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Application of Preconditioned, Multiple-Species, Navier-Stokes Models to Cavitating Flows

机译:预处理,多物种,Navier-stokes模型在空化流动中的应用

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摘要

A preconditioned, homogenous, multiphase, Reynolds Averaged Navier-Stokes model with mass transfer is presented. Liquid, vapor, and noncondensable gas phases are included. The model is preconditioned in order to obtain good convergence and accuracy regardless of phasic density ratio or flow velocity. Both incompressible and finite-acoustic-speed models are presented. Engineering relevant validative and demonstrative unsteady and transient two and three-dimensional results are given. Transients due to unsteady cavitating flow including shock waves are captured. In modeling axisymmetric cavitators at zero angle-of-attack with 3-D unsteady RANS, significant asymmetric flow features are obtained. In comparison with axisymmetric unsteady RANS, capture of these features leads to improved agreement with experimental data. Conditions when such modeling is not necessary are also demonstrated and identified.
机译:提出了具有传质的预处理,均质,多相,雷诺平均Navier-Stokes模型。包括液相,气相和不可凝气相。对该模型进行预处理,以便获得良好的收敛性和准确性,而无论相密度比或流速如何。提出了不可压缩模型和有限声速模型。给出了与工程相关的验证性和示范性非稳态和瞬态二维和三维结果。捕获由于不稳定的空化流(包括冲击波)而引起的瞬变。在使用3-D非稳态RANS对攻角为零的轴对称空化器进行建模时,可以获得明显的非对称流动特征。与轴对称非稳态RANS相比,捕获这些特征可提高与实验数据的一致性。还演示并确定了不需要这种建模的条件。

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