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Numerical investigation of upstream fuel injection through porous media for scramjet engines via surrogate-assisted evolutionary algorithms

机译:代用辅助进化算法对超燃冲压发动机多孔介质上游燃料喷射的数值研究

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摘要

A multi-objective design optimization study has been conducted for upstream fuel injection through porous media applied to the first ramp of a two-dimensional scramjet intake. The optimization has been performed by coupling evolutionary algorithms assisted by surrogate modeling and computational fluid dynamics with respect to three design criteria, that is, the maximization of the absolute mixing quantity, total pressure saving, and fuel penetration. A distinct Pareto optimal front has been obtained, highlighting the counteracting behavior of the total pressure against the mixing efficiency and fuel penetration. The injector location and size have been identified as the key design parameters as a result of a sensitivity analysis, with negligible influence of the porous properties in the configurations and conditions considered in the present study. Flowfield visualization has revealed the underlying physics associated with the effects of these dominant parameters on the shock structure and intensity.
机译:针对通过二维超燃冲压进气口的第一个坡道上的多孔介质进行的上游燃料喷射,进行了多目标设计优化研究。通过耦合进化算法对三种设计标准(即绝对混合量,总压力节省和燃料渗透率的最大化)的设计模型和计算流体动力学进行了优化。获得了独特的帕累托最优前沿,突出了总压力对混合效率和燃料渗透的抵消行为。作为敏感性分析的结果,已将喷油嘴的位置和尺寸确定为关键设计参数,而在本研究中考虑的构造和条件下,多孔性能的影响可忽略不计。流场可视化揭示了与这些主要参数对激波结构和强度的影响相关的基本物理原理。

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