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Vorticity-transport and unstructured RANS investigation of rotor-fuselage interactions

机译:旋翼-机身相互作用的涡度传输和非结构化RANS研究

摘要

The prediction capabilities of unstructured primitive-variable and vorticity-transport-based Navier-Stokes solvers have been compared for rotorcraft-fuselage interaction. Their accuracies have been assessed using the NASA Langley ROBIN series of experiments. Correlation of steady pressure on the isolated fuselage delineates the differences between the viscous and inviscid solvers. The influence of the individual blade passage, model supports, and viscous effects on the unsteady pressure loading has been studied. Smoke visualization from the ROBIN experiment has been used to determine the ability of the codes to predict the wake geometry. The two computational methods are observed to provide similar results within the context of their physical assumptions and simplifications in the test configuration.
机译:比较了非结构化原始变量和基于涡度运输的Navier-Stokes求解器的预测能力,以进行旋翼飞机-机身相互作用。他们的准确度已使用NASA Langley ROBIN系列实验进行了评估。隔离机身上的稳定压力的相关性描述了粘性和非粘性解算器之间的差异。研究了单个叶片通道,模型支撑和粘性效应对非稳态压力载荷的影响。 ROBIN实验中的烟雾可视化已用于确定代码预测尾流几何形状的能力。观察到这两种计算方法在其物理假设和测试配置简化的情况下提供了相似的结果。

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