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MULTI-OBJECTIVE DESIGN AND OPTIMISATION OF BYPASS OUTLET-GUIDE VANES

机译:旁路出风口叶片的多目标设计与优化

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This paper describes the development of an automated design optimization system that makes use of a high fidelity Reynolds-Averaged CFD analysis procedure to minimize the fan forcing and fan BOGV (bypass outlet guide vane) losses simultaneously taking into the account the down-stream pylon and RDF (radial drive fairing) distortions. The design space consists of the OGV's stagger angle, trailing-edge re-cambering, axial and circumferential positions leading to a variable pitch optimum design. An advanced optimization system called SOFT (Smart Optimisation for Turbomachinery) was used to integrate a number of pre-processor, simulation and in-house grid generation codes and postprocessor programs. A number of multi-objective, multi-point optimiztion were carried out by SOFT on a cluster of workstations and are reported herein.
机译:本文介绍了自动设计优化系统的开发,该系统利用高保真度的雷诺平均CFD分析程序来最小化风扇受力和风扇BOGV(旁路出口导向叶片)的损失,同时考虑了下游塔架和RDF(径向驱动整流罩)变形。设计空间包括OGV的错开角度,后缘重新弯曲,轴向和圆周位置,从而实现了可变螺距的最佳设计。一个称为SOFT(涡轮机械的智能优化)的高级优化系统用于集成许多预处理器,仿真和内部网格生成代码以及后处理程序。 SOFT在工作站集群上进行了许多多目标,多点优化,并在此处进行了报道。

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