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首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Numerical Simulation of Liquid Jet Atomization Including Turbulence Effects
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Numerical Simulation of Liquid Jet Atomization Including Turbulence Effects

机译:包括湍流效应的液体射流雾化的数值模拟

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This paper describes numerical implementation and validation of a newly developed hybrid model, T-blob/T-TAB, into an existing computational fluid dynamics (CFD) program for primary and secondary breakup simulation of liquid jet atomization. This model extends two widely used models, the Kelvin-Helmholtz (KH) instability of Reitz (the "blob" model) (1987, Atomization Spray Technol., 3, pp. 309-337) and the Taylor-Analogy-Breakup (TAB) secondary droplet breakup of O'Rourke and Amsden (1987, SAE Technical Paper No. 872089) to include liquid turbulence effects. In the primary breakup model, the level of the turbulence effect on the liquid breakup depends on the characteristic scales and flow conditions at the liquid nozzle exit. Transition to the secondary breakup was modeled based on energy balance, and an additional turbulence force acted on parent drops was modeled and integrated into the TAB governing equation. Several assessment studies are presented, and the results indicate that the existing KH and TAB models tend to underpredict the product drop size and spray angle, whereas the current model provides superior results when compared to the measured data.
机译:本文介绍了一种新开发的混合模型T-blob / T-TAB的数值实现和验证,该模型已用于现有的计算流体力学(CFD)程序中,用于液体喷射雾化的一次和二次分解模拟。该模型扩展了两个广泛使用的模型,即Reitz的Kelvin-Helmholtz(KH)不稳定性(“ blob”模型)(1987年,Atomization Spray Technol。,第3页,第309-337页)和Taylor-Analogy-Breakup(TAB) )O'Rourke and Amsden(1987,SAE Technical Paper No. 872089)的二次液滴破碎,以包括液体湍流效应。在主要破碎模型中,湍流对液体破碎的影响程度取决于液体喷嘴出口处的特征尺度和流动条件。基于能量平衡对过渡到二次分解的过程进行了建模,并对作用在母滴上的附加湍流模型进行了建模,并将其整合到TAB控制方程中。提出了一些评估研究,结果表明,现有的KH和TAB模型往往会低估产品的液滴尺寸和喷雾角度,而与测量数据相比,当前模型可提供更好的结果。

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