期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
Gas drainage from different mine of drainage systems for deep coal areas: optimal placement seams with high gas emissions 被引量:10
1
作者 Ping Lu Ping Li +3 位作者 Jian Chen Chuijin Zhang Junhua Xue Tao Yu 《International Journal of Coal Science & Technology》 EI 2015年第1期84-90,共7页
The techniques of stress relief mining in low-permeability coal seams and pillarless gob side retained roadway entry using Y-type ventilation and gas drainage systems were developed to control gas outbursts and applie... The techniques of stress relief mining in low-permeability coal seams and pillarless gob side retained roadway entry using Y-type ventilation and gas drainage systems were developed to control gas outbursts and applied successfully. However, as the mining depth increasing, parts of the gas drainage system are not suitable for mines with high gas emissions. Because larger mining depths cause higher ground stresses, it becomes extremely difficult to maintain long gob side roadways. The greater deformation suffered by the roadway is not favorable lor borehole drilling for continuous gas drainage. To solve these problems, Y-type ventilation and gas drainage systems installed from a roof roadway were designed for drainage optimization. This system was designed based on a gas-enrichment zone analysis developed from mining the 11-2 coal seam in the Zhuji Mine at Huainan, Anhui Province, China. The method of Y-type gas extraction from different mine areas was applied to the panel 1112(1) in the Zhuji Mine. The absolute gas emission rate was up to 116.3 m^3/min with an average flow of 69.1 m^3/min at an average drainage concentration of nearly 85 %. After the Y-type method was adopted, the concentration of gas in the return air was 0.15 %-0.64 %, averaging 0.39 % with a ventilation rate of 2100-2750 m^3/min. The gas management system proved to be efficient, and the effective gas control allowed safe production to continue . 展开更多
关键词 Gas drainage Different gas sources Y-type ventilation Gob side retained roadway Gas emission Gas-enrichment zone
下载PDF
极软煤层动压巷道围岩大变形特征及全锚索支护技术研究 被引量:37
2
作者 孙利辉 张海洋 +5 位作者 张小建 穆彦鹏 王坤 杨贤达 杨本生 蓝成仁 《采矿与安全工程学报》 EI CSCD 北大核心 2021年第5期937-945,共9页
极软煤层回采巷道巷帮变形破坏严重,传统锚网索支护无法有效控制巷道稳定,常常出现前掘后修的问题。以郭二庄矿22311工作面回风巷煤帮强烈变形问题为背景,分析极软煤体物理力学特征及破碎机理,研究巷道煤帮强烈大变形规律,提出巷道短锚... 极软煤层回采巷道巷帮变形破坏严重,传统锚网索支护无法有效控制巷道稳定,常常出现前掘后修的问题。以郭二庄矿22311工作面回风巷煤帮强烈变形问题为背景,分析极软煤体物理力学特征及破碎机理,研究巷道煤帮强烈大变形规律,提出巷道短锚索支护+长锚索补强的全锚索加固技术。结果表明:煤体表观上结构致密,实则其内部孔隙由大量的黏土矿物填充,致使煤体极易发生崩解破坏,煤体原始强度及开采扰动后残余强度均较低;煤样在外载荷作用下内部会形成竖向贯通性X型裂隙,巷帮煤体在该裂隙扩展中形成由外向内的渐进性滑移破坏线,导致巷帮部分锚杆失效、锚索破断;巷道全锚索支护较原锚杆支护围岩支护强度提高了1.67倍,煤体承载能力得到了加强,锚固结构控制围岩范围增大了近1倍,抑制了围岩滑移破坏。现场试验表明:巷道围岩变形满足正常使用要求,锚索受力在合理载荷范围内。全锚索支护技术是极软弱煤岩体巷道支护的重要方法之一。 展开更多
关键词 极软煤层 煤体大变形 滑移变形 前掘后修 全锚索支护
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部