西北太平洋深海湍流混合的时空变异性

IF 3.3 2区 地球科学 Q1 OCEANOGRAPHY
Qifan Song, Chun Zhou, Xin Xiao, Hao Xun, Zichen Tian, Qingxuan Yang, Wei Zhao, Jiwei Tian
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引用次数: 0

摘要

小尺度湍流混合为深海水域的上涌提供势能,是全球翻转环流的关键组成部分。这一过程在西北太平洋等关键区域尤为重要,由于对深海混合的了解有限,人们对这些区域的深海上升流结构仍然知之甚少。在此,我们根据反复调查收集到的水文数据,研究了西北太平洋深海湍流混合的全深度时空变化。菲律宾海深层 19 年平均近岸扩散率为 1.42 × 10-4 m2 s-1,表明与分层海洋内部相比,湍流混合明显更强。在空间上,湍流混合向底部加强,并由于粗糙的地形而从开阔的太平洋向西加强到菲律宾海。在某些混合热点,增强的混合可穿透至海底以上 2,500 米处,表明有很大的上升流潜力。在 2,000 米以下,湍流混合表现出明显的季节性变化,在西卡罗琳海盆(帕雷斯维拉海盆),夏季(冬季)的深层混合比冬季(夏季)更强烈。这种空间季节性变化可能是由于西北太平洋内部潮汐能量耗散不均匀造成的。我们的研究将有助于澄清湍流混合对西北太平洋深水质量转换和环流的调节作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Spatial and Temporal Variability of Turbulent Mixing in the Deep Northwestern Pacific

Small-scale turbulent mixing supplies potential energy for the upwelling of deep waters in the abyssal ocean, a key component of the global overturning circulation. This process is particularly significant in critical regions such as the Northwestern Pacific where the upwelling structure of deep waters remains poorly understood due to limited knowledge of deep ocean mixing. Here, we investigate the full-depth spatiotemporal variability of turbulent mixing in the deep Northwestern Pacific based on hydrographic data collected over repeated surveys. Nineteen-year-average diapycnal diffusivity of 1.42 × 10−4 m2 s−1 is reveled in the deep Philippine Sea, indicating significantly stronger mixing compared to the stratified ocean interior. Spatially, turbulent mixing strengthens toward the bottom and intensifies westward from the open Pacific to the Philippine Sea due to rough topography. At certain mixing hotspots, enhanced mixing can penetrate up to 2,500 m above the bottom, suggesting a substantial potential for upwelling. Below 2,000 m, turbulent mixing exhibits pronounced seasonal variation that deep mixing is more intense in summer (winter) than in winter (summer) in the West Caroline Basin (the Parece Vela Basin). This spatially varying seasonality may be attributed to the inhomogeneous internal tidal energy dissipation in the Northwestern Pacific. Our study will serve to clarify the modulation of turbulent mixing to deep-water mass transformation and circulation in the Northwestern Pacific.

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来源期刊
Journal of Geophysical Research-Oceans
Journal of Geophysical Research-Oceans Earth and Planetary Sciences-Oceanography
CiteScore
7.00
自引率
13.90%
发文量
429
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