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首页> 外文期刊>Journal of Fluids Engineering: Transactions of the ASME >Arbitrary blade section design based on viscous considerations. blade optimization
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Arbitrary blade section design based on viscous considerations. blade optimization

机译:基于粘性考虑的任意叶片截面设计。刀片优化

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A blade design and optimization procedure is presented in this work, which is based on viscous flow considerations. This procedure concerns the design of optimum rotating arbitrary compressible high subsonic compressor and turbine blade shapes. It takes into account the effects of wall curvature and Coriolis force on turbulence, while it allows the variation of stream surface radius, along which the blade shape is placed, as well as streamtube width, with meridional distance. In order to establishthe inverse part of the viscous optimization procedure, aspects such as laminar stability, transition, optimum deceleration and, more generally, the behaviour of compressible attached and separated shear layers are discussed. A plane on which all thegeneral properties of the compressible laminar and turbulent shear layers appear, is constructed and the generation of optimum shear layers for the critical side of the blade shape is established. The complete optimization (design) procedure is thendescribed and discussed, while various designs realized by the present procedure are presented at the end of this paper.
机译:基于粘性流的考虑,本文介绍了叶片设计和优化程序。该程序涉及最佳旋转任意可压缩高亚音速压缩机和涡轮叶片形状的设计。它考虑了壁曲率和科里奥利力对湍流的影响,同时允许改变流表面半径(沿其放置叶片形状)以及流管宽度随子午距离而变化。为了建立粘性优化程序的反面部分,讨论了层流稳定性,过渡,最佳减速度以及更一般而言可压缩附着和分离的剪切层的行为等方面。构建一个在其上呈现可压缩层流和湍流剪切层的所有一般属性的平面,并建立针对叶片形状的临界面的最佳剪切层的生成。然后描述并讨论了完整的优化(设计)过程,同时在本文结尾处介绍了通过本过程实现的各种设计。

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