在强烈驱动的旋转流中直接测量能量转移
Omri Shaltiel1, Alon Salhov1, Omri Gat1
1Racah Institute of Physics, The Hebrew University, Jerusalem 91904, Israel.
Physical review letters
|June 15, 2024
概括
突然的能量脉冲揭示了旋转流如何转移能量. 惯性波是关键的参与者,即使在二维状况下,也能调解能量传输.
科学领域:
- 流体动力学 流体动力学
- 流的研究研究流.
- 旋转流体系统的旋转流体系统
背景情况:
- 了解流中的能量转移对于许多科学和工程应用至关重要.
- 旋转的流表现出由科里奥利斯力影响的复杂动力学.
- 关于弱驱动流的先前研究对强驱动系统的洞察力有限.
研究的目的:
- 为了研究强烈驱动的旋转流中的能量传递机制.
- 探究惯性波在能量级联过程中的作用.
- 将观测结果与现有的流模型进行比较.
主要方法:
- 引入局部,突然增加的能量注入速率到一个稳定的,强烈驱动的旋转流.
- 分析注射能量在实体空间,频域和波数空间中的传播.
- 使用光谱分析来区分注入的能量与背景流.
主要成果:
- 注入的能量在现实空间中以惯性波的波束形式传播.
- 能量被非局部转移到频率域中的低频,准地质的模式.
- 能量布局部向较小的波数,与二维流相一致.
- 一个反向的能量级联是出乎意料地通过具有小,非零频率的惯性波来介导的.
结论:
- 惯性波在强烈驱动的旋转流中在能量转移中发挥着重要作用.
- 观察到的能量转移不同于对弱驱动流的预测.
- 这些发现凸显了惯性波的重要性,即使在旋转流中的二维多重管附近.
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