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Multiscale modeling of transients in the shock-induced detonation of heterogeneous energetic solid fuels

机译:震动爆炸爆炸中瞬变的多尺度建模 - 异构精力型固体燃料

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摘要

We pursued a quantitative comparison of the continuum and mesoscale simulations of metal particle reactions in a condensed explosive. The continuum or homogeneous approximation assumed a single combustible mixture; contrastingly, in the present heterogeneous treatment of a mixture, aluminum and 1,3,5,7-tetranitro-1,3,5,7-tetrazocane were considered independent reactive granules of micron size with binder being inert material with strength. Both simulations similarly estimated the steady detonation velocity and peak pressure, while the early flame acceleration transients, marked by a complex flow structure behind the flame front, were observed only in the mesoscale simulation. The precise multi-interface processing techniques, combined with granule-level reactive flow models developed in this study, are deemed applicable to general heterogeneous solid fuel combustion studies related to granules of various size, shape, and reactivity. (C) 2020 The Author(s). Published by Elsevier Inc. on behalf of The Combustion Institute.
机译:我们在凝聚的爆炸物中追求连续核和Messcore模拟金属颗粒反应的定量比较。连续um或均匀近似是假设单一可燃混合物;比较地,在本发明的混合物的异质处理中,铝和1,3,5,7-四硝基-1,3,5,7-四氮烷被认为是用粘合剂的微米尺寸的独立反应颗粒,其具有强度的惰性材料。这两种模拟都类似地估计了稳定的爆轰速度和峰值压力,而仅在火焰前面的复杂流动结构中标记的早期火焰加速瞬变,仅在Messcale仿真中观察到。精确的多界面处理技术与本研究开发的颗粒级反应流模型相结合,被认为适用于与各种尺寸,形状和反应性的颗粒有关的一般异质固体燃料燃烧研究。 (c)2020提交人。由elsevier公司发布代表燃烧研究所。

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