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首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Wall-Modeled Large Eddy Simulations of Axial Turbine Rim Sealing
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Wall-Modeled Large Eddy Simulations of Axial Turbine Rim Sealing

机译:轴向汽轮机边缘密封的壁图大型涡流模拟

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摘要

This paper presents wall-modeled large-eddy simulations (WMLES) of a chute-type turbine rim seal. Configurations with an axisymmetric annulus flow and with nozzle guide vanes fitted (but without rotor blades) are considered. The passive scalar concentration solution and WMLES are validated against available data in the literature for uniform convection and a rotor-stator cavity flow. The WMLES approach is shown to be effective, giving significant improvements over an eddy viscosity turbulence model, in prediction of rim seal effectiveness compared to research rig measurements. WMLES requires considerably less computational time than wall-resolved LES, and has the potential for extension to engine conditions. All WMLES solutions show rotating inertial waves in the chute seal. Good agreement between WMLES and measurements for sealing effectiveness in the configuration without vanes is found. For cases with vanes fitted, the WMLES simulation shows less ingestion than the measurements, and possible reasons are discussed.
机译:本文介绍了滑槽式涡轮边缘密封件的壁图式的大涡模拟(WMLE)。考虑具有轴对称环流和装配喷嘴导向叶片(但没有转子叶片)的配置。被动标量浓度解决方案和WMLES针对文献中的可用数据进行验证,用于均匀对流和转子 - 定子腔流量。与研究进程测量相比,WMLE方法显示有效,在涡粘度湍流模型上进行显着改善,以预测轮辋密封效果。 WMLES需要比墙壁分辨的LES更少的计算时间,并且具有扩展到发动机条件的可能性。所有WMLES解决方案都在滑槽密封中显示旋转惯性波。发现,在没有叶片的配置中,WMLES和测量之间的良好一致性。对于装配叶片的情况,WMLES模拟显示比测量更少摄取,并且讨论了可能的原因。

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  • 来源
    《Journal of Engineering for Gas Turbines and Power》 |2021年第6期|061025.1-061025.9|共9页
  • 作者单位

    Thermo-Fluid Systems UTC Faculty of Engineering and Physical Sciences University of Surrey Guildford GU2 7XH UK;

    Thermo-Fluid Systems UTC Faculty of Engineering and Physical Sciences University of Surrey Guildford GU2 7XH UK;

    Thermo-Fluid Systems UTC Faculty of Engineering and Physical Sciences University of Surrey Guildford GU2 7XH UK;

    Thermo-Fluid Systems UTC Faculty of Engineering and Physical Sciences University of Surrey Guildford GU2 7XH UK;

    Osney Thermofluids Laboratory Department of Engineering Science University of Oxford Oxford 0X2 OES UK;

    Osney Thermofluids Laboratory Department of Engineering Science University of Oxford Oxford 0X2 OES UK;

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