Validation Study of Reynolds Stress Model Coupled With Gamma Transition for UAV Propellers

Naina Pisharoti, S. Brizzolara
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Abstract

The current study is carried out to investigate complex near-wall flow effects like separation and cross-flow and their impact on UAV performance. Furthermore, the study proposes using the novel SSG/LRR-ω-γ model, which is a second-order closure, Reynolds stress transport-based transition turbulence model, that can help capture the near-wall flow observed in low Reynolds number flows. To prove the credibility of the model, it is validated against experimental data available for the DJI Phantom 3 propeller. The SSG/LRR-ω-γ model is then compared against other transition models as well as fully turbulent models and was found to show better performance when assessed on their ability to predict rotor performance characteristics as well as near-wall flow behavior.
无人机螺旋桨雷诺应力模型与伽马跃迁耦合的验证研究
本研究旨在研究分离、横流等复杂近壁流动效应及其对无人机性能的影响。此外,该研究提出使用新的SSG/LRR-ω-γ模型,这是一种二阶闭合,基于雷诺应力输运的过渡湍流模型,可以帮助捕获低雷诺数流动中观察到的近壁流动。为了证明该模型的可靠性,对大疆幻影3螺旋桨的实验数据进行了验证。然后将SSG/LRR-ω-γ模型与其他转捩模型以及全湍流模型进行比较,发现在评估其预测转子性能特征以及近壁流动行为的能力时表现出更好的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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