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高压旋喷工艺中喷射流切割效果影响因素的研究 被引量:8
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作者 郭亮 肖晓春 +1 位作者 黄均龙 杨方勤 《地下空间与工程学报》 CSCD 2008年第5期937-942,共6页
高压旋喷工艺中高压喷射流对土体介质的切割破坏是其核心技术,但以往对该问题的认识与研究仍然停留在定性阶段。借助物理模拟试验和数值模拟两种手段,对影响高压喷射流的切割效果有关因素进行了定量研究,得出了有益的结论,研究思路与成... 高压旋喷工艺中高压喷射流对土体介质的切割破坏是其核心技术,但以往对该问题的认识与研究仍然停留在定性阶段。借助物理模拟试验和数值模拟两种手段,对影响高压喷射流的切割效果有关因素进行了定量研究,得出了有益的结论,研究思路与成果可为同类问题提供借鉴与参考。 展开更多
关键词 旋喷 高压喷射流 气环 物理模拟 数值模拟
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浅谈高压喷射灌浆技术 被引量:1
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作者 邱敏 《西部探矿工程》 CAS 2003年第4期25-26,共2页
结合施工经验 ,对高压喷射灌浆的作用原理进行了分析 ,对高压喷射灌浆的应用进行了总结 。
关键词 高压喷射灌浆技术 高压喷射流 挤压力 水楔效应
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隔爆外壳不传爆机理的研讨 被引量:7
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作者 柳春生 《矿业安全与环保》 北大核心 2000年第6期27-29,共3页
介绍了对隔爆外壳不传爆机理的传统解释,指出了传统解释所存在的问题及对该问题的新看法和观点,并从法兰面间隙的熄火作用和从间隙喷出的高压喷射流进入未燃气体的能量传播过程及由此引起的未燃气体浓度的变化过程这两个方面来揭示隔... 介绍了对隔爆外壳不传爆机理的传统解释,指出了传统解释所存在的问题及对该问题的新看法和观点,并从法兰面间隙的熄火作用和从间隙喷出的高压喷射流进入未燃气体的能量传播过程及由此引起的未燃气体浓度的变化过程这两个方面来揭示隔爆外壳的不传爆机理。 展开更多
关键词 隔爆面 隔爆间隙 不传爆 高压喷射流
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Dynamic effects of high-pressure pulsed water jet in low-permeability coal seams 被引量:1
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作者 LI Xiao-hong ZHOU Dong-ping LU Yi-yu KANG Yong ZHAO Yu WANG Xiao-chuan 《Journal of Coal Science & Engineering(China)》 2009年第3期284-288,共5页
Mine gas extraction in China is difficult due to the characteristics such as micro-porosity,low-permeability and high adsorption of coal seams.The pulsed mechanismof a high-pressure pulsed water jet was studied throug... Mine gas extraction in China is difficult due to the characteristics such as micro-porosity,low-permeability and high adsorption of coal seams.The pulsed mechanismof a high-pressure pulsed water jet was studied through theoretical analysis,experimentand field measurement.The results show that high-pressure pulsed water jet has threedynamic properties.What's more,the three dynamic effects can be found in low-permeabilitycoal seams.A new pulsed water jet with 200-1 000 Hz oscillation frequency andpeak pressure 2.5 times than average pressure was introduced.During bubble collapsing,sound vibration and instantaneous high pressures over 100 MPa enhanced the cuttingability of the high-pressure jet.Through high-pressure pulsed water jet drilling and slotting,the exposure area of coal bodies was greatly enlarged and pressure of the coal seamsrapidly decreased.Therefore,the permeability of coal seams was improved and gas absorptionrate also decreased.Application results show that gas adsorption rate decreasedby 30%-40%and the penetrability coefficient increased 100 times.This proves that high-pressurepulsed water is more efficient than other conventional methods. 展开更多
关键词 high-pressure pulsed water jet gas desorption penetrability dynamic effects
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Reasonable location parameters of pick and nozzle in combined cutting system 被引量:4
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作者 曾锐 杜长龙 +1 位作者 陈荣俊 王文娟 《Journal of Central South University》 SCIE EI CAS 2014年第3期1067-1076,共10页
The drum shearer and high pressure water jet combined cutting system is an effective technology to cut hard coal-rock, but one problem of the technology is the choice of pick and nozzle location parameters. In order t... The drum shearer and high pressure water jet combined cutting system is an effective technology to cut hard coal-rock, but one problem of the technology is the choice of pick and nozzle location parameters. In order to solve the problem, the process and mechanism of combined cutting arc studied and mining seepage catastrophe theory is used to construct the mathematic and physical model of combined cutting hard coal-rock. Based on the model and detailed analysis of combined cutting mechanism, the single pick and nozzle combined cutting test-bed is built to test the main pick and nozzle location parameters of drum shearer and water jet combined cutting system. Test results show that the best vertical distance between the pick-tip and nozzle center point is the sum of cutting thickness and proper target distance in the Y axial direction; the best horizontal distance is the length between pick-tip point and coal-rock surface bursting crack point in the X axial direction. The best incident angle of water jet should be the same as the bursting crack line's angle in theory, but considering other important factors comprehensively, it is more reasonable when the incident angle of water jet is 90°. 展开更多
关键词 combined cutting location parameter water jet mining seepage theory hard coal-rock
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