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3D shape optimization of fan vanes for multiple operating regimes subject to efficiency and noise-related excellence criteria and constraints

机译:风扇叶片的3D形状优化适用于多种运行状况,但要遵循效率和与噪声相关的卓越标准和约束

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Fully generic 3D shapes of centrifugal roof fan vanes are explored based on a custom-developed numerical workflow with the ability to vary the vane 3D shape by manipulating the control points of parametric surfaces and change the number of vanes and rotation speed. An excellence formulation is based on design flow efficiency, multi-regime operational conditions and noise criteria for various cases, including multi-objective optimization. Multiple cases of optimization demonstrate the suitability of customized and individualized fan designs for specific working environments according to the selected excellence criteria. Noise analysis is considered as an additional decision-making tool for cases where multiple solutions of equal efficiency are generated and as an additional criteria for multi-objective optimization. The 3D vane shape enables further gains in efficiency compared to 2D shape optimization, while multi-objective optimization with noise as an additional criterion shows potential to grea...
机译:基于定制开发的数字工作流程探索了完全通用的3D形状的离心式屋顶风扇叶片,该能力具有通过操纵参数化曲面的控制点并更改叶片数量和转速来改变叶片3D形状的能力。卓越的设计基于各种情况下的设计流程效率,多区域运行条件和噪声标准,包括多目标优化。多次优化案例表明,根据所选的卓越标准,针对特定工作环境定制和个性化风扇设计的适用性。对于生成相同效率的多个解决方案的情况,噪声分析被认为是一种附加的决策工具,并且是多目标优化的附加标准。与2D形状优化相比,3D叶片形状可进一步提高效率,而将噪声作为附加标准的多目标优化显示出更大的潜力...

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