物理
粒子图像测速
涡流
圆柱
机械
涡度
马蹄涡
光学
测速
几何学
湍流
数学
作者
Fang He,Jian-Gang Weng,Yuan Lin,Jiapeng Pan,Maoxing Wei
摘要
This study experimentally investigates the characteristics of the horseshoe vortex (HSV) surrounding a vertical circular cylinder under wave conditions, with a particular emphasis on the impact of Keulegan-Carpenter (KC) numbers and the variation of the HSV during a wave period. Utilizing time-resolved particle image velocimetry, the evolution of the HSV is analyzed using the swirling strength λci, with circulation strength serving as a measure of vortex strength. The findings highlight a marked presence of an HSV upstream of the cylinder, which evolves into a triple-vortex formation at KC numbers exceeding 6. The downstream HSV exhibits a lower intensity compared to its upstream counterpart. Interestingly, the primary HSV's strength is closely correlated with wave phase changes, exhibiting an initial decreasing and then increasing trend within a wave period.
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