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Effect of the orientation of the harbor seal vibrissa based biomimetic cylinder on hydrodynamic forces and vortex induced frequency

机译:港湾密封触须仿生圆柱体的取向对流体动力和涡激频率的影响

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The present study considered the geometric disturbance inspired by a harbor seal vibrissa of which undulated surface structures (HSV) are known as a detecting device to capture the water movement induced by prey fish. As an original research can extend to the flow control based on the biomimetic, this study aims at finding the effect of the angle of attack (AOA) on flow characteristics around the harbor seal vibrissa shaped cylinder, to cover the change of flow direction during the harbor seal’s movements and surrounding conditions. Therefore, we considered a wide range of AOA varying from 0 to 90 degree. We carried out large eddy simulation (LES) to investigate the flow around inclined vibrissa shaped cylinder for the Reynolds number (Re) of 500. The elliptic cylinder is considered for the purpose of the comparison. The difference of force coefficients between the HSV and the elliptic cylinder can be classified into three regimes of one large variation region, two invariant regimes according to AOA. In contrast to the elliptic cylinder showing the monotonically decrease of the vortex shedding frequency in AOA, the HSV reveals the increasing and then decreasing behavior of the vortex shedding frequency along the AOA. The same decreasing profile of the vortex shedding frequency means that the HSV lost the unique function on the vortex shedding frequency. The shear layers for the HSV is much longer than that of shear layers for the elliptic cylinder at low angles of the attack. With increasing AOA, the difference of the vortical structures in the wake between the HSV and the elliptic cylinder becomes minor. Thus, it can be concluded that as AOA increases, the bluff body flow overcomes the flow induced by the HSV shape, resulting in the appearance of almost the same flow with the elliptic cylinder.
机译:本研究考虑了由海豹触须引起的几何扰动,其起伏的表面结构(HSV)被称为检测装置,可捕获捕食鱼类引起的水运动。由于最初的研究可以扩展到基于仿生生物的流量控制,因此本研究旨在发现迎角(AOA)对港湾密封触须形圆柱体周围的流动特性的影响,以涵盖在模拟过程中流动方向的变化。斑海豹的活动和周围环境。因此,我们考虑了范围从0到90度的大范围AOA。我们进行了大涡模拟(LES),以研究雷诺数(Re)为500的倾斜触须形圆柱体周围的流动。出于比较的目的,考虑使用椭圆形圆柱体。 HSV与椭圆圆柱之间的力系数之差可分为三个区域:一个大变化区域,两个不变区域,根据AOA。与椭圆圆柱体在AOA中涡旋脱落频率单调降低相反,HSV揭示了沿AOA涡旋脱落频率的升高然后降低的行为。涡旋脱落频率的下降曲线相同,意味着HSV失去了涡旋脱落频率的独特功能。在低攻角下,HSV的剪切层比椭圆圆柱的剪切层长得多。随着AOA的增加,HSV和椭圆圆柱之间的尾流中涡流结构的差异变得很小。因此,可以得出结论,随着AOA的增加,非流线形体流克服了由HSV形状引起的流,导致出现了与椭圆圆柱体几乎相同的流。

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