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OPTIMIZATION OF A CENTRIFUGAL IMPELLER USING EVOLUTIONARY ALGORITHMS

机译:基于进化算法的离心叶轮优化

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This paper presents the development and application of an automated optimization method for aerodynamic design of centrifugal impellers. The algorithm used for the optimization is an evolutionary algorithm. Within this method the shape of the centrifugal impeller is described using B-Spline curves. The method introduced is used for redesigning an existing impeller with regard to maximization of the isentropic efficiency at a fixed operating point. Here the isentropic efficiency is calculated using the solution of a compressible three-dimensional Reynolds-averaged Navier-Stokes solver. The presentation will show that the method presented provides a new design that outperforms the original impeller with respect to the particular objective and demonstrates its usefulness.
机译:本文介绍了一种用于离心叶轮气动设计的自动优化方法的开发和应用。用于优化的算法是进化算法。在此方法中,使用B样条曲线描述离心式叶轮的形状。引入的方法用于重新设计现有的叶轮,以在固定的工作点上最大化等熵效率。在这里,等熵效率是使用可压缩的三维雷诺平均Navier-Stokes求解器的解计算的。演示将表明,所提出的方法提供了一种新设计,该设计在特定目标方面优于原始叶轮,并证明了其实用性。

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