The U2H map explains the effect of (sub)mesoscale currents on significant wave height statistics

Fuente: arXiv
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Main Authors: Wang, Han, Bôas, Ana B. Villas, Vanneste, Jacques, Young, William R.
Format: Preprint
Published: 2025
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author Wang, Han
Bôas, Ana B. Villas
Vanneste, Jacques
Young, William R.
author_facet Wang, Han
Bôas, Ana B. Villas
Vanneste, Jacques
Young, William R.
contents Currents modulate the energy of surface gravity waves, leading to spatial inhomogeneities in significant wave height (SWH). Previous work indicates that the overall scale of the inhomogeneities is set by the scale of the currents, that the inhomogeneities are strongly anisotropic even for isotropic currents, and that the rotational and divergent components of the currents have sharply distinct effects. We explain these and other features of current-induced SWH inhomogeneities using the U2H map, a linear relation between SWH and currents deduced from wave-action conservation by making simplifying assumptions. We obtain a linear law relating the spectrum of SWH to the spectra of rotational and divergent kinetic energy of the current. This makes it possible to relate SWH statistics (such as variance and anisotropy) to the current statistics and wave properties including directional spreading.
format Preprint
id arxiv_https___arxiv_org_abs_2504_21736
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle The U2H map explains the effect of (sub)mesoscale currents on significant wave height statistics
Wang, Han
Bôas, Ana B. Villas
Vanneste, Jacques
Young, William R.
Fluid Dynamics
Atmospheric and Oceanic Physics
Currents modulate the energy of surface gravity waves, leading to spatial inhomogeneities in significant wave height (SWH). Previous work indicates that the overall scale of the inhomogeneities is set by the scale of the currents, that the inhomogeneities are strongly anisotropic even for isotropic currents, and that the rotational and divergent components of the currents have sharply distinct effects. We explain these and other features of current-induced SWH inhomogeneities using the U2H map, a linear relation between SWH and currents deduced from wave-action conservation by making simplifying assumptions. We obtain a linear law relating the spectrum of SWH to the spectra of rotational and divergent kinetic energy of the current. This makes it possible to relate SWH statistics (such as variance and anisotropy) to the current statistics and wave properties including directional spreading.
title The U2H map explains the effect of (sub)mesoscale currents on significant wave height statistics
topic Fluid Dynamics
Atmospheric and Oceanic Physics
url https://arxiv.org/abs/2504.21736