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A three-dimensional model of inertial currents in a variable-density ocean

Published online by Cambridge University Press:  28 March 2006

A. R. Robinson
Affiliation:
Pierce Hall, Harvard University

Abstract

The three-dimensional equations for a general inertial ocean current are transformed so that the temperature rather than the vertical co-ordinate appears as an independent variable. A downstream power series expansion is made of the equations and boundary conditions, which involves an expansion about the mean potential vorticity. A general first-order solution is obtained for a boundary current between two level surfaces, one of no motion and one of uniform temperature. The case of constant potential vorticity is treated for arbitrary inviscid boundary conditions; it is found that the current can exist as a boundary layer only if the open ocean geostrophic drift is westward everywhere in the depth interval. This result is extended to arbitrary potential vorticity distributions by an asymptotic analysis in physical space.

Type
Research Article
Copyright
© 1965 Cambridge University Press

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References

Carrier, G. F. & Robinson, A. R. 1962 On the theory of the wind-driven ocean circulation. J. Fluid Mech. 12, 4980.Google Scholar
Charney, J. G. 1955 The Gulf-Stream as an inertial boundary layer. Proc. Nat. Acad. Sci., 41, 731740.Google Scholar
Greenspan, H. P. 1963 A note concerning topography and inertial currents. J. Marine Res. 21, 14754.Google Scholar
Morgan, G. W. 1956 On the wind-driven ocean circulation. Tellus, 8, 301320.Google Scholar
Robinson, A. R. 1963 Editor's notes in Wind-Driven Ocean Circulation: a Collection of Theoretical Studies, pp. 15361. New York, London: Blaisdell Publishing Company.
Starr, V. P. 1945 A quasi-Lagrangian system of hydrodynamical equations. J. Met. 2, 22737.Google Scholar
Stommel, H. 1958 The Gulf Stream. Berkeley and Los Angeles: University of California Press; Cambridge University Press.