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Unsteady hydrodynamic forces acting on a hand and its flow field during sculling motion

机译:划桨运动过程中作用于手及其流场的非稳态流体动力

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摘要

The goal of this research is to clarify the mechanism by which unsteady forces are generated during sculling by a skilled swimmer and thereby to contribute to improving propulsive techniques. We used particle image velocimetry (PIV) to acquire data on the kinematics of the hand during sculling, such as fluid forces and flow field. By investigating the correlations between these data, we expected to find a new propulsion mechanism. The experiment was performed in a flow-controlled water channel. The participant executed sculling motions to remain at a fixed position despite constant water flow. PIV was used to visualize the flow-field cross-section in the plane of hand motion. Moreover, the fluid forces acting on the hand were estimated from pressure distribution measurements performed on the hand and simultaneous three-dimensional motion analysis. By executing the sculling motion, a skilled swimmer produces large unsteady fluid forces when the leading-edge vortex occurs on the dorsal side of the hand and wake capture occurs on the palm side. By using a new approach, we observed interesting unsteady fluid phenomena similar to those of flying insects. The study indicates that it is essential for swimmers to fully exploit vortices. A better understanding of these phenomena might lead to an improvement in sculling techniques. (C) 2014 Elsevier B.V. All rights reserved.
机译:这项研究的目的是弄清熟练游泳者在划桨过程中产生不稳定力的机理,从而有助于改进推进技术。我们使用粒子图像测速(PIV)来获取划桨过程中手部运动学方面的数据,例如流体力和流场。通过研究这些数据之间的相关性,我们期望找到一种新的推进机制。实验在流量受控的水通道中进行。尽管水流恒定,参与者仍执行划桨运动以将其保持在固定位置。 PIV用于可视化手部运动平面中的流场横截面。此外,作用在手上的流体力是根据手上进行的压力分布测量和同时进行的三维运动分析估算的。通过执行划桨运动,当前缘涡旋发生在手背侧而尾迹捕捉发生在手掌侧时,熟练的游泳者会产生较大的不稳定流体力。通过使用一种新方法,我们观察到了与飞行昆虫相似的有趣的非稳态流体现象。研究表明,游泳者充分利用涡流至关重要。更好地理解这些现象可能会改善划桨技术。 (C)2014 Elsevier B.V.保留所有权利。

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