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Optimizing a Boundary-Layer-Ingestion Offset Inlet by Discrete Adjoint Approach

机译:通过离散伴随方法优化边界层摄入偏移入口

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摘要

A large amount of low-momentum boundary-layer flow ingesting into a flush-mounted inlet can cause significant total pressure loss and distortion to the extent beyond operability of a fan/compressor. To improve the quality of incoming flow into the engine, shape optimization of the surface geometry at the inlet entrance has been carried out using the discrete adjoint method; the inlet-floor shape is parameterized by the use of control points on B-spline surface patches. To resolve the complicated geometry flexibly and wall-bounded turbulent flow accurately, an overset mesh system is well-suited for integrating the flow analysis code, sensitivity analysis code, and grid modification tools. To enhance the convergence characteristics of the sensitivity analysis code, additional numerical dissipation for the discrete adjoint formulation is introduced. After using this optimization procedure, the new inlet yields a significant improvement in performance: a more than 50% reduction in flow distortion and a 3% increase in total pressure recovery. High performance at off-design conditions is also realized with only slight degradation, confirming the capability of the adjoint method for a practical design problem. Finally, the physical meaning and implication of the performance improvement are elaborated upon in relation to the flow characteristics resulting from the new design.
机译:大量低动量边界层流吸入齐平安装的入口会导致显着的总压力损失和变形,达到风扇/压缩机无法操作的程度。为了提高进入发动机的气流的质量,已经使用离散伴随方法对进气口的表面几何形状进行了形状优化。通过使用B样条曲面贴片上的控制点来设置入口地板的形状。为了灵活地解决复杂的几何形状并精确地解决壁面湍流问题,超集网格系统非常适合集成流量分析代码,灵敏度分析代码和网格修改工具。为了增强灵敏度分析代码的收敛特性,引入了离散伴随公式的附加数值耗散。使用此优化程序后,新的进气口可显着改善性能:流量畸变降低50%以上,总压力恢复提高3%。还可以在非设计条件下实现高性能,而只需稍微降低性能即可,这证实了伴随方法在实际设计问题中的能力。最后,针对新设计​​所产生的流动特性,阐述了物理意义和性能改进的含义。

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