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首页> 外文期刊>Journal of Fluids Engineering: Transactions of the ASME >A Novel 2D Incompressible Viscous Inverse Design Method for Internal Flows Using Flexible String Algorithm
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A Novel 2D Incompressible Viscous Inverse Design Method for Internal Flows Using Flexible String Algorithm

机译:基于柔性弦算法的内部流二维不可压缩粘性逆设计新方法

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摘要

In this investigation, the flexible string algorithm (FSA), used before for inverse design of subsonic and supersonic ducts in compressible flows with and without normal shock, is developed and applied for inverse design of 2D incompressible viscous internal flow with and without separation. In the proposed method, the duct wall shape is changed under an algorithm based on deformation of a virtual flexible string in flow. At each modification step, the difference between current and target wall pressure distributions is applied to the string. The method is an iterative inverse design method and utilizes the analysis code for the flow field solution as a black-box. Some validation test cases and design examples are presented here, which show the robustness and flexibility of the method in handling complex geometries. In cases with separated flow pressure distribution, a unique solution for inverse design problem does not exist. The design algorithm is a physical and quick converging approach and can efficiently utilize commercial flow analysis software.
机译:在这项研究中,开发了柔性弦算法(FSA),该算法以前用于在有或没有法向冲击的情况下可压缩流中的亚音速和超音速管道的逆向设计,并将其应用于二维分离和不分离的不可压缩粘性内流的逆向设计。在所提出的方法中,在基于虚拟柔性管柱在流动中的变形的算法下改变管壁形状。在每个修改步骤中,当前和目标壁压力分布之间的差异都将应用到弦上。该方法是迭代逆设计方法,并且将流场解决方案的分析代码用作黑匣子。这里提供了一些验证测试用例和设计示例,它们显示了该方法在处理复杂几何图形时的鲁棒性和灵活性。在分离的流动压力分布的情况下,不存在逆设计问题的独特解决方案。该设计算法是一种物理且快速收敛的方法,可以有效利用商业流量分析软件。

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