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Numerical simulation of flashing jets atomisation using a unified approach

机译:利用统一方法闪光喷射雾化的数值模拟

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The physics of the atomisation of flash boiling jets is known to be extremely complex with interactions of different mechanisms at microscopic and macroscopic level. Early studies describe both the mechanical and thermodynamic effects focusing on the influence of the initial pressure and temperature on the spray characteristics. The resulting flashing jet usually emerges to the low-pressure region with a high velocity and fragments to large blobs and ligaments which break up to droplets due to both mechanical and thermodynamic effects. This present study describes a numerical approach for simulating the atomisation of flashing liquids suitable for both primary atomisation and secondary break-up using the Eulerian-Lagrangian-Spray-Atomisation model coupled with a pressure equation for the metastable jet. The proposed approach aims at describing the atomisation of superheated jets and the impact of bubble nucleation at different stages and regimes inside the channel the liquid emerges from. The changes in the regime outside the nozzle are discussed for various cases of flashing liquids providing insights for the interactions of the mechanisms that contribute to the liquid fragmentation and the spray characteristics such as the droplet size and velocity and the spray angle. (C) 2019 Elsevier Ltd. All rights reserved.
机译:已知闪蒸沸腾射流的雾化物理学是非常复杂的,在微观和宏观水平下不同机制的相互作用。早期研究描述了专注于初始压力和温度对喷射特性的影响的机械和热力学效应。所得闪光射流通常出现在低压区域中,具有高速和碎片,其大的斑点和韧带,其由于机械和热力学效应而分解到液滴。本研究描述了一种用于模拟适用于主要雾化和二次分手的闪光液体的雾化使用eulerian-lagrangian - 喷雾雾化模型与亚稳射流的压力方程的次分解的数值方法。所提出的方法旨在描述超热喷射的雾化和泡沫成核在不同阶段和渠道内的制度的影响的雾化液体出现。讨论喷嘴外部的改变,用于各种闪光液体的情况,为液体碎片和液滴尺寸和速度等喷射特性提供有助于液体碎片的机构的相互作用以及喷射特性和喷射角度。 (c)2019年elestvier有限公司保留所有权利。

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