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Simulation of an Isolated Tiltrotor in Hover with an Unstructured Overset-Grid RANS Solver

机译:使用非结构化的普雷斯特栅栏跑歌旋转悬停中孤立的拆卸器的仿真

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An unstructured overset-grid Reynolds Averaged Navier-Stokes (RANS) solver, FUN3D, is used to simulate an isolated tiltrotor in hover. An overview of the computational method is presented as well as the details of the overset-grid systems. Steady-state computations within a noninertial reference frame define the performance trends of the rotor across a range of the experimental collective settings. Results are presented to show the effects of off-body grid refinement and blade grid refinement The computed performance and blade loading trends show good agreement with experimental results and previously published structured overset-grid computations. Off-body flow features indicate a significant improvement in the resolution of the first perpendicular blade vortex interaction with background grid refinement across the collective range. Considering experimental data uncertainty and effects of transition, the prediction of figure of merit on the baseline and refined grid is reasonable at the higher collective range- within 3 percent of the measured values. At the lower collective settings, the computed figure of merit is approximately 6 percent lower than the experimental data. A comparison of steady and unsteady results show that with temporal refinement, the dynamic results closely match the steady-state noninertial results which gives confidence in the accuracy of the dynamic overset-grid approach.
机译:一个非结构化的推档雷诺瓦尔兹平均Navier-Stokes(RANS)求解器,Fun3D,用于模拟悬停中的孤立的泰尔特罗特。提出了计算方法的概述以及监督网格系统的细节。非线性参考帧内的稳态计算定义了转子跨越实验集体设置的性能趋势。结果用于炫耀体网格细化和刀片网格细化的效果所计算的性能和刀片装载的趋势表明与实验结果和先前公布的结构溢流,网格计算吻合。缺口流特征表示在集体范围内与背景网格改进的第一垂直叶片涡流相互作用的分辨率显着改善。考虑到实验数据的不确定度和转型效果,基线和精制网格上的优异图形的预测在较高的集体范围内 - 在测量值的3%以内。在较低的集体设置下,计算的优点图比实验数据低约6%。稳态和不稳定结果的比较表明,随着时间的细化,动态结果与稳态的无限效果紧密匹配,这对动态监督电网方法的准确性提供了置信度。

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