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Drag on a Cylinder with an Apple-Shaped Cross Section

机译:在具有苹果形横截面的圆柱上拖动

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The drag on a cylinder with an apple-shaped cross section was studied numerically in this paper. This cross section is adopted because the drag on an apple is known to be lower than that of a sphere. Since the hollows of an apple seem to be points of drag reduction, two-dimensional numerical simulations of cylinders with hollows of several shapes are carried out at a Reynolds number of 6.7 × 104 by using the vortex method to check their effects. The cylinder with hollows like those of a real apple attained a 13% reduction in drag compared with a circular cylinder. Other geometrical hollow-shapes, namely, V-shaped and U-shaped grooves, also reduced drag from the circular model, but these effects were less pronounced than those of the apple-shaped cross section. It was concluded that an apple-like hollows were effective for drag reduction of a cylin-der as well as a sphere.
机译:本文对具有苹果形横截面的圆柱体上的阻力进行了数值研究。之所以采用此横截面,是因为已知对苹果的阻力小于球形的阻力。由于苹果的凹陷似乎是减阻的要点,因此使用涡旋法检查其形状,以6.7×104的雷诺数对带有多种形状的凹陷的圆柱进行了二维数值模拟。与圆柱状的空心圆柱体相比,真苹果的空心圆柱体的阻力降低了13%。其他几何形状的空心形状(即V形和U形凹槽)也减少了圆形模型的阻力,但是这些影响不如苹果形截面的明显。得出的结论是,像苹果一样的凹陷对于减小圆柱体和球体的阻力是有效的。

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