径向不耦合装药爆破效果的数值研究Numerical studies on blasting effects under the radial decoupling charge
倪文婧;
NI Wen-jing;Tiandi Science &Technology, Co., Ltd.;
摘要(Abstract):
为了研究径向不耦合条件下爆破效果的影响因素,利用AUTODYN-2D对比不耦合系数、不耦合介质、炸药种类对爆破效果的影响规律。结果表明,与耦合装药相比,径向不耦合装药条件下炮孔压力明显降低。对比水介质和空气介质下的爆破效果可知,水介质不耦合条件下,炸药爆炸能量的传递效率更高。炮孔压力与炸药种类密切相关,TNT产生的炮孔压力最大,但作用时间较短,而ANFO和乳化炸药的作用时间较长。
In order to investigate the factors influencing the radial decoupling blasting, these parameters are studied and compared i.e. decoupling coefficient, decoupling medium and explosives types by using AUTODYN-2 D. It can be concluded that compared with results of the fully coupling charge, the bore pressure is significantly decreased in case of the radial decoupling blasting, and higher energy transferring efficient is observed when the water medium is used. In addition, blast holes pressure are dependent on the explosives types. It is clear that the highest blast hole pressure is noticed with TNT among these three explosives used in the present paper and shorter action duration is obvious. In contrast, longer action duration is found in case of ANFO and emulsion explosives.
关键词(KeyWords):
径向不耦合装药;爆破效果;数值计算;AUTODYN-2D
radial decoupling charge;blasting effects;numerical simulation;AUTODYN-2D
基金项目(Foundation): 天地科技股份有限公司技术创新基金资助项目(KJ-JJ-2011-GXJS-03)
作者(Authors):
倪文婧;
NI Wen-jing;Tiandi Science &Technology, Co., Ltd.;
参考文献(References):
- [1] HAGAN T N,GIBSON I M.Lower blasthole pressures:a means of reducing costs when blasting rocks of low to moderate strength[J].International Journal of Mining and Geological Engineering,1988,6:1-13.
- [2] 宗琦,孟德君.炮孔不同装药结构对爆破能量影响的理论探讨[J].岩石力学与工程学报,2003,22(4) :643-644.ZONG Q,MENG D J.Influence of different kinds of hole charging structure on explosion energy transmission[J].Chinese Journal of Rock Mechanics and Engineering,2003,22(4):643-644.
- [3] 宗琦,田立,汪海波.水介质不耦合装药爆破岩石破坏范围的研究和应用[J].爆破,2012,29 (2) :42-46.ZONG Q,TIAN L,WANG H B.Study and application on rock damage range by blasting with water-decoupled charge[J].Blasting,2012,29 (2) :42-46.
- [4] 梁瑞,解丽娜,周文海,等.中部空气间隔装药结构不耦合状态光面爆破效果研究[J].矿冶工程,2019,39(1):25-28.LIANG R,XIE L N,ZHOU W H,et al.Research on smooth blasting with decoupled explosive charge[J].Mining and Metallurgical Engineering,2019,39(1):25-28.
- [5] 龚玖,汪海波,王梦想,等.空气和水不耦合装药对爆破块度影响分析[J].中国安全生产科学技术,2018,14(9):105-110.GONG J,WANG H B,WANG M X,et al.Analysis on influence of water and air decoupling charge on blasting fragmentation[J].Journal of Safety Science and Technology,2018,14(9):105-110.
- [6] HIROE T,FUJIWARA K,HATA H,et al.Deformation and fragmentation behavior of exploded metal cylinders and the effects of wall materials,configuration,explosive energy and initiated locations[J].International Journal of Impact Engineering,2008,35:1 578-1 586.
- [7] HUANG H,JIAO Q,NIE J,et al.Numerical modeling of underwater explosion by one dimensional ANSYS- AUTODYN[J].Journal of Energetic Materials,2011,29:292-325.
- [8] ZHU Z,XIE H,MOHANTY B.Numerical investigation of blasting-induced damage in cylindrical rocks[J].International Journal of Rock Mechanics & Mining Sciences,2008,45:111-121.
- [9] ZHU Z,MOHANTY B,XIE H.Numerical investigation of blasting-induced crack initiation and propagation in rocks[J].International Journal of Rock Mechanics and Mining Sciences,2007,44:412-424.