Observations of near-inertial internal wave amplification and enhanced mixing after surface reflection

IF 3.8 3区 地球科学 Q1 OCEANOGRAPHY
Kun Liu , Xu Chen , Peng Zhan , Lianglong Da , Hui Wang , Wuhong Guo , Jingyi Liu , Lei Chen , Bing Liu , Guandong Gao , Deyan Tian
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Abstract

The overreflection process of near-inertial internal waves (NIWs) has been theoretically predicted for several decades; however, to the best of our knowledge, this phenomenon has never been comprehensively investigated in real ocean scenarios. Based on the buoy observations collected several days after the passage of Typhoon Lekima in the Yellow Sea, a NIW surface overreflection event is clearly captured. The observed NIWs undergo nearly total reflection meridionally but are amplified zonally after reflection by approximately 20% in amplitude and 56% in vertically integrated horizontal kinetic energy. Ray tracing analysis indicates that the NIW was generated in the wake of Typhoon Lekima in the area north of the Shandong Peninsula and may propagated to the buoy station as coastal-trapped internal Kelvin waves. A simulation using a slab mixed layer model suggests that local wind work was insufficient to generate the amplified NIWs. The temporal evolution of near-inertial energy also implies that the intensified near-inertial waves cannot be attributed to the spontaneous generation resulting from unbalanced flows or the parametric subharmonic instability of M2 internal tides during the reflection period. We found a high temporal correlation between the zonal NIW enhancement and the duration of a meridional lens-type shear flow after reflection, which is consistent with the Stern’s overreflection theory (Stern, 1977) that perpendicular background shear flow can feed energy to the incident NIWs. This indicates that the enhanced NIW may be stimulated by the near-surface reflection and the rotation effect plays a crucial role in the NIWs overreflection process in the real ocean. Furthermore, enhanced instability are found between the ocean surface and the upper thermocline after reflection. This study provides observational evidence that the background field could inject energy into the near-inertial band through NIW overreflection process, and may shed some light on understanding upper ocean mixing caused by NIW reflection.

近惯性内波放大和表面反射后混频增强的观测
近惯性内波(NIWs)的过反射过程已经从理论上预测了几十年;然而,据我们所知,这种现象从未在真实的海洋情景中得到全面调查。根据台风利基玛通过黄海几天后的浮标观测资料,我们清楚地捕捉到了NIW地面超反射事件。观测到的NIWs在经向上几乎全反射,但在经向反射后,其振幅增加了约20%,垂直综合水平动能增加了56%。射线追迹分析表明,此次NIW是台风利基玛在山东半岛北部地区产生的,并可能以海岸困住内开尔文波的形式传播到浮标站。使用板混合层模型的模拟表明,局部风力不足以产生放大的NIWs。近惯性能量的时间演化也表明,近惯性波的增强不能归因于不平衡流的自发产生或反射期内M2内潮的参数次谐波不稳定性。我们发现纬向NIW增强与经向透镜型剪切流在反射后的持续时间之间存在高度的时间相关性,这与Stern的过反射理论(Stern, 1977)一致,即垂直背景剪切流可以为入射NIW提供能量。这表明近地表反射可能刺激了NIW的增强,而旋转效应在真实海洋NIW的超反射过程中起着至关重要的作用。此外,反射后海洋表面与上层温跃层之间的不稳定性增强。本研究为背景场通过NIW过反射过程向近惯性带注入能量提供了观测证据,并为理解NIW反射引起的上层海洋混合提供了一些线索。
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来源期刊
Progress in Oceanography
Progress in Oceanography 地学-海洋学
CiteScore
7.20
自引率
4.90%
发文量
138
审稿时长
3 months
期刊介绍: Progress in Oceanography publishes the longer, more comprehensive papers that most oceanographers feel are necessary, on occasion, to do justice to their work. Contributions are generally either a review of an aspect of oceanography or a treatise on an expanding oceanographic subject. The articles cover the entire spectrum of disciplines within the science of oceanography. Occasionally volumes are devoted to collections of papers and conference proceedings of exceptional interest. Essential reading for all oceanographers.
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