Abstract
Dep. Oceanogr., Nav. Postgrad. Sch., Monterey, CA 93943, USA ISSN 0022-3670 J (Journal-Article) M (Marine) A coupled air-ice-ocean theoretical model for the marginal ice zone (MIZ) is developed and used to show that an off-ice and divergent wind field not only produces a dilation of the MIZ (as is generally thought), but also generates a compaction of MIZ for some circumstances. An ice divergence-convergence criterion in the MIZ is found and used to help explain some features, such as ice edge bands, and the formation and maintenance of polynyas and leads. The model contains three parts: a thermally forced boundary layer air flow, a mechanically driven ice drift, and a reduced gravity ocean. The three components are linked through the surface temperature gradient and various interfacial stresses. Model results show that in the MIZ, a thermally generated surface wind blowing from ice to water (ice breeze) is generally divergent over i...
Cite
CITATION STYLE
Chu, P. C. (1987). An Ice Breeze Mechanism for an Ice Divergence-Convergence Criterion in the Marginal Ice Zone. Journal of Physical Oceanography, 17(10), 1627–1632. https://doi.org/10.1175/1520-0485(1987)017<1627:aibmfa>2.0.co;2
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