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Evaluation of Computational Fluid Dynamics and Coupled Fluid-Solid Modeling for a Direct Transfer Preswirl System

机译:直接传递预涡流系统的计算流体动力学评估和流固耦合模型

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摘要

The prediction of the preswirl cooling air delivery and disk metal temperature are important for the cooling system performance and the rotor disk thermal stresses and life assessment. In this paper, standalone 3D steady and unsteady computation fluid dynamics (CFD), and coupled FE-CFD calculations are presented for prediction of these temperatures. CFD results are compared with previous measurements from a direct transfer preswirl test rig. The predicted cooling air temperatures agree well with the measurement, but the nozzle discharge coefficients are under predicted. Results from the coupled FE-CFD analyses are compared directly with thermocouple temperature measurements and with heat transfer coefficients on the rotor disk previously obtained from a rotor disk heat conduction solution. Considering the modeling limitations, the coupled approach predicted the solid metal temperatures well. Heat transfer coefficients on the rotor disk from CFD show some effect of the temperature variations on the heat transfer coefficients. Reasonable agreement is obtained with values deduced from the previous heat conduction solution.
机译:预旋冷却空气的输送量和盘金属温度的预测对于冷却系统性能,转子盘热应力和寿命评估非常重要。在本文中,提出了独立的3D稳态和非稳态计算流体动力学(CFD),以及耦合的FE-CFD计算,以预测这些温度。将CFD结果与直接转移预旋试验台的先前测量结果进行比较。预测的冷却空气温度与测量值非常吻合,但是喷嘴的排放系数低于预测值。耦合的FE-CFD分析的结果直接与热电偶温度测量值以及先前从转子盘导热解决方案中获得的转子盘上的传热系数进行比较。考虑到建模限制,耦合方法很好地预测了固体金属的温度。 CFD对转子盘的传热系数表明温度变化对传热系数的影响。从先前的导热解决方案推导出的值获得了合理的一致。

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  • 来源
    《Journal of Engineering for Gas Turbines and Power》 |2013年第5期|051501.1-051501.9|共9页
  • 作者单位

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

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

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

    Institut fuer Thermische Stroemungsmaschinen (ITS), Karlsruhe Institute of Technology, 76128 Karlsruhe, Germany;

    Rolls-Royce plc, P.O. Box 31, Derby DE24 8BJ, UK;

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