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D Direct and Inverse Design Using NS Equations and the Adjoint Method for Turbine Blades

机译:D使用NS方程直接和逆设计以及涡轮叶片的伴随方法

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Presented in this paper are two case studies on the application of the adjoint method to turbine blading aerodynamic design optimization. One case involves the use of the adjoint method in a direct design, where the blade geometry is changed to reduce the entropy generation rate of a power turbine subject to mass flow rate and pressure ratio constraints. The other case investigates the use of the adjoint method in an inverse design, where the blade geometry is changed to approach a target static pressure loading on a blade surface, also subject to mass flow rate and pressure ratio constraints. Promising results are obtained for the two cases. Also examined in the two case studies is the application of the adjoint method to flow field with big separations, which can be detrimental to the convergence of an adjoint solution due to its linearity.
机译:本文提出了两种案例研究兼职伴随方法在涡轮吹进空气动力学设计优化。一种情况涉及在直接设计中使用伴随方法,其中叶片几何形状被改变,以降低经受质量流量和压力比约束的动力涡轮机的熵产生速率。其他情况研究了在逆设计中使用伴随方法,其中叶片几何形状改变以接近叶片表面上的目标静压负载,也受质量流量和压力比约束。有希望的结果是为两种情况获得的。在两种情况下还检查了伴随方法在具有大分离的流场中的应用,这可能是由于其线性度而对伴随解决方案的收敛性。

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