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A new Eulerian Multi-Fluid model for bi-component polydisperse sprays: an essential approach to evaluate the impact of aluminum combustion on Solid Rocket Motor instabilities

机译:一种用于双组分多分散喷雾的新型欧拉多流体模型:一种评估铝燃烧对固体火箭发动机不稳定性影响的基本方法

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In solid rocket motors, the distributed combustion of aluminum droplets is suspected to be a driving mechanism of hydrodynamic and thermoacoustic instabilities. The accurate simulation of evaporating bi-component polydisperse sprays, strongly coupled to unsteady gaseous flows, appears as a determining step for future solid rocket motor optimization. In this contribution, we propose a new Eulerian Multi-Fluid to model reactive bi-component sprays that has been designed to follow accurately the evolution of the composition and the complex thermodynamics of the droplets. The objective of this work is twofold. The first one consists in the derivation of this new Multi-Fluid model and its hypotheses, and the way it is conditioned by the droplet composition. Then we present a time splitting integration strategy particularly efficient to deal with unsteady two-phase flow computations.
机译:在固体火箭发动机中,铝液滴的分布式燃烧被怀疑是流体动力和热声不稳定性的驱动机制。蒸发双组分多分散喷雾的精确模拟与不稳定的气流紧密相关,这似乎是未来固体火箭发动机优化的决定性步骤。在此贡献中,我们提出了一种新的欧拉多流体模型,以对反应性双组分喷雾进行建模,该喷雾旨在精确跟踪组分的演变以及液滴的复杂热力学。这项工作的目的是双重的。第一个是这种新的多流体模型及其假设的推导,以及液滴组成调节它的方式。然后,我们提出了一种时分积分策略,这种策略对于处理不稳定的两相流计算特别有效。

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  • 会议地点 San Jose CA(US)
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    Departement d'Energetique Fondamentale et Appliquee ONERA 91120 Palaiseau FRANCE;

    CNRS UPR 288 - 'Laboratoire d'Energetique Moleculaire et Macroscopique Combustion' Ecole Centrale Paris Grande Voie des Vignes 92295 Chatenay-Malabry FRANCE;

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