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Mach Number Effects on Turbine Blade Transition Length Prediction

机译:马赫数对涡轮叶片过渡长度预测的影响

摘要

The effect of a Mach number correction on a model for predicting the length of transition was investigated. The transition length decreases as the turbulent spot production rate increases. Much of the data for predicting the spot production rate comes from low speed flow experiments. Recent data and analysis showed that the spot production rate is affected by Mach number. The degree of agreement between analysis and data for turbine blade heat transfer without film cooling is strongly dependent of accurately predicting the length of transition. Consequently, turbine blade heat transfer data sets were used to validate a transition length turbulence model. A method for modifying models for the length of transition to account for Mach number effects is presented. The modification was made to two transition length models. The modified models were incorporated into the two-dimensional Navier-Stokes code, RVCQ3D. Comparisons were made between predicted and measured midspan surface heat transfer for stator and rotor turbine blades. The results showed that accounting for Mach number effects significantly improved the agreement with the experimental data.
机译:研究了马赫数校正对预测过渡长度的模型的影响。过渡长度随着湍流点生产率的增加而减小。预测现货生产率的许多数据来自低速流动实验。最近的数据和分析表明,现货生产率受马赫数影响。在没有薄膜冷却的情况下,涡轮叶片传热的分析和数据之间的一致性程度很大程度上取决于准确预测过渡长度。因此,涡轮叶片传热数据集用于验证过渡长度湍流模型。提出了一种修改过渡长度模型以解决马赫数效应的方法。对两个过渡长度模型进行了修改。修改后的模型被合并到二维Navier-Stokes代码RVCQ3D中。比较了定子和转子叶片的中跨表面传热的预测值和实测值。结果表明,考虑到马赫数效应明显改善了与实验数据的一致性。

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    Simon F. F.; Boyle R. J.;

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  • 年度 1998
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