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A Design Method for Cascades Consisting of Circular Arc Blades with Constant Thickness

机译:等厚圆弧形叶片的叶栅设计方法

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Many axial fans have circular arc blades with constant thickness. It is still a challenging task to calculate their performance, i.e. to predict how large their pressure rise and pressure losses are. For this task a need for cascade data exists. Therefore, the designer needs a method which works quickly for design purposes. In the present contribution a design method for such cascades consisting of circular arc blades with constant thickness is described. It is based on a singularity method which is combined with a CFD-data-based flow loss model. The flow loss model uses CFD-data to predict the total pressure losses. An interpolation method for the CFD-data are applied and described in detail. Data of measurements are used to validate the CFD-data and parameter variations are conducted. The parameter variations include the variation of the camber angle, pitch chord ratio and the Reynolds number. Additionally, flow patterns of two dimensional cascades consisting of circular arc blades with constant thickness are shown.
机译:许多轴流风机都具有恒定厚度的圆弧叶片。计算它们的性能,即预测它们的压力上升和压力损失有多大仍然是一项艰巨的任务。为此,需要级联数据。因此,设计者需要一种可以快速用于设计目的的方法。在本发明中,描述了一种由具有恒定厚度的圆弧叶片组成的叶栅的设计方法。它基于奇异性方法,并结合了基于CFD数据的流量损失模型。流量损失模型使用CFD数据来预测总压力损失。应用和详细介绍了CFD数据的插值方法。测量数据用于验证CFD数据并进行参数变化。参数变化包括外倾角,变桨弦比和雷诺数的变化。另外,示出了由具有恒定厚度的圆弧叶片组成的二维级联的流动模式。

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