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A Robust Mixing Plane and Its Application in Three-Dimensional Inverse Design of Transonic Turbine Stages

机译:鲁棒混合平面及其在跨音速涡轮级三维逆设计中的应用

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摘要

A robust mixing plane method satisfying interface flux conservation, nonreflectivity and retaining interface flow variation; valid at all Mach numbers and applicable for any machine configuration is formulated and implemented in a vertex based finite volume solver for flow analysis and inverse design. The formulation is based on superposing perturbed flow variables derived from the three-dimensional (3D) characteristics obtained along the flow direction on the exchanged mixed out averaged quantities. The method is extended for low speed applications using low Mach number preconditioning. Subsequently, inverse design runs over a single stage transonic low pressure (LP) turbine configuration conducted at a fixed mass flow boundary condition and spanwise loading condition similar to the baseline generates optimized configurations providing performance improvement while achieving prespecified target meridional load distribution.
机译:满足界面通量守恒,非反射性和保持界面流动变化的鲁棒混合平面法;在基于顶点的有限体积求解器中制定并实现了适用于所有马赫数且适用于任何机器配置的有效值,用于流量分析和逆向设计。该公式基于将扰动的流量变量叠加在交换的平均量上,该扰动的流量变量是从沿流动方向获得的三维(3D)特性得出的。该方法扩展到使用低马赫数预处理的低速应用。随后,逆向设计在固定质量流边界条件下进行的单级跨音速低压(LP)涡轮机结构上运行,并且类似于基准线的展向负载条件生成优化的配置,从而在实现预定目标子午负载分布的同时提高了性能。

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  • 来源
    《Journal of turbomachinery》 |2015年第1期|011004.1-011004.16|共16页
  • 作者单位

    Advanced Design Technology, Dilke House, 1 Malet Street, London WC1E 7JN, UK;

    Thermofluids University College of London, London WC1E 7JN, UK;

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  • 正文语种 eng
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