...
首页> 外文期刊>Journal of Geophysical Research, C. Oceans: JGR >The influence of Langmuir turbulence on the scaling for the dissipation rate in the oceanic boundary layer
【24h】

The influence of Langmuir turbulence on the scaling for the dissipation rate in the oceanic boundary layer

机译:朗缪尔湍流对海洋边界层耗散率定标的影响

获取原文
获取原文并翻译 | 示例
           

摘要

A model for estimating the turbulent kinetic energy dissipation rate in the oceanic boundary layer, based on insights from rapid-distortion theory, is presented and tested. This model provides a possible explanation for the very high dissipation levels found by numerous authors near the surface. It is conceived that turbulence, injected into the water by breaking waves, is subsequently amplified due to its distortion by the mean shear of the wind-induced current and straining by the Stokes drift of surface waves. The partition of the turbulent shear stress into a shear-induced part and a wave-induced part is taken into account. In this picture, dissipation enhancement results from the same mechanism responsible for Langmuir circulations. Apart from a dimensionless depth and an eddy turn-over time, the dimensionless dissipation rate depends on the wave slope and wave age, which may be encapsulated in the turbulent Langmuir number La t. For large La _t, or any La _t but large depth, the dissipation rate tends to the usual surface layer scaling, whereas when La t is small, it is strongly enhanced near the surface, growing asymptotically as ε ∝La _t ~(-2) when La _t → 0. Results from this model are compared with observations from the WAVES and SWADE data sets, assuming that this is the dominant dissipation mechanism acting in the ocean surface layer and statistical measures of the corresponding fit indicate a substantial improvement over previous theoretical models. Comparisons are also carried out against more recent measurements, showing good order-of-magnitude agreement, even when shallow-water effects are important.
机译:提出并测试了一种基于快速失真理论的海洋边界层湍动能耗散率估算模型。该模型为表面附近众多作者发现的很高的耗散水平提供了可能的解释。可以想到,通过破坏波注入水中的湍流由于风致电流的平均切变和表面波的斯托克斯漂移引起的应变而变形,随后被放大。考虑了湍流剪切应力分成剪切引起的部分和波浪引起的部分。在此图中,耗散增强是由负责Langmuir循环的相同机制导致的。除了无量纲的深度和涡旋转换时间以外,无量纲的耗散率还取决于波的斜率和波龄,可以将其封装在湍流的朗缪尔数La t中。对于较大的La _t或任何较大深度的La _t,耗散率趋于通常的表层结垢,而当La t较小时,其在表面附近强烈增强,渐近增长为ε∝La _t〜(-2 ),当La _t→0时。将该模型的结果与WAVES和SWADE数据集的观察结果进行比较,假定这是作用于海表层的主要耗散机制,相应拟合的统计量表明与以前相比有实质性改善理论模型。即使在浅水影响很重要的情况下,也对最新的测量结果进行了比较,显示出良好的数量级一致性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号