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Numerical investigations of the transient cavitating vortical flow structures over a flexible NACA66 hydrofoil 被引量:4
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作者 ren-fang huang Te-zhuan Du +1 位作者 Yi-wei Wang Cheng-guang huang 《Journal of Hydrodynamics》 SCIE EI CSCD 2020年第5期865-878,共14页
In this paper,the cavitating flow over a flexible NACA66 hydrofoil is studied numerically by a modified fluid-structure interaction strategy with particular emphasis on understanding the flow-induced vibration and the... In this paper,the cavitating flow over a flexible NACA66 hydrofoil is studied numerically by a modified fluid-structure interaction strategy with particular emphasis on understanding the flow-induced vibration and the cavitating vortical flow structures.The modified coupling approaches include(1)the hydrodynamic solution obtained by the large eddy simulation(LES)together with a homogenous cavitation model,(2)the structural deformation solved with a cantilever beam equation,(3)fluid-structural interpolation and volume mesh motion based on the radial basis functions and greedy algorithm.For the flexible hydrofoil,the dominant flow-induced vibration frequency is twice of the cavity shedding frequency.The cavity shedding frequency is same for the rigid and flexible hydrofoils,demonstrating that the structure vibration is not large enough to affect the cavitation evolution.The predicted cavitating behaviors are strongly three-dimensional,that is,the cavity is(a)of a triangular shape near the hydrofoil tip,(b)of a rectangular shape near the hydrofoil root,and(c)with a strong unsteadiness in the middle of the span,including the attached cavity growth,oscillation and shrinkage,break-off and collapse downstream.The unsteady hydroelastic response would strongly affect the cavitation shedding process with small-scale fragments at the cavity rear part.Furthermore,three vortex identification methods(i.e.,the vorticity,the Q-criteria and the Ω method)are adopted to investigate the cavitating vortex structures around the flexible hydrofoil.It is indicated that the cavity variation trend is consistent with the vortex evolution.The vortex structures are distributed near the foil trailing edge and in the cavitation region,especially at the cavity-liquid interface.With the transporting downstream the shedding cavities,the vortices gradually increase in the wake flows. 展开更多
关键词 Cloud cavitation flexible hydrofoil Ωmethod flow-induced vibration
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绕弹性水翼空化流动及其流激振动特性研究
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作者 丘润荻 支玉昌 +3 位作者 张珍 黄仁芳 王一伟 杜特专 《水动力学研究与进展(A辑)》 CSCD 北大核心 2022年第2期172-180,共9页
该文采用基于径向基函数的流固耦合方法,对不同空化数下绕刚性水翼/弹性水翼的空泡形态及其流激振动特性进行了数值模拟。结果表明,绕弹性水翼空泡形态具有三个典型特征:(1)靠近翼尖前缘的附着空泡形态为三角形;(2)翼尖出现梢涡空化,梢... 该文采用基于径向基函数的流固耦合方法,对不同空化数下绕刚性水翼/弹性水翼的空泡形态及其流激振动特性进行了数值模拟。结果表明,绕弹性水翼空泡形态具有三个典型特征:(1)靠近翼尖前缘的附着空泡形态为三角形;(2)翼尖出现梢涡空化,梢涡空化随着空化数的降低而逐渐明显;(3)回射流作用下水翼存在云状空泡的周期性脱落。对不同空化数下弹性水翼的振动特性进行分析发现,随着空化数的下降,水翼振动的平均振幅及振幅波动值先增大再减小,平均振幅和振幅波动由大到小依次是:云空化>超空化>片空化。 展开更多
关键词 弹性水翼 流固耦合 空化 流激振动
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