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Numerical investigations on detonations in a condensed-phase explosive and oblique shock waves in surrounding fluids

机译:凝结爆炸波和斜波在周围流体中爆炸的数值研究

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摘要

In this work, we studied detonation in condensed-phase explosives of PETN and the oblique shock waves in the surrounding fluid. The surrounding fluid was modeled as an ideal gas equation of state using the specific heat ratio as a parameter. Depending on the specific heat ratio, four types of flow structures were observed behind the oblique shock wave in the ideal gas. We measured the detonation/shock angles and the contact angle between the detonation products and the ideal gas. When the specific heat ratio was greater than the critical value, the oblique shock wave was detached from the detonation front at the PETN/ideal gas interface. When attached, three types of waves are observed, depending on the specific heat ratio: a strong oblique shock wave, strong and weak oblique shock waves which meet at the triple point as well as a weak oblique shock wave. To understand the properties of the flow near the detonation and the oblique shock waves, they were modeled as planar Chapman-Jouguet (CJ) detonation in PETN and as oblique shock waves in ideal gas. They were theoretically estimated as (1) Prandtl-Meyer expansion of the detonation products from the CJ state, and (2) oblique shock waves around a wedge using oblique shock theory or around a cone using the Taylor-Maccoll equation. From the flow models, we obtained a solution for the pressure equilibrium and parallel flows between the detonation products and ideal gas under the assumption that the wedge and cone angles correspond to the contact angle between them. For the attached cases, the solution was consistent with the simulated observations at the PETN/ideal gas interface. From the flow models, the maximum deflection angles for the detonation products and the ideal gas were obtained, and their magnitude correlations used to classify the four types of flow. (C) 2019 The Combustion Institute. Published by Elsevier Inc. All rights reserved.
机译:在这项工作中,我们研究了PETN凝聚相炸药中的爆炸和周围流体中的倾斜冲击波。使用比热比作为参数,将周围流体建模为理想的气体状态方程。根据比热比,在理想气体中的斜激波后面观察到四种流动结构。我们测量了爆炸/冲击角以及爆炸产物与理想气体之间的接触角。当比热比大于临界值时,倾斜冲击波在PETN /理想气体界面处从爆轰波前脱离。附着时,根据比热比可观察到三种类型的波:强斜向冲击波,在三点相遇的强斜向冲击波和弱斜向冲击波以及弱斜向冲击波。为了了解爆炸附近的流动特性和倾斜冲击波,将它们建模为PETN中的平面Chapman-Jouguet(CJ)爆炸以及理想气体中的倾斜冲击波。从理论上将它们估计为(1)爆轰产物从CJ态的Prandtl-Meyer展开,以及(2)使用斜冲击理论在楔形物周围或使用Taylor-Maccoll方程在圆锥周围的斜冲击波。从流动模型中,我们在假设楔角和锥角对应于它们之间的接触角的假设下,获得了爆轰产物与理想气体之间压力平衡和平行流的解决方案。对于附带的情况,该解决方案与在PETN /理想气体界面处的模拟观察结果一致。从流动模型中,获得了爆轰产物和理想气体的最大偏转角,并将它们的大小相关性用于对四种流动类型进行分类。 (C)2019燃烧研究所。由Elsevier Inc.出版。保留所有权利。

著录项

  • 来源
    《Combustion and Flame》 |2020年第1期|133-146|共14页
  • 作者

  • 作者单位

    Natl Inst Adv Ind Sci & Technol Cent 5 1-1-1 Higashi Tsukuba Ibaraki 3058565 Japan;

    Toyama Coll Natl Inst Technol 1-2 Ebie Neriya Imizu Toyama 9330293 Japan;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Layered detonation; Oblique shock wave; Ideal gas; Condensed-phase explosive; CFD;

    机译:分层爆炸斜向冲击波;理想气体;凝相炸药;差价合约;

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