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首页> 外文期刊>Journal of Fluid Science and Technology >Pressure drag and friction drag for truncated pyramids in a turbulent open channel flow
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Pressure drag and friction drag for truncated pyramids in a turbulent open channel flow

机译:湍流明渠中截锥体的压力阻力和摩擦阻力

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The purpose of this study is to establish a method that more efficiently reduces drags for a three-dimensional object whose surfaces are shaped in some kind of wavy form. We use a truncated pyramid that is a relatively simple three-dimensional object. Experiments were carried out for truncated pyramids covered with flat surfaces or wavy surfaces in a turbulent open channel flow. The total drag was obtained by measuring the force acting on the pyramids. The local wall shear stress was estimated from the local mean velocity profile in the direction normal to the surfaces. The difference between the pressure on the uphill surface and that on the downhill surface of the pyramid was also measured with a pressure difference gauge. It was found that the total drag and the pressure difference for the truncated pyramid covered with the wavy surfaces were at their highest 7.9% and 13.7% lower respectively than the equivalent figures for the truncated pyramid covered with flat surfaces. The reductions of the pressure difference and total drag were caused by the recirculation flow intermittently occurring near the top face and the downhill face of the truncated pyramids.
机译:这项研究的目的是建立一种方法,该方法可以更有效地减少表面形状呈某种波浪形的三维物体的阻力。我们使用截尾的金字塔,这是一个相对简单的三维对象。对湍流明渠流中覆盖有平坦表面或波浪形表面的截顶金字塔进行了实验。通过测量作用在金字​​塔上的力来获得总阻力。根据局部平均速度分布在垂直于表面的方向上估计局部壁剪应力。金字塔的上坡表面和下坡表面的压力差也用压力差计测量。发现覆盖有波浪形表面的截头金字塔的总阻力和压差分别比覆盖有平坦表面的截头金字塔的等效值分别降低了最高7.9%和13.7%。压力差和总阻力的减小是由于在截顶棱锥的顶面和下坡面附近间歇性地发生回流而引起的。

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