湍流
物理
机械
多相流
失真(音乐)
涡流
缩放比例
流量(数学)
运动学
经典力学
动态相似性
涡度
连贯性(哲学赌博策略)
流动可视化
计算流体力学
统计物理学
两相流
拉格朗日相干结构
管道流量
矢量场
运动波
相似解
流体力学
领域(数学)
相似性(几何)
作者
Guang Pan,Yilan Yu,Qiaogao Huang,Yao Shi
摘要
Cavity formation during water entry fundamentally governs the organization of surrounding multiphase flow structures. However, geometric scaling can introduce significant distortion in cavity morphology and flow field, challenging the assumption of hydrodynamic similarity. This study numerically investigates the scale-dependent distortion of cavity dynamics and associated flow structures for geometrically scaled bodies. These results demonstrate that cavity-dominated multiphase flows are highly sensitive to geometric scaling, leading to systematic distortion in the flow field and turbulence structure. Although global kinematic features remain comparable, reduced-scale models exhibit intensified local velocity gradients, enhanced viscous dominance, weakened turbulence diffusion, and accelerated pressure attenuation. The vortex structures identified by the Q-criterion demonstrate increased fragmentation and reduced coherence at smaller scales. These findings provide theoretical support for engineering research on water entry of excessively scaled models, and offer a physical basis for evaluating similarity assumptions in cavity-driven hydrodynamic problems.
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