Atlantic pycnocline theory scrutinized using a coupled climate model

نویسندگان

  • Anders Levermann
  • Johannes Jakob Fürst
چکیده

[1] Simulations with changed Southern Ocean wind‐stress, oceanic vertical mixing, surface freshwater forcing and global warming confirm the basic equations of Gnanadesikan’s (1999) theory for the Atlantic: one vertical scale, the pycnocline depth D, contributes inversely proportional to low‐latitudinal upwelling and linearly to Southern Ocean eddy transport. The maximum Atlantic overturning is confirmed to be quadratic in D but is also shown to be l inear in a meridional densi ty difference Dr. Our simulations strongly suggest that the theory needs to be complemented by a dynamical equation for Dr since changes in both D and Dr are significant and mutually independent. While, under global warming D varies strongly and Dr is practically constant, the situation is reversed for altered surface freshwater fluxes. Similarly, variations in the meridional length scale of Southern Ocean outcropping require a dynamical equation in order to capture the fundamental behavior of the Atlantic meridional overturning circulation.Citation: Levermann, A., and J. J. Fürst (2010), Atlantic pycnocline theory scrutinized using a coupled climate model, Geophys. Res. Lett., 37, L14602, doi:10.1029/ 2010GL044180.

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تاریخ انتشار 2010