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contributor authorMayer, Frederick T.;Fringer, Oliver B.
date accessioned2022-01-30T18:06:11Z
date available2022-01-30T18:06:11Z
date copyright8/13/2020 12:00:00 AM
date issued2020
identifier issn0022-3670
identifier otherjpod200070.pdf
identifier urihttp://yetl.yabesh.ir/yetl1/handle/yetl/4264496
description abstractOcean lee waves occur on length scales that are smaller than the grid scale of global circulation models (GCMs). Therefore, such models must parameterize the drag associated with launching lee waves. This paper compares the lee wave drag predicted by existing parameterizations with the drag measured in high-resolution nonhydrostatic numerical simulations of a lee wave over periodic sinusoidal bathymetry. The simulations afford a time-varying glimpse at the nonlinear and nonhydrostatic oceanic lee wave spinup process and identify a characteristic time scale to reach steady state. The maximum instantaneous lee wave drag observed during the spinup period is found to be well predicted by linear lee wave theory for all hill heights. In steady state, the simulations demonstrate the applicability of parameterizing the drag based on applying linear theory to the lowest overtopping streamline of the flow (LOTS), as is currently employed in GCMs. However, because existing parameterizations are based only on the height of the LOTS, they implicitly assume hydrostatic flow. For hills tall enough to trap water in their valleys, the simulations identify a set of nonhydrostatic processes that can result in a reduction of the lee wave drag from that given by hydrostatic parameterizations. The simulations suggest implementing a time-dependent nonhydrostatic version of the LOTS-based parameterization of lee wave drag and demonstrate the remarkable applicability of linear lee wave theory to oceanic lee waves.
publisherAmerican Meteorological Society
titleImproving Nonlinear and Nonhydrostatic Ocean Lee Wave Drag Parameterizations
typeJournal Paper
journal volume50
journal issue9
journal titleJournal of Physical Oceanography
identifier doi10.1175/JPO-D-20-0070.1
journal fristpage2417
journal lastpage2435
treeJournal of Physical Oceanography:;2020:;volume( 50 ):;issue: 009
contenttypeFulltext


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