The Relationship Between US East Coast Sea Level and the Atlantic Meridional Overturning Circulation: A Review

被引:54
|
作者
Little, Christopher M. [1 ]
Hu, Aixue [2 ]
Hughes, Chris W. [3 ,4 ]
McCarthy, Gerard D. [5 ]
Piecuch, Christopher G. [6 ]
Ponte, Rui M. [1 ]
Thomas, Matthew D. [7 ]
机构
[1] Atmospher & Environm Res Inc, Lexington, MA 02421 USA
[2] Natl Ctr Atmospher Res, Climate & Global Dynam Lab, POB 3000, Boulder, CO 80307 USA
[3] Univ Liverpool, Dept Earth Ocean & Ecol Sci, Liverpool, Merseyside, England
[4] Natl Oceanog Ctr, Liverpool, Merseyside, England
[5] Maynooth Univ, Dept Geog, ICARUS, Maynooth, Kildare, Ireland
[6] Woods Hole Oceanog Inst, Woods Hole, MA 02543 USA
[7] Yale Univ, Dept Geol & Geophys, New Haven, CT USA
关键词
sea level; AMOC; United States; coastal; climate model; review; WESTERN BOUNDARY CURRENT; NORTH-ATLANTIC; GULF-STREAM; INTERANNUAL VARIABILITY; OCEAN CIRCULATION; UNITED-STATES; BOTTOM PRESSURE; LARGE-SCALE; THERMOHALINE CIRCULATION; TRANSPORT VARIABILITY;
D O I
10.1029/2019JC015152
中图分类号
P7 [海洋学];
学科分类号
0707 ;
摘要
Scientific and societal interest in the relationship between the Atlantic Meridional Overturning Circulation (AMOC) and U.S. East Coast sea level has intensified over the past decade, largely due to (1) projected, and potentially ongoing, enhancement of sea level rise associated with AMOC weakening and (2) the potential for observations of U.S. East Coast sea level to inform reconstructions of North Atlantic circulation and climate. These implications have inspired a wealth of model- and observation-based analyses. Here, we review this research, finding consistent support in numerical models for an antiphase relationship between AMOC strength and dynamic sea level. However, simulations exhibit substantial along-coast and intermodel differences in the amplitude of AMOC-associated dynamic sea level variability. Observational analyses focusing on shorter (generally less than decadal) timescales show robust relationships between some components of the North Atlantic large-scale circulation and coastal sea level variability, but the causal relationships between different observational metrics, AMOC, and sea level are often unclear. We highlight the importance of existing and future research seeking to understand relationships between AMOC and its component currents, the role of ageostrophic processes near the coast, and the interplay of local and remote forcing. Such research will help reconcile the results of different numerical simulations with each other and with observations, inform the physical origins of covariability, and reveal the sensitivity of scaling relationships to forcing, timescale, and model representation. This information will, in turn, provide a more complete characterization of uncertainty in relevant relationships, leading to more robust reconstructions and projections.
引用
收藏
页码:6435 / 6458
页数:24
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