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首页> 外文期刊>Journal of Biomechanics >Unsteady hydrodynamic forces acting on a robotic arm and its flow field: Application to the crawl stroke
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Unsteady hydrodynamic forces acting on a robotic arm and its flow field: Application to the crawl stroke

机译:作用在机械臂及其流场上的不稳定流体动力:在爬行行程中的应用

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This study aims to clarify the mechanisms by which unsteady hydrodynamic forces act on the hand of a swimmer during a crawl stroke. Measurements were performed for a hand attached to a robotic arm with five degrees of freedom independently controlled by a computer. The computer was programmed so the hand and arm mimicked a human performing the stroke. We directly measured forces on the hand and pressure distributions around it at 200. Hz; flow fields underwater near the hand were obtained via 2D particle image velocimetry (PIV). The data revealed two mechanisms that generate unsteady forces during a crawl stroke. One is the unsteady lift force generated when hand movement changes direction during the stroke, leading to vortex shedding and bound vortex created around it. This bound vortex circulation results in a lift that contributes to the thrust. The other occurs when the hand moves linearly with a large angle of attack, creating a Kármán vortex street. This street alternatively sheds clockwise and counterclockwise vortices, resulting in a quasi-steady drag contributing to the thrust. We presume that professional swimmers benefit from both mechanisms. Further studies are necessary in which 3D flow fields are measured using a 3D PIV system and a human swimmer.
机译:这项研究的目的是弄清在爬行过程中不稳定的水动力作用在游泳者手上的机制。对连接到机械臂的一只手进行测量,该手具有由计算机独立控制的五个自由度。对计算机进行了编程,使手和手臂模仿执行中风的人。我们直接测量了手上的力和周围200赫兹的压力分布。通过2D粒子图像测速(PIV)获得手附近的水下流场。数据揭示了两种机制,它们会在爬行冲程中产生不稳定的力。一种是在冲程过程中手运动改变方向时产生的不稳定升力,导致涡旋脱落并在其周围产生束缚涡旋。这种有限的涡流循环会导致升力,而升力有助于推力。另一个发生在手以较大的迎角线性移动时,形成了一个Kármán涡街。该街道交替沿顺时针和逆时针方向旋转,导致准推力产生准稳态阻力。我们假设专业游泳者将从这两种机制中受益。使用3D PIV系统和人类游泳者测量3D流场的进一步研究是必要的。

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