动力学和摩擦消散,用于在水池中缓慢踩踏
Chung-Hao Chen1, Zong-Rou Jiang1, Tzay-Ming Hong1
1National Tsing Hua University, Department of Physics, Hsinchu, Taiwan 30013, Republic of China.
Physical review. E
|September 16, 2025
概括
这项研究分析了低雷诺兹数的液体列动态,揭示了形态变化期间临界高度和半径的分析表达式. 这些发现解释了没有自我相似性的断机制,促进了流体动力学的理解.
科学领域:
- 流体动力学 流体动力学
- 液体的物理学 液体的物理学
背景情况:
- 液体柱的动力学是复杂的,涉及表面张力,潜在能量和动能.
- 数字模拟往往阻碍了对底层物理学的充分理解,特别是关于断的.
- 雨等现实场景中的动荡使得简单的理论分析变得困难.
研究的目的:
- 阐明驱动液体柱形态变化的机制.
- 在阶段过渡过程中获得临界高度和上半径的分析表达式.
- 分析在层状流程中的断过程.
主要方法:
- 专注于低雷诺斯数的案例,以确保层状流.
- 使用简单的模型来分析流体行为.
- 导出形态转换和断的分析表达式.
主要成果:
- 确定了液体柱进化的三个不同阶段:静态/可逆,不可逆收缩和加速收缩.
- 获得了临界高度和上半径的分析表达式.
- 成功预测了关期间柱子部收缩的定量行为,并注意到缺乏自我相似性.
结论:
- 该研究提供了一个理论框架,用于理解层状流中的液体柱动力学.
- 分析表达式为形态变化和缩提供了预测能力.
- 在断中缺少自我相似性,在开发的模型中得到解释.
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