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Aerodynamic Performance Predictions of Single and Twin Jet Afterbodies

机译:单发和双发喷气机机体的空气动力性能预测

摘要

The multiblock three-dimensional Navier-Stokes method PAB3D was utilized by the Component Integration Branch (formerly Propulsion Aerodynamics Branch) at the NASA-Langley Research Center in an international study sponsored by AGARD Working Group #17 for the assessment of the state-of-the-art of propulsion-airframe integration testing techniques and CFD prediction technologies. Three test geometries from ONERA involving fundamental flow physics and four geometries from NASA-LaRC involving realistic flow interactions of wing, body, tail, and jet plumes were chosen by the Working Group. An overview of results on four (1 ONERA and 3 LaRC) of the seven test cases is presented. External static pressures, integrated pressure drag and total drag were calculated for the Langley test cases and jet plume velocity profiles and turbulent viscous stresses were calculated for the ONERA test case. Only selected data from these calculations are presented in this paper. The complete data sets calculated by the participants will be presented in an AGARD summary report. Predicted surface static pressures compared favorably with experimental data for the Langley geometries. Predicted afterbody drag compared well with experiment. Predicted nozzle drag was typically low due to over-compression of the flow near the trailing edge. Total drag was typically high. Predicted jet plume quantities on the ONERA case compared generally well with data.
机译:由AGARD工作组#17赞助的一项国际研究中,NASA-Langley研究中心的组件集成分部(以前为推进空气动力学分部)使用了多块三维Navier-Stokes方法PAB3D。推进技术-机体综合测试技术和CFD预测技术。工作组选择了来自ONERA的三种测试几何,涉及基本的流动物理学,以及来自NASA-LaRC的四种几何,涉及机翼,机体,尾巴和喷气羽的实际流动相互作用。概述了七个测试用例中的四个(1个ONERA和3个LaRC)的结果。对Langley测试用例计算了外部静压,综合压力阻力和总阻力,而在ONERA测试用例中计算了射流速度分布和湍流粘性应力。本文仅介绍从这些计算中选择的数据。参与者计算出的完整数据集将显示在AGARD摘要报告中。预测的表面静压力与Langley几何形状的实验数据相比具有优势。预测的后拖曳力与实验比较好。预测的喷嘴阻力通常很低,这是由于后缘附近的流动过度压缩所致。总阻力通常很高。在ONERA机壳上预测的射流羽流量通常可以很好地与数据进行比较。

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