Diagnosing the Southern Ocean Overturning from Tracer Fields
Diagnosing the Southern Ocean Overturning from Tracer Fields
复制标题
从示踪场诊断南大洋翻转
DOI:
10.1175/2009jpo4052.1
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发表时间:
2009
影响因子:
3.5
通讯作者:
T. McDougall
中科院分区:
文献类型:
--
作者:
J. Zika;B. Sloyan;T. McDougall
Abstract The strength and structure of the Southern Hemisphere meridional overturning circulation (SMOC) is related to the along-isopycnal and vertical mixing coefficients by analyzing tracer and density fields from a hydrographic climatology. The meridional transport of Upper Circumpolar Deep Water (UCDW) across the Antarctic Circumpolar Current (ACC) is expressed in terms of the along-isopycnal (K) and diapycnal (D) tracer diffusivities and in terms of the along-isopycnal potential vorticity mixing coefficient (KPV). Uniform along-isopycnal (<600 m2 s−1) and low vertical mixing (10−5 m2 s−1) can maintain a southward transport of less than 60 Sv (Sv = 106 m2 s−1) of UCDW across the ACC, which is distributed largely across the South Pacific and east Indian Ocean basins. For vertical mixing rates of O(10−4 m2 s−1) or greater, the inferred transport is significantly enhanced. The transports inferred from both tracer and density distributions suggest a ratio K to D of O(2 × 106) particularly on deeper layers...