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RANS and detached-eddy simulation of the NCCR airfoil

机译:NCCR机翼的RANS和独立涡模拟

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A circulation control foil is studied using incompressible Reynolds-averaged Navier Stokes and detached-eddy simulation CFD methods. It is shown that Reynolds-averaged Navier-Stokes simulations of large jet momentum coefficient cases with a linear Reynolds-stress closure and a blended k-/spl omega/ = k-/spl epsi/ turbulence model is able to successfully predict the pressure-distribution trends in comparison to benchmark data. Details of the simulated flow are presented through analysis of the integral forces and moment, velocity field, and turbulent kinetic energy. However, given the lack of data and CFD grid studies these results lack validation. Detached-eddy simulation is undertaken for the unblown case, and demonstrates that the method is capable of resolving turbulent vortex shedding. Statistical and spectral analysis is used to explain the simulation results, however, as with the RANS simulations, lack of data precludes validation for this problem. Nonetheless, results are encouraging and suggest further application of DES to both circulation control studies as well as other trailing-edge applications. Finally, implications for cavitation-free operation of circulation-control devices are discussed.
机译:使用不可压缩的Reynolds-Iveriged Navier Stokes和拆卸涡流模拟CFD方法研究了循环控制箔。结果表明,具有线性雷诺 - 应力闭合的大型喷射动量系数壳体的雷诺瓦平均血管刺激模拟和混合k-/ splω/ = k- / spl epsi /湍流模型能够成功地预测压力 - 与基准数据相比的分布趋势。通过分析积分力和力矩,速度场和湍流动能的分析来提出模拟流的细节。但是,鉴于缺乏数据和CFD网格研究,这些结果缺乏验证。拆卸涡流模拟是针对未布解的情况进行的,并表明该方法能够解决湍流涡旋脱落。统计和光谱分析用于解释模拟结果,然而,与Rans模拟一样,数据缺乏对此问题的验证。尽管如此,结果令人鼓舞并建议将DES进一步适用于循环控制研究以及其他后缘应用。最后,讨论了对循环控制装置的无空化操作的影响。

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