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Design Optimization of Nozzle Shapes for Maximum Uniformity of Exit Flow

机译:喷嘴形状设计优化出口流量最大均匀性

摘要

The objective of this study is to identify the optimal designs of converging-diverging supersonic and hypersonic nozzles that perform at maximum uniformity of thermodynamic and flow-field properties with respect to their average values at the nozzle exit.Since this is a multi-objective design optimization problem, the design variables used are parameters defining the shape of the nozzle. This work presents how variation of such parameters can influence the nozzle exit flow non-uniformities.A Computational Fluid Dynamics (CFD) software package, ANSYS FLUENT, was used to simulate the compressible, viscous gas flow-field in forty nozzle shapes, including the heat transfer analysis. The results of two turbulence models, k-e and k-ω, were computed and compared.With the analysis results obtained, the Response Surface Methodology (RSM) was applied for the purpose of performing a multi-objective optimization. The optimization was performed with ModeFrontier software package using Kriging and Radial Basis Functions (RBF) response surfaces. Final Pareto optimal nozzle shapes were then analyzed with ANSYS FLUENT to confirm the accuracy of the optimization process.
机译:这项研究的目的是确定收敛-发散的超音速和高超音速喷嘴的最佳设计,这些设计相对于喷嘴出口处的平均值具有最大的热力学和流场特性均匀性。在优化问题上,使用的设计变量是定义喷嘴形状的参数。这项工作说明了这些参数的变化如何影响喷嘴出口流量的不均匀性。计算流体力学(CFD)软件包ANSYS FLUENT被用来模拟40种喷嘴形状的可压缩粘性气体流场,包括传热分析。计算并比较了两个湍流模型k-e和k-ω的结果。根据获得的分析结果,应用响应面方法(RSM)进行多目标优化。使用ModeFrontier软件包使用Kriging和径向基函数(RBF)响应面进行了优化。然后使用ANSYS FLUENT分析最终的帕累托最优喷嘴形状,以确认优化过程的准确性。

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    Quintao Karla K;

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  • 年度 2012
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