气候变化中潮汐对南极底水形成的影响

IF 3.4 2区 地球科学 Q1 OCEANOGRAPHY
Xianxian Han, Andrew Stewart, Zhaomin Wang, Qinghua Yang, Chengyan Liu, Dake Chen
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引用次数: 0

摘要

南极底水(AABW)是由密集陆架水(DSW)下降到深海形成的,潮汐在DSW的运输和夹带中起着关键作用。以往的研究表明,潮汐可以抑制净溢流夹带,有利于形成更密集的AABW。然而,潮汐对AABW形成和相关物质封存的影响如何随气候变化而变化仍不清楚。在本研究中,采用一个理想化的数值模型来研究气候对受潮汐影响的AABW特性的潜在影响。根据对南极大陆架未来变化的预测,在不同的环境分层和DSW供应速率下进行了实验。结果表明,潮平流及其相关的v型锋改变了水的垂直扩散系数和与周围水体的交换,从而改变了水的性质。对于未来暖咸陆架,AABW将相应变暖变咸,v型锋的影响明显减弱。相反,对于未来的冷鲜陆架,由于DSW的稀释更强,AABW的形成几乎不存在,潮汐效应变得更弱。此外,潮汐对溢流混合的抑制仅对大的DSW通量(厚度)有意义,而对小的DSW通量则可以忽略不计。这些发现表明,在全球变暖的情况下,潮汐对DSW下降的贡献将减弱,从而加速AABW形成的减缓。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Tidal Effects on Antarctic Bottom Water Formation in a Changing Climate

Tidal Effects on Antarctic Bottom Water Formation in a Changing Climate

Tidal Effects on Antarctic Bottom Water Formation in a Changing Climate

Tidal Effects on Antarctic Bottom Water Formation in a Changing Climate

Antarctic bottom water (AABW) forms through the descent of dense shelf waters (DSW) into the abyssal ocean, with tides playing a key role in DSW transport and entrainment. Previous studies suggest that tides can suppress the net overflow entrainment, favoring the formation of denser AABW. However, how tidal effects on AABW formation and associated material sequestration vary with a changing climate remains unclear. In this study, an idealized numerical model is used to investigate potential climatic influences on tidally influenced AABW properties. Experiments are conducted with varying ambient stratifications and rates of DSW supply, inspired by projected future changes over the Antarctic continental shelf. The results show that tidal advection and associated V-shaped front can modify the vertical diffusivity and the exchanges between DSW and its ambient waters, thereby altering the properties of AABW. For a future warm and salty shelf, AABW will become warmer and saltier accordingly, with the effects of the V-shaped front weakening significantly. Conversely, for a future cold and fresh shelf, AABW formation is nearly nonexistent due to the stronger dilution of DSW, and the tidal effects become much weaker. Additionally, tidal suppression of overflow mixing is only significant for large DSW fluxes (thickness) and becomes negligible for small DSW fluxes. These findings suggest that the contribution of tides to DSW descent will weaken under global warming, thereby accelerating the slowdown of AABW formation.

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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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