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Movable shark scales act as a passive dynamic micro-roughness to control flow separation

机译:可移动的鲨鱼鳞片充当被动的动态微粗糙度来控制流分离

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Shark scales on fast-swimming sharks have been shown to be movable to angles in excess of 50°, and we hypothesize that this characteristic gives this shark skin a preferred flow direction. During the onset of separation, flow reversal is initiated close to the surface. However, the movable scales would be actuated by the reversed flow thereby causing a greater resistance to any further flow reversal and this mechanism would disrupt the process leading to eventual flow separation. Here we report for the first time experimental evidence of the separation control capability of real shark skin through water tunnel testing. Using skin samples from a shortfin mako Isurus oxyrinchus, we tested a pectoral fin and flank skin attached to a NACA 4412 hydrofoil and separation control was observed in the presence of movable shark scales under certain conditions in both cases. We hypothesize that the scales provide a passive, flow-actuated mechanism acting as a dynamic micro-roughness to control flow separation.
机译:事实证明,快泳鲨鱼上的鲨鱼鳞片可以移动超过50°的角度,我们假设此特性为鲨鱼皮提供了最佳的流动方向。在分离开始期间,靠近表面开始逆流。然而,可动的秤将由反向流动致动,从而对任何进一步的反向流动产生更大的阻力,并且该机构将破坏过程,导致最终的流动分离。在这里,我们首次通过水通道测试报告了真实鲨鱼皮分离控制能力的实验证据。使用来自短鳍鲨Isurus oxyrinchus的皮肤样本,我们测试了附着在NACA 4412水翼上的胸鳍和胁腹皮肤,并且在两种情况下在某些条件下均存在可移动鲨鱼鳞的情况下观察到了分离控制。我们假设秤提供了一种被动的,由流体驱动的机制,作为动态微粗糙度来控制流分离。

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