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REDUCTION OF SECONDARY FLOW LOSSES IN TURBINE CASCADES BY LEADING EDGE MODIFICATIONS AT THE ENDWALL

机译:通过在端壁处的前缘修改来降低涡轮机级联中的二次流量损失

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摘要

Experimental results are presented which show the influence on the secondary flow and its losses by a profile modification of the leading edge very close to the endwall. The investigation was carried out with a well-known turbine profile that originally was developed for highly loaded low pressure turbines. The tests were done in a low speed cascade wind tunnel. The geometrical modification was achieved by a local thickness increase; a leading edge endwall bulb. It was expected that this would intensify the suction side branch of the horse-shoe (hs-) vortex with a desirable weakening effect on the passage vortex. The investigated configuration shows a reduction of secondary losses by 2.1% points that represents approximately 50% of these losses compared to the reference profile. Detailed measurements of the total pressure field behind the cascade are presented for both the reference and the modified profile. The influence of the modified hs- vortex on the overall passage vortex can be clearly seen. The results of a numerical analysis are compared with the experimental findings. A numerical analysis shows that the important details of the experimental findings can be reproduced. Quantitative values are locally different. The theoretical approach taken cannot yet be used for an exact prediction of the loss reduction. However the analysis of the interaction and the resulting tendencies are considered to be valid. Hence theoretical investigations as a guideline for the design of a leading edge bulb at the endwall are a valuable tool.
机译:提出了实验结果,其示出了通过非常接近端壁的前缘的轮廓修改对二次流动的影响及其损失。通过公知的涡轮轮廓进行研究,该涡轮轮廓最初是为高负载低压涡轮机开发的。测试是在低速级联风洞中完成的。通过局部厚度增加实现几何修饰;前缘端壁灯泡。预计这将使马蹄(HS-)涡流的吸入侧分支加强对通道涡流的理想弱化作用。研究的配置显示,与参考概况相比,将二次损失减少2.1%,表示这些损失的约50%。展示级联后面的总压​​力场的详细测量对于参考和修改的配置文件呈现。可以清楚地看到改进的HS-涡旋对整体通道涡旋的影响。将数值分析的结果与实验结果进行比较。数值分析表明,可以再现实验结果的重要细节。定量值是局部不同的。所采取的理论方法尚不能用于精确预测损失减少。然而,对互动的分析和所产生的趋势被认为是有效的。因此,理论调查作为端部上的前缘灯泡设计的指南是有价值的工具。

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