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High resolution numerical simulation of shock-to-detonation transition of condensed-phase explosives

  • Beijing Institute of Technology

科研成果: 书/报告/会议事项章节会议稿件同行评审

摘要

In this paper, shock-to-detonation transition for condensed phase explosives is numerically simulated by adopting high resolution numerical scheme. Fifth-order WENO scheme and third-order TVD Runge-Kutta method are employed to discretize Euler equations with chemical reaction source in space and time respectively, and parallel high resolution code is developed. Applying this code, the influence of incident pressure and pulse width on the run distance to detonation is investigated. The numerical results show that incident pressure and pulse width govern the initiation process. If appropriate values are taken for incident pressure and pulse width, the pressure will increase with the enlarging of the shock wave propagation distance, and finally the explosives reach steady detonation. The run distance to detonation is also influenced by those two factors, and it gets shorter with the increase of pulse width and incident pressure. When the incident pressure and the pulse width are small enough, the retonation phenomenon can be observed, and it becomes obvious along with the decreasing of incident pressure and pulse width.

源语言英语
主期刊名Explosion, Shock Wave and High-Energy Reaction Phenomena II
出版商Trans Tech Publications Ltd.
40-45
页数6
ISBN(印刷版)9783037858264
DOI
出版状态已出版 - 2013
活动4th International Symposium on Explosion, Shock Wave and High-Energy Reaction Phenomena 2013, ESHP Symposium 2013 - Nago, Okinawa, 日本
期限: 27 3月 201329 3月 2013

出版系列

姓名Materials Science Forum
767
ISSN(印刷版)0255-5476
ISSN(电子版)1662-9752

会议

会议4th International Symposium on Explosion, Shock Wave and High-Energy Reaction Phenomena 2013, ESHP Symposium 2013
国家/地区日本
Nago, Okinawa
时期27/03/1329/03/13

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