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Turbulence Modeling of Cavitating Flows in Liquid Rocket Turbopumps

机译:液体火箭涡轮泵空化流的湍流模型

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摘要

An accurate prediction of the performance characteristics of cavitating cryogenic turbopump inducers is essential for an increased reliance on numerical simulations in the early turbopump design stages of liquid rocket engines (LRE). This work focuses on the sensitivities related to the choice of turbulence models on the cavitation prediction in flow setups relevant to cryogenic turbopump inducers. To isolate the influence of the turbulence closure models for Reynolds-Averaged Navier–Stokes (RANS) equations, four canonical problems are abstracted and studied individually to separately consider cavitation occurring in flows with a bluff body pressure drop, adverse pressure gradient, blade passage contraction, and rotation. The choice of turbulence model plays a significant role in the prediction of the phase distribution in the flow. It was found that the sensitivity to the closure model depends on the choice of cavitation model itself; the barotropic equation of state (BES) cavitation models are far more sensitive to the turbulence closure than the transport-based models. The sensitivity of the turbulence model is also strongly dependent on the type of flow. For bounded cavitation flows (blade passage), stark variations in the cavitation topology are observed based on the selection of the turbulence model. For unbounded problems, the spread in the results due to the choice of turbulence models is similar to noncavitating, single-phase flow cases.
机译:空化低温涡轮泵诱导器性能特征的准确预测对于增加对液体火箭发动机(LRE)早期涡轮泵设计阶段的数值模拟的依赖至关重要。这项工作的重点是在与低温涡轮泵诱导器相关的流量设置中,关于空化预测中湍流模型选择的敏感性。为了隔离湍流闭合模型对雷诺平均Navier-Stokes(RANS)方程的影响,对四个规范问题进行了抽象和单独研究,以分别考虑在钝体压力降,不利压力梯度,叶片通道收缩的流动中发生的气蚀现象。和旋转。湍流模型的选择在流动相分布的预测中起着重要作用。发现对闭合模型的敏感性取决于空化模型本身的选择。与基于运输的模型相比,正压状态方程(BES)的空化模型对湍流闭合更为敏感。湍流模型的灵敏度也强烈取决于流动的类型。对于有限的空化流(叶片通过),基于湍流模型的选择,可以观察到空化拓扑中的明显变化。对于无穷大问题,由于选择了湍流模型而导致的结果分布类似于非空化单相流动情况。

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