English

Three-dimensional imaging of waves and floe sizes in the marginal ice zone during an explosive cyclone

Atmospheric and Oceanic Physics 2022-08-09 v3

Abstract

The marginal ice zone is the dynamic interface between the open ocean and consolidated inner pack ice. Surface gravity waves regulate marginal ice zone extent and properties, and, hence, fluxes between the atmosphere and ocean, and ice advance and retreat. Over the past decade, seminal experimental campaigns have generated much needed measurements of wave evolution in the marginal ice zone, which, notwithstanding the prominent knowledge gaps that remain, are underpinning major advances in understanding the region's role in the climate system. Here, we report three-dimensional imaging of waves from a moving vessel and simultaneous imaging of floe sizes, with the potential to enhance the marginal ice zone database substantially. The images give the direction--frequency wave spectrum, which we combine with concurrent measurements of wind speeds and reanalysis products to reveal the complex multi-component wind-plus-swell nature of a cyclone-driven wave field, and quantify evolution of large-amplitude waves in sea ice.

Keywords

Cite

@article{arxiv.2103.08864,
  title  = {Three-dimensional imaging of waves and floe sizes in the marginal ice zone during an explosive cyclone},
  author = {Alberto Alberello and Luke Bennetts and Miguel Onorato and Marcello Vichi and Keith MacHutchon and Clare Eayrs and Butteur Ntamba Ntamba and Alvise Benetazzo and Filippo Bergamasco and Filippo Nelli and Rohinee Pattani and Hans Clarke and Ippolita Tersigni and Alessandro Toffoli},
  journal= {arXiv preprint arXiv:2103.08864},
  year   = {2022}
}