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Measurement of swimming ability of moon jellyfish using a particle imaging velocimetry

机译:使用粒子成像速度测量月亮水母的游泳能力

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The swimming behavior and biomimetics of marine organisms have been recently investigated to understand the interrelation between the organism and the fluid in the fluid dynamics by using a variety of digital optic instrument technologies. Unlike the terrestrial animals, the marine organisms were biologically evolved and developed in hydrodynamic so that they have a linear structure suitable to high pressures and strong tidal currents as well as propulsion feature for moving. It has been known that the jellyfish would have a swimming ability to utilize the kinetic energy effectively during swimming. This study is aimed to investigate and analyze characteristics of vortex wave formation and vorticity structure of both side of moon jellyfish's bell with oblate-shaped which was changed by width-to-height ratio rowing in swimming by using 2 dimensional analysis in PIV (Particle Image Velocimetry) method. Results showed that the ratio of height-to-width (W/H) was ranged in 0.3~0.6 and the swimming speed was estimated to be slow at 0.5 of W/H. When it turns, the 2D bell of a moon jellyfish was shown in rowing at 0.5~0.6 and there is no propulsion without rowing under 0.5 at W/H ratio. Also this result has shown that the jellyfish moved to the left side from the central axis, the right side of the vortical structure of the bell had a faster speed, and its propulsion was obtained from the movement of the central axis resulting from the difference between the speeds of the left and right sides of the bell.
机译:最近已经研究了海洋生物的游泳行为和生物体,以了解通过使用各种数字视镜技术来了解有机体和流体动力学中的流体之间的相互关系。与陆地动物不同,海洋生物在流体动力学中生物学逐渐发展并开发,使得它们具有适合于高压和强潮流以及用于移动的推进特征的线性结构。众所周知,水母将在游泳期间有效地利用动能的游泳能力。本研究旨在调查和分析Moon Moblyfish贝尔两侧的涡旋波形成和涡旋结构的特征,通过在PIV中使用2尺寸分析来改变宽度到高度比率的宽度与高度比率(粒子图像)速度仪)方法。结果表明,高度至宽度(W / H)的比例范围为0.3〜0.6,估计游泳速度慢于0.5的w / h。当轮流时,月亮水母的2D钟显示在0.5〜0.6的划船中,并且在不在0.5的情况下没有划船的推进。此结果表明,水母从中心轴移动到左侧,钟涡旋的右侧的速度速度更快,并且它的推进从中央轴线的运动产生,导致之间的差异钟形左侧和右侧的速度。

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