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FLOW AND HEAT TRANSFER PREDICTIONS FOR A FLAT-TIP TURBINE BLADE

机译:扁平涡轮叶片的流动和传热预测

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摘要

Numerical calculations are performed to simulate the tip leakage flow and heat transfer on the GE-E~3 High-Pressure-Turbine (HPT) rotor blade. The calculations are performed for a single blade with periodic conditions imposed along the two boundaries in the circumferential-pitch direction. Cases considered are a flat blade tip at three different tip gap clearances of 1%, 1.5% and 2.5% of the blade span. The numerical results are obtained for two different pressure ratios (ratio of inlet total pressure to exit static pressure) of 1.2 and 1.32 and an inlet turbulence level of 6.1%. To explore the effect of turbulence models on the heat transfer results, three different models of increasing complexity and computational effort (standard high Re k-ε model, RNG k-ε and Reynolds Stress Model) are investigated. The predicted tip heat transfer results are compared with the experimental data of Azad, and show satisfactory agreement with the data. Hear transfer predictions for all three turbulence models are comparable, and no significant improvements are obtained with the Reynolds-stress model.
机译:进行了数值计算,以模拟GE-E〜3高压涡轮(HPT)转子叶片上的叶尖泄漏流和传热。该计算是针对单个叶片进行的,该叶片具有沿周向变桨方向沿两个边界施加的周期性条件。所考虑的情况是在三个不同的刀片间隙中分别为刀片跨度的1%,1.5%和2.5%的扁平刀片尖端。对于两个不同的压力比(入口总压力与出口静压力之比)为1.2和1.32以及入口湍流水平为6.1%的情况,获得了数值结果。为了探索湍流模型对传热结果的影响,研究了三种增加复杂性和计算量的模型(标准的高Rek-ε模型,RNGk-ε和雷诺应力模型)。将预测的尖端传热结果与Azad的实验数据进行比较,并与数据令人满意地吻合。这三种湍流模型的听觉传递预测是可比的,并且雷诺应力模型没有获得明显的改善。

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