首页> 外文会议>AIAA/ASME/SAE/ASEE joint propulsion conference;AIAA propulsion and energy forum >Development of the Glenn-Heat-Transfer (Glenn-HT) Computer Code to Enable Time-Filtered Navier Stokes (TFNS) Simulations and Application to Film Cooling on a Flat Plate Through Long Cooling Tubes
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Development of the Glenn-Heat-Transfer (Glenn-HT) Computer Code to Enable Time-Filtered Navier Stokes (TFNS) Simulations and Application to Film Cooling on a Flat Plate Through Long Cooling Tubes

机译:开发Glenn-Heat-Transfer(Glenn-HT)计算机代码以实现时间过滤的Navier Stokes(TFNS)模拟,并将其应用于通过长冷却管在平板上进行薄膜冷却

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Computational fluid dynamics (CFD) analysis using Reynolds-averaged Navier-Stokes (RANS) formulation for turbomachinery-related flows has enabled improved engine component designs. RANS methodology has limitations that are related to its inability to accurately describe the spectrum of flow phenomena encountered in engines. Examples of flows that are difficult to compute accurately with RANS include phenomena such as laminar/turbulent transition, turbulent mixing due to mixing of streams, and separated flows. Large eddy simulation (LES) can improve accuracy but at a considerably higher cost. In recent years, hybrid schemes that take advantage of both unsteady RANS and LES have been proposed. This study investigated an alternative scheme, the time-filtered Navier-Stokes (TFNS) method applied to compressible flows. The method developed by Shih and Liu was implemented in the Glenn-Heat-Transfer (Glenn-HT) code and applied to film-cooling flows. In this report the method and its implementation is briefly described. The film effectiveness results obtained for film cooling from a row of 30° holes with a pitch of 3.0 diameters emitting air at a nominal density ratio of unity and two blowing ratios of 0.5 and 1.0 are shown. Flow features under those conditions are also described.
机译:使用雷诺平均Navier-Stokes(RANS)公式对涡轮机械相关的流动进行计算流体动力学(CFD)分析,可以改进发动机组件的设计。 RANS方法的局限性与其无法准确描述发动机中遇到的流动现象的频谱有关。用RANS难以精确计算的流的示例包括诸如层流/湍流过渡,由于流混合而引起的湍流混合以及分离流之类的现象。大涡模拟(LES)可以提高精度,但成本要高得多。近年来,已经提出了利用不稳定RANS和LES的混合方案。这项研究研究了一种替代方案,即时间滤波的Navier-Stokes(TFNS)方法应用于可压缩流。 Shih和Liu开发的方法已在Glenn-Heat-Transfer(Glenn-HT)代码中实现,并应用于薄膜冷却流程。在本报告中,简要介绍了该方法及其实现。示出了从以3.0的直径的间距的一排30°孔以标称密度比为1且两个吹塑比为0.5和1.0的30个孔的膜冷却所获得的膜效率结果。还描述了在那些条件下的流动特征。

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