首页> 外文会议>ASME Fluids Engineering Division Meeting >PASSIVE BRISTLING OF SHARK SKIN SCALES AT THE MICRO-LEVEL: A FUNDAMENTAL VISCOUS FLOW STUDY TO UNDERSTAND THE SEPARATION CONTROL MECHANISM
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PASSIVE BRISTLING OF SHARK SKIN SCALES AT THE MICRO-LEVEL: A FUNDAMENTAL VISCOUS FLOW STUDY TO UNDERSTAND THE SEPARATION CONTROL MECHANISM

机译:微级鲨鱼皮肤鳞片的被动繁殖:一个基本粘性流程研究,了解分离控制机制

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In this paper, we use a CFD analysis of a simplified, 2D geometry to study the ability of mako shark denticles to mitigate flow separation. We represent the viscous sublayer below a turbulent boundary layer streak as a Couette flow. Incipient separation is simulated by balancing upper wall velocity and adverse pressure gradient to achieve zero net mass flow, and we add various denticle geometries to study their effects. Each modeled denticle protrudes at an angle from 15° to 85° and sublayer blockage ratio from 0.05 to 0.85. Through variation of fluid properties and boundary conditions, we show that the anti-flow-reversal abilities of a single, bristled shark denticle are independent of Reynolds number, and we investigate the effect of the denticle at cases other than zero net mass flux. Based on these results, we create a new relationship to predict separation inhibition. These conclusions are highly generalizable and represent previously undiscovered universal behavior.
机译:在本文中,我们使用简化的2D几何的CFD分析来研究Mako Shark Denticly减轻流量分离的能力。我们代表湍流边界层条下面的粘性子层作为豆孔流。通过平衡上壁速度和不利的压力梯度来模拟初始分离,以实现零净质量流量,并且我们添加各种牙本质几何形状以研究它们的效果。每个模型的牙件以15°至85°的角度突出,子层堵塞比为0.05至0.85。通过流体性质和边界条件的变化,我们表明单个毛刺牙龈的抗流逆转能力与雷诺数无关,我们研究牙本质在零净质量通量以外的情况下的影响。基于这些结果,我们创造了一种新的关系来预测分离抑制。这些结论是高度普遍的,代表以前未被发现的普遍行为。

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