A geostrophic adjustment model of two buoyant fluids

4Citations
Citations of this article
22Readers
Mendeley users who have this article in their library.

Your institution provides access to this article.

Abstract

A combination of analytical calculations and laboratory experiments has been used to investigate the geostrophic adjustment of two buoyant fluids having different densities in a third denser ambient fluid. The frontal position, the depth profile, and the horizontal and vertical alignments of the two buoyant fluids at the final equilibriumstate are determined by the ratio of the baroclinicRossby radii of deformation λ31/λ21 and G2 5 λ32/λ21 and the Burger numbers B1 = λ31/L1 and B2 = λ32/L2 of the two buoyant fluids, where λij =( √ g'ijHj p /f) is the baroclinic Rossby radius of deformation between fluids i and j. The buoyant fluids 1 and 2 have densities ρ1 and ρ2 (ρ1, ρ2), respectively; the ambient denser fluid has density ρ3; g' is the reduced gravity; H and L are the buoyant fluids' initial depth and width, respectively; and f is the Coriolis parameter. Laboratory rotating experiments confirmed the analytical prediction of the location of the two fronts. After reaching geostrophic equilibrium, the two buoyant currents align mainly horizontally when the extent of the fronts between fluids 1 and 3 and between fluids 2 and 3 is large compared to the extent of the front between fluids 1 and 2: thatis, large values of λ31 and λ32 compared to λ21 or equivalently G1 » 1 and G2 « 1. Alternatively, if the extent of the fronts between the three fluids is similar (i.e., G1 ' G2 ' 1), the buoyant currents align mainly vertically. Furthermore, the Burger number of the lightest fluid B1 controls the distance of the inner front from the coast, while B2 controls the offshore extent of the outer front. © 2012 American Meteorological Society.

Cite

CITATION STYLE

APA

Cenedese, C., Lerczak, J. A., & Bartone, G. (2012). A geostrophic adjustment model of two buoyant fluids. Journal of Physical Oceanography, 42(11), 1932–1944. https://doi.org/10.1175/JPO-D-11-0169.1

Register to see more suggestions

Mendeley helps you to discover research relevant for your work.

Already have an account?

Save time finding and organizing research with Mendeley

Sign up for free