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IMPROVED PROFILE LOSS AND DEVIATION CORRELATIONS FOR AXIAL- TURBINE BLADE ROWS

机译:提高轴向涡轮叶片行的轮廓损耗和偏差相关性

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Empirical correlations continue to play an important role in the early stages of turbine design and in the optimizing of the gas path. The recent development of highly-loaded low-pressure (LP) turbines has extended the design space beyond the range of geometric and aerodynamic parameters on which the existing correlations for profile losses and deviation are based. With the aid of a large database of measured profile losses, including in-house results and recent cases from the open literature, the profile loss predictions of Kacker and Okapuu have been reviewed. As a result, a revised correlation is proposed that appears to capture much better the loss behavior of axial-turbine airfoils of recent design, including very highly-loaded LP turbine airfoils. The opportunity was also taken to extend the range of applicability of the correlation for trailing-edge deviation originally proposed by Islam and Sjolander in 1999.
机译:经验相关性继续在涡轮机设计的早期阶段和气体路径的优化中发挥重要作用。 最近的高负载低压(LP)涡轮机的开发已经扩展了超出了几何和空气动力学参数范围的设计空间,在其上存在概况损耗和偏差的现有相关性。 借助于衡量的概况损失的大型数据库,包括内部结果和最近的开放文学的案例,已审查了破坏者和冈布乌的概况损失预测。 结果,提出了修改的相关性,这似乎捕获了最近设计的轴向涡轮机翼型的损耗行为,包括非常高负载的LP涡轮机翼型。 还有机会延长了1999年最初提出的伊斯兰教提出的后缘偏差的相关性的适用范围。

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