4.7 Article

Local and Remote Forcing of Interannual Sea-Level Variability at Nantucket Island

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出版社

AMER GEOPHYSICAL UNION
DOI: 10.1029/2021JC018275

关键词

sea level; adjoint sensitivity; forcing mechanism

资金

  1. National Aeronautics and Space Administration [80NM0018D0004]
  2. NASA Sea Level Change Team [80NM0018D0004, 80NSSC20K1241]

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The relative contributions of local and remote wind stress and air-sea buoyancy forcing to sea-level variations along the East Coast of the United States are investigated. Wind stress explains a significant portion of the interannual sea-level variance, while both wind and buoyancy forcing together explain a larger portion. The study also disproves a previous hypothesis about the Labrador Sea wind stress being a driver of Nantucket sea-level variations. Remote buoyancy forcing is found to influence Nantucket sea level through slow advective processes.
The relative contributions of local and remote wind stress and air-sea buoyancy forcing to sea-level variations along the East Coast of the United States are not well quantified, hindering the understanding of sea-level predictability there. Here, we use an adjoint sensitivity analysis together with an Estimating the Circulation and Climate of the Ocean (ECCO) ocean state estimate to establish the causality of interannual variations in Nantucket dynamic sea level. Wind forcing explains 67% of the Nantucket interannual sea-level variance, while wind and buoyancy forcing together explain 97% of the variance. Wind stress contribution is near-local, primarily from the New England shelf northeast of Nantucket. We disprove a previous hypothesis about Labrador Sea wind stress being an important driver of Nantucket sea-level variations. Buoyancy forcing, as important as wind stress in some years, includes local contributions as well as remote contributions from the subpolar North Atlantic that influence Nantucket sea level a few years later. Our rigorous adjoint-based analysis corroborates previous correlation-based studies indicating that sea-level variations in the subpolar gyre and along the United States northeast coast can both be influenced by subpolar buoyancy forcing. Forward perturbation experiments further indicate remote buoyancy forcing affects Nantucket sea level mostly through slow advective processes, although coastally trapped waves can cause rapid Nantucket sea level response within a few weeks.

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