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首页> 外文期刊>International Journal of Multiphase Flow >Large-eddy simulation of an air-assisted liquid jet under a high-frequency transverse acoustic forcing
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Large-eddy simulation of an air-assisted liquid jet under a high-frequency transverse acoustic forcing

机译:高频横向声学强制下的空气辅助液体射流的大涡模拟

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The present contribution falls in the scope of high-frequency combustion instabilities occurring in liquid rocket engines. Under subcritical operating conditions, numerical simulations have to render the effects of acoustic waves on the atomisation of liquid jets since these may impact the stability of the engine. Therefore, the present contribution aims at evaluating the ability of a particular numerical strategy adapted to the simulation of two-phase flows to render these interaction mechanisms. The selected strategy is based on the coupling between a diffuse interface method for the simulation of large liquid structures, and a kinetic-based Eulerian model for the description of droplets. The numerical simulation of an air-assisted liquid jet submitted to a transverse acoustic modulation is performed. The flattening of the liquid core under acoustic constraints is retrieved and induces an intensification of its stripping. In addition, thanks to appropriate coupling source terms, the modification of the spray shape as well as periodic oscillations of droplets are retrieved. The numerical strategy is thus proved to be adapted to deal with atomised liquid jets under transverse acoustic modulation and can be used for future numerical studies of high-frequency combustion instabilities. (C) 2019 Elsevier Ltd. All rights reserved.
机译:本贡献落入了在液体火箭发动机中发生的高频燃烧不稳定性的范围。在亚临界操作条件下,数值模拟必须使声波对液体喷射的雾化的影响,因为它们可能影响发动机的稳定性。因此,本贡献旨在评估特定数值策略适于模拟两相流动以使这些相互作用机制的能力。所选择的策略基于用于模拟大型液体结构的漫反射界面方法与用于液滴描述的基于动力学的欧拉模型之间的耦合。进行了提交给横向声调制的空气辅助液体喷射的数值模拟。检索声约束下液体芯的扁平化并诱导其汽提的强化。另外,由于适当的耦合源术语,检索喷雾形状的修改以及液滴的周期性振荡。因此,证明了数值策略适于处理横向声调制下的雾化液体喷射,可用于未来的高频燃烧不稳定的数值研究。 (c)2019年elestvier有限公司保留所有权利。

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