期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
径向水耦合爆破爆轰波动效应分析 被引量:1
1
作者 王雁冰 孔维文 +4 位作者 汪东宸 申有义 冯阿建 李杨 郑文海 《煤炭学报》 CSCD 北大核心 2024年第S2期782-799,共18页
为研究不同水耦合系数及耦合形式对爆破效果的影响,通过理论推导和高速纹影实验并结合AUTODYN数值模拟,分析爆轰流场演化过程,推导得到了水介质耦合爆破时同心与偏心2种耦合形式的炮孔孔壁压力;设计了不同水耦合系数和耦合形式下的5种药... 为研究不同水耦合系数及耦合形式对爆破效果的影响,通过理论推导和高速纹影实验并结合AUTODYN数值模拟,分析爆轰流场演化过程,推导得到了水介质耦合爆破时同心与偏心2种耦合形式的炮孔孔壁压力;设计了不同水耦合系数和耦合形式下的5种药包,通过纹影实验并结合数值模拟得到了炸药内部的爆轰波动过程,对比分析5种情况下冲击波的压力变化、冲击波的传播及能量传递效率。结果表明:水耦合系数及耦合形式很大程度地影响了爆炸能量的传递效率,且存在最优不耦合系数,并不能一味地增大水不耦合系数。由于水耦合系数及耦合形式不同,冲击波传递到自由空气场中时蕴含的爆炸能量有所差别,进而影响峰值压力的大小。随着水耦合系数的增大炮孔孔壁压力先增大后减小,能量传递效率先减小后增大再减小;由于水介质的存在,水耦合装药爆破可以有效延长冲击波作用时间,提高能量传递效率;相比于同心水耦合装药形式,偏心水耦合装药存在明显的偏心应力场,可以显著提高耦合侧的孔壁峰值压力,减小能量的衰减效率,提高了能量利用率,耦合侧的爆破效果优于同心耦合时的爆破效果。研究成果对于水耦合装药爆破应用于边坡开挖、隧道周边爆破,改善爆破效果,具有一定的理论指导意义和参考价值。 展开更多
关键词 高速纹影 水耦合系数 偏心耦合 孔壁压力 能量传递 AUTODYN
在线阅读 下载PDF
Performance of water-coupled charge blasting under different in-situ stresses
2
作者 ZHOU Zi-long WANG Zhen +2 位作者 CHENG Rui-shan CAI Xin LAN Ri-yan 《Journal of Central South University》 SCIE EI CAS CSCD 2024年第7期2300-2320,共21页
Water-coupled charge blasting is a promising technique to efficiently break rock masses.In this study,numerical models of double boreholes with water-coupled charge are established using LS-DYNA and are calibrated by ... Water-coupled charge blasting is a promising technique to efficiently break rock masses.In this study,numerical models of double boreholes with water-coupled charge are established using LS-DYNA and are calibrated by the tests of rock masses subjected to explosion loads to examine its performance.The crack levels of rock mass induced by water-coupled charge blasting and air-coupled charge blasting are first compared.It is found that water-coupled charge blasting is more appropriate to fracture deep rock mass than air-coupled charge blasting.In addition,the effects of rock properties,water-coupled charge coefficients,and borehole connection angles on the performance of water-coupled charge blasting are investigated.The results show that rock properties and water-coupled charge coefficients can greatly influence the crack and fragmentation levels of rock mass induced by water-coupled charge blasting under uniform and non-uniform in-situ stresses.However,changing borehole-connection angles can only affect crack and fragmentation levels of rock mass under non-uniform in-situ stresses but barely affect those under uniform in-situ stresses.A formula is finally proposed by considering the above-mentioned factors to provide the design suggestion of water-coupled charge blasting to fracture rock mass with different in-situ stresses. 展开更多
关键词 water-coupled blasting in-situ stress water-coupled charge coefficient rock type borehole-connection angle
在线阅读 下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部