil, Gas and Coal Technology: IJOGCT >Solid-gas coupling law during methane seepage from a coal mass in the advanced pressure relief area of a mining seam
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Solid-gas coupling law during methane seepage from a coal mass in the advanced pressure relief area of a mining seam

机译:采矿煤层高压浮雕区域甲烷渗流过程中的固体气体耦合法

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摘要

Experimental schemes were designed for the entire evolution of the stress in front of 15,201 working face in Xindadi Coal Mine, and an experimental study on methane seepage in the advanced pressure relief area was conducted. Fitting functions for the permeability of the coal sample and its vertical stress were obtained by fitting the experimental data. A numerical calculation model was established with these fitting functions at different stages. The effect of mining height and mining depth on the law of methane seepage in the advanced pressure relief area was numerically simulated. With the increase in mining height and depth, the range of influence of the advanced abutment pressure increased, and the peak position of the advanced abutment pressure moved away from the coal wall. However, the peak value of the advanced abutment pressure decreased constantly with the increase in mining height but increased with the increase in mining depth. [Received: April 7, 2017; Accepted: February 1, 2018].
机译:实验方案设计用于Xindadi煤矿15,201个工作面前的应力的整体演变,并进行了先进的压力浮雕区域中甲烷渗流的实验研究。通过拟合实验数据,获得了用于煤样的渗透性的渗透功能及其垂直应力。在不同阶段的这些拟合功能建立了数值计算模型。在数值模拟中模拟了采矿高度和采矿深度对甲烷渗流定律的影响。随着采矿高度和深度的增加,先进的邻接压力的影响范围增加,高级邻接压力的峰值位置远离煤墙。然而,晚期邻接压力的峰值随着采矿高度的增加而不断下降,但随着采矿深度的增加而增加。 [收到:2017年4月7日;接受:2018年2月1日]。

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