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,Junkang 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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