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First Rotor Hub Flow Prediction Workshop Experimental Data Campaigns and Computational Analyses

机译:第一转子集线器流程预测研讨会实验数据活动和计算分析

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The rotor hub can account for up to thirty percent of rotorcraft parasite drag. Therefore, reducing hub drag is mandatory to advance the scientific knowledge necessary for future high-speed conventional and compound rotorcraft. The importance of high-Reynolds number testing of rotor hub flows is paramount as turbulent coherent structures persist up to the long-age wake where they interact with the empennage and tail, an observation impossible to make in experiments at lower Reynolds scale due to viscous dissipation. Basic Vertical Lift Center of Excellence (VLRCOE) research at Penn State in water tunnel facilities has provided unique high Reynolds-scale data of rotor hub wakes, providing new data for physical understanding and validation of computational fluid dynamics (CFD) methods. A first rotor hub flow prediction workshop is the result of a collaboration between Penn State and Georgia Tech VLRCOEs with support from the National Rotorcraft Technology Center (NRTC), including participation from academia, industry, and government This paper describes the experimental data campaigns on hub flows conducted in the Penn State water tunnels and used for CFD comparisons/validations at the workshop. The 'First Rotor Hub Flow Prediction Workshop' is a compelling example of productive exchange between experimental and computational efforts, resulting in suggestions for post-workshop experiments and CFD analyses, some of which are highlighted in this paper.
机译:转子轮毂可以占旋翼飞机寄生虫的30%。因此,减少集线器阻力是强制推进未来高速传统和复合旋翼飞机所需的科学知识。转子毂流动的高雷诺数测试的重要性是至关重要的,因为湍流相干结构持续到它们与empennage和尾部相互作用的长期唤醒,这是由于粘性耗散而在较低的雷诺级别的实验中进行的观察。 Penn State在水隧道设施中的基本垂直提升中心(VLRCOE)研究提供了独特的转子枢纽的高雷诺级数据,为计算流体动力学(CFD)方法提供了新的物理理解和验证的新数据。第一转子集线器流程预测研讨会是宾夕法尼亚州俄罗斯技术中心(NRTC)的支持,包括来自学术界,行业和政府的参与本文在枢纽上的实验数据运动在Penn状态水隧道中进行的流程,用于工作坊的CFD比较/验证。 “第一转子集线器流程预测工作坊”是实验和计算工作之间的生产交流的令人讨厌的例子,导致研讨会后实验和CFD分析的建议,其中一些内容在本文中突出了一些。

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