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Methods for Computationally Efficient Structured CFD Simulations of Complex Turbomachinery Flows

机译:复杂涡轮机流动的计算有效结构化CFD仿真方法

摘要

This research presents more efficient computational methods by which to perform multi-block structured Computational Fluid Dynamics (CFD) simulations of turbomachinery, thus facilitating higher-fidelity solutions of complicated geometries and their associated flows. This computational framework offers flexibility in allocating resources to balance process count and wall-clock computation time, while facilitating research interests of simulating axial compressor stall inception with more complete gridding of the flow passages and rotor tip clearance regions than is typically practiced with structured codes. The paradigm presented herein facilitates CFD simulation of previously impractical geometries and flows. These methods are validated and demonstrate improved computational efficiency when applied to complicated geometries and flows.
机译:这项研究提出了更有效的计算方法,通过该方法可以对涡轮机械进行多块结构的计算流体动力学(CFD)仿真,从而简化了复杂几何结构及其相关流的高保真度解决方案。该计算框架在分配资源以平衡过程计数和壁钟计算时间方面提供了灵活性,同时促进了研究兴趣,即与结构化代码通常相比,流道和转子尖端间隙区域的网格更加完整,可以模拟轴向压缩机失速开始。本文介绍的范例有助于对先前不切实际的几何形状和流程进行CFD仿真。当应用于复杂的几何形状和流程时,这些方法已经过验证并证明了改进的计算效率。

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