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首页> 外文期刊>Journal of turbomachinery >Unsteady Analysis of Blade and Tip Heat Transfer as Influenced by the Upstream Momentum and Thermal Wakes
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Unsteady Analysis of Blade and Tip Heat Transfer as Influenced by the Upstream Momentum and Thermal Wakes

机译:上游动量和热唤醒对叶片和叶尖传热的非稳态分析

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The effect of the upstream wake on the time averaged rotor blade heat transfer was numerically investigated. The geometry and flow conditions of the first stage turbine blade of GE's E~3 engine with a tip clearance equal to 2% of the span were utilized. The upstream wake had both a total pressure and temperature deficit. The rotor inlet conditions were determined from a steady analysis of the cooled upstream vane. Comparisons between the time average of the unsteady rotor blade heat transfer and the steady analysis, which used the average inlet conditions of unsteady cases, are made to illuminate the differences between the steady and unsteady calculations. To help in the understanding of the differences between steady and unsteady results on one hand and to evaluate the effect of the total temperature wake on the other, separate calculations were performed to obtain the rotor heat transfer and adiabatic wall temperatures. It was found that the Nusselt number distribution for the time average of unsteady heat transfer is invariant if normalized by the difference in the adiabatic and wall temperatures. It appeared though that near the endwalls the Nusselt number distribution did depend on the thermal wake strength. Differences between steady and time averaged unsteady heat transfer results of up to 20% were seen on the blade surface. Differences were less on the blade tip surface.
机译:数值研究了上游尾流对时间平均转子叶片传热的影响。利用了GE E〜3发动机的一级涡轮叶片的几何形状和流动条件,其叶顶间隙等于跨度的2%。上游尾流既有总压力又有温度不足。通过对冷却的上游叶片的稳定分析来确定转子入口条件。比较了非稳态转子叶片传热的平均时间和稳态分析,后者使用了非稳态情况的平均入口条件,以阐明稳态和非稳态计算之间的差异。为了一方面帮助理解稳态和非稳态结果之间的差异,另一方面帮助评估总温度尾迹的影响,执行了单独的计算以获得转子传热和绝热壁温。已经发现,如果通过绝热和壁温的差异进行归一化,则非稳态传热时间平均值的努塞尔数分布是不变的。似乎在端壁附近,努塞尔数分布确实取决于热唤醒强度。在叶片表面上可以看到高达20%的稳态和时间平均非稳态传热结果之间的差异。叶片尖端表面的差异较小。

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