首页> 外文会议>ASME Fluids Engineering Division summer conference;FEDSM2009 >DESIGN OF A PROPELLER FAN USING 3-D INVERSE DESIGN METHOD AND CFD FOR HIGH EFFICIENCY AND LOW AERODYNAMIC NOISE
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DESIGN OF A PROPELLER FAN USING 3-D INVERSE DESIGN METHOD AND CFD FOR HIGH EFFICIENCY AND LOW AERODYNAMIC NOISE

机译:利用3-D逆向设计方法和CFD设计螺旋桨风机,实现高效,低气动噪声

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Three-Dimensional Inverse Design Method, where the 3-D blade profile is designed for a specified blade loading distribution, has been applied for designing a propeller fan rotor with high efficiency and low noise. A variety of the blade loading distributions (pressure jump across the blade), vortex pattern (forced vortex, free vortex, and compound vortex) and the stacking conditions (sweep angles) were specified and the corresponding 3-D blade configurations were obtained. Among the 22 different designs, 14 propeller fan rotors including the reproduced baseline fan were manufactured by a rapid prototyping based on a selective laser sintering system (SLS) and tested. It was confirmed experimentally that the best design achieved about 5.7 points improvement in the peak total-to-static efficiency and the2.6dB(A) reduction in aerodynamic noise. The flow mechanisms leading to the higher efficiency and lower aerodynamic noise were discussed based on experiments and the RANS steady flow simulations. Based on these investigations, design guidelines for the inverse design of propeller fan rotors with higher efficiency and lower aerodynamic noise were proposed.
机译:三维逆设计方法,其中3-D叶片轮廓是为指定的叶片载荷分布而设计的,已被用于设计高效低噪声的螺旋桨式风扇转子。指定了各种叶片载荷分布(叶片上的压力跃变),涡旋模式(强迫涡旋,自由涡旋和复合涡旋)和堆叠条件(后掠角),并获得了相应的3-D叶片构型。在22种不同的设计中,通过基于选择性激光烧结系统(SLS)的快速原型制造并测试了14个螺旋桨风扇转子,包括复制的基准风扇。实验证明,最佳设计在总静态总工作效率和最大静态工作效率方面提高了约5.7个百分点。 空气动力学噪音降低2.6dB(A)。通过实验和RANS稳态流动仿真,讨论了导致更高效率和更低空气动力噪声的流动机理。基于这些研究,提出了效率更高,空气动力噪声更低的螺旋桨式风扇转子逆设计的设计指南。

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