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OPTIMIZATION OF TURBOMACHINERY FLOW SURFACES APPLYING A CFD-BASED THROUGHFLOW METHOD

机译:基于CFD的流动方法的涡轮机械流面优化

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This work proposes an optimization strategy for the preliminary stage of turbomachinery design, based on the application of a throughflow code in the context of a fully automated optimization strategy. The code solves for the circumferentially-averaged flow equations, including the effects of aerodynamic and friction forces and of blade thickness; the outcome of the code is the flow distribution on the meridional surface. In this research the definition of an 'optimal' mean flow surface is the final aim of a multi-objective optimization procedure, in which non-concurrent goals are simultaneously considered. Evolutionary algorithms are used in the global optimization process, based on the coupling of a Genetic Algorithm with a metamodel. The optimization method is applied to a low speed axial compressor, for which the optimization goals are the minimization of aerodynamic loss and discharge kinetic energy at the exit of the stage, as well as the uniformity of work exchange along the blade span. The method proves to match all the objectives, providing a clear improvement with respect to classical and well-established design methods.
机译:这项工作提出了涡轮机械设计初步阶段的优化策略,基于在全自动优化策略的上下文中的应用程序的应用程序的应用。代码解决了周向平均的流动方程,包括空气动力学和摩擦力和叶片厚度的影响;代码的结果是子午面上的流量分布。在本研究中,“最佳”平均流量的定义是多目标优化过程的最终目的,其中同时考虑非并发目标。基于具有元模型的遗传算法的耦合,在全局优化过程中使用进化算法。优化方法应用于低速轴压缩机,其中优化目标是在阶段出口处的空气动力学损耗和放电动能的最小化,以及沿着叶片跨度的工作交换的均匀性。该方法证明了符合所有目标,对古典和既定的设计方法提供明确的改进。

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