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Y形巷道活塞风效应研究 被引量:1
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作者 王文才 魏丁一 +1 位作者 王振涛 周涛 《煤炭技术》 北大核心 2017年第7期145-147,共3页
对于在Y形巷道内矿车运行时所产生活塞风效应的影响问题,采用FLUENT数值模拟的方法,通过建立矿车在Y形巷道内运行时的二维物理几何模型,对矿车在不同运动状态下Y形巷道内风流分布规律进行了分析研究。
关键词 y形巷道 压差 活塞风效应
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交叉巷道稳定性影响因素及合理设计方案研究 被引量:2
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作者 高鲁 《广东化工》 CAS 2019年第14期165-166,157,共3页
通过对影响交叉巷道围岩稳定性不同因素的分析,得出Y形交叉巷道是交叉巷道中稳定性最好的一种交叉方式,且交叉角度应大于30°,对于地应力条件复杂地段,尤其是有断层、陷落柱等地质构造区域,尽量避免将交叉巷道布置在其中。以期利用... 通过对影响交叉巷道围岩稳定性不同因素的分析,得出Y形交叉巷道是交叉巷道中稳定性最好的一种交叉方式,且交叉角度应大于30°,对于地应力条件复杂地段,尤其是有断层、陷落柱等地质构造区域,尽量避免将交叉巷道布置在其中。以期利用上述结论用于今后煤矿设计的实际工作之中。 展开更多
关键词 交叉巷道 y交叉巷道 围岩稳定性 合理支护方式
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Gas drainage from different mine of drainage systems for deep coal areas: optimal placement seams with high gas emissions 被引量:10
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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
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