TRACER BUDGETS IN THE WARM WATER SPHERE

Citation
Jc. Mcwilliams et al., TRACER BUDGETS IN THE WARM WATER SPHERE, Tellus. Series A, Dynamic meteorology and oceanography, 48(1), 1996, pp. 179-192
Citations number
28
Categorie Soggetti
Oceanografhy,"Metereology & Atmospheric Sciences
ISSN journal
02806495
Volume
48
Issue
1
Year of publication
1996
Pages
179 - 192
Database
ISI
SICI code
0280-6495(1996)48:1<179:TBITWW>2.0.ZU;2-2
Abstract
In global equilibrium numerical solutions for the oceanic general circ ulation, we examine the time-mean budgets for the tracers potential te mperature and salinity integrated over volumes bounded by interior sur faces of constant tracer values and lying within the warm water sphere . In this domain, the budgets have surface fluxes primarily of one sig n that must be balanced by mesoscale and microscale fluxes through its lower boundary, because advection makes a zero integral contribution. The mesoscale fluxes are represented by the isopycnally oriented, qua siadiabatic parameterization of Gent and McWilliams and contribute lit tle to the integral budgets where isopycnals are nearly tangent to the volume boundary. The microscale fluxes occur with a small vertical di ffusivity (kappa(nu) = O(10(-5))m(2) s(-1)) in the predominantly stabl y stratified warm water sphere, yet they are shown to be sufficient to provide the primary balance against surface forcing in all ocean basi ns and over a wide range of tracer values. This is especially true for potential temperature because of the close alignment of isotherms and isopycnals. For salinity, however, the mesoscale isopycnal diffusion also contributes significantly to the budget. The budgets are dominate d by the surface and interior fluxes from the time-mean circulation, a lthough there are also modest contributions from the rectification of the seasonal cycle. These results are in contrast to previous analyses that concluded that much larger vertical diffusivities are required f or budget balance. We do not attempt to fully resolve the relatively s maller role of vertical diffusion in other budget volumes outside the warm water sphere.