Wang Shuya, Cao Anzhou, Li Qun, Chen Xu
Key Laboratory of Physical Oceanography, Ocean University of China and Pilot National Laboratory for Marine Science and Technology, Qingdao, China.
MNR Key Laboratory for Polar Science, Polar Research Institute of China, Shanghai, China.
Sci Rep. 2022 Jul 8;12(1):11682. doi: 10.1038/s41598-022-15662-0.
The Yermak Plateau (YP) is located across the Arctic-Atlantic gateway in the northwest of the Svalbard archipelago. In this region, internal waves are believed to cause intense turbulent mixing and hence influence the heat budget in the Arctic Ocean. Based on year-long observations from three moorings, the characteristics and energetics of diurnal and semidiurnal internal waves on the southern slope of the YP are investigated in this study. Diurnal internal waves induce large isothermal displacements exceeding 100 m, which are nearly one order of magnitude greater than those of semidiurnal internal waves. In addition, diurnal internal waves are strong in winter but weak in summer, while the semidiurnal internal waves exhibit complicated temporal variation. For the diurnal internal waves, their available potential energy is greater than the horizontal kinetic energy; whereas the situation is opposite for the semidiurnal ones. This feature is further clarified with two-dimensional numerical simulations. Due to the larger tidal excursion, diurnal tidal forcing yields the generation of stronger higher harmonics, i.e., the semidiurnal internal waves. In contrast, higher harmonics are rather weak under the semidiurnal forcing. Moreover, a large proportion of energy for both diurnal and semidiurnal internal waves is dissipated locally. Results of this study can provide useful insight on the dynamics of internal waves in the Arctic Ocean.
叶尔马克海台(YP)位于斯瓦尔巴群岛西北部的北极 - 大西洋通道上。在该区域,内波被认为会引发强烈的湍流混合,从而影响北冰洋的热量收支。基于三个系泊点长达一年的观测数据,本研究对叶尔马克海台南坡日潮和半日潮内波的特征及能量学进行了调查。日潮内波引发的等温位移超过100米,比半日潮内波的等温位移大近一个数量级。此外,日潮内波冬季较强而夏季较弱,而半日潮内波则表现出复杂的时间变化。对于日潮内波,其有效势能大于水平动能;而半日潮内波的情况则相反。这一特征通过二维数值模拟得到了进一步阐明。由于日潮的潮差较大,日潮强迫产生了更强的高次谐波,即半日潮内波。相比之下,在半日潮强迫下高次谐波相当微弱。此外,日潮和半日潮内波的大部分能量都在当地耗散。本研究结果可为北冰洋内波动力学提供有益的见解。