首页> 外文会议>International Detonation Symposium >Explosive Fragmentation of Liquids in Spherical Geometry
【24h】

Explosive Fragmentation of Liquids in Spherical Geometry

机译:球形几何形状中液体的爆炸性碎片

获取原文

摘要

Rapid acceleration of a spherical shell of liquid following detonation of a high explosive causes the liquid to form fine jets that are similar in appearance to the particle jets that are formed during explosive dispersal of a packed layer of solid particles. Of particular interest is determining the dependence of the scale of the jet-like structures on the physical parameters of the system, including the fluid properties (e.g., density, viscosity, surface tension) and the ratio of the mass of the liquid to that of the explosive. The present paper presents computational results from a multimaterial hydrocode describing the dynamics of the explosive dispersal process. The computations are used to track the overall features of the dispersal of the liquid layer, including the wave dynamics, and motion of the spall and accretion layers. The results are compared with experimental results with spherical charges containing a variety of different fluids, including water, glycerol, ethanol, and vegetable oil, which together encompass a significant range of fluid properties. The results show that the number of jet structures is not sensitive to the fluid properties, but primarily dependent on the mass ratio. Above a certain mass ratio of liquid fill to explosive burster (F/B), the number of jets is approximately constant and consistent with an empirical model based on the maximum thickness of the accretion layer. For small values of F/B, the number of liquid jets is reduced, in contrast with explosive powder dispersal, where small F/B yields a larger number of particle jets.
机译:在高爆炸物爆炸后,液体液体的快速加速使液体形成在填充层的固体颗粒的爆炸分散期间形成的颗粒喷射中的细射流。特别令人兴趣的是确定喷射样结构的比例对系统的物理参数的依赖性,包括流体性质(例如,密度,粘度,表面张力)和液体的质量与液体的比率爆炸性。本文介绍了描述了描述爆炸性分散过程动态的多国加油的计算结果。计算用于跟踪液体层的分散的整体特征,包括剥去波动和剥离层的波动和运动。将结果与实验结果进行比较,具有含有各种不同的流体的球形电荷,包括水,甘油,乙醇和植物油,它们共同包含了大量的流体性质。结果表明,喷射结构的数量对流体性质不敏感,但主要取决于质量比。高于液体填充物的一定质量比(F / B),射流的数量近似恒定,并且基于增值层的最大厚度与经验模型一致。对于F / B的小值,与爆炸性粉末分散相比,液体喷射的数量减少,其中小的F / B产生较大数量的颗粒喷射。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号