The ocean is a vastly complex and interconnected system where small-scale turbulent motions, such as estuarine eddies and melting ice floes, fundamentally drive global climate …
BGP discretizes governing PDE's into finite-volume solver coefficients, which are projected onto a reduced basis. Includes tools to generate reduced bases in Matlab, as well …
Abstract of Geophysical Fluid Dynamics and the Calculus of Moving Space, by Joel Feske, Ph.D., Brown University, May 2026. Geophysical fluid dynamics (GFD) is the …
Understanding the characteristics and drivers of climate variations is imperative to advancing our knowledge about the evolution and changes of the Earth system. The Holocene …
Ocean surface gravity waves, especially the resulting Langmuir turbulence, affect the ocean surface vertical mixing, yet are missing in most of the global climate models …
Abstract of Ocean Submesoscale Transport and Entrainment: Theory, Modeling, and Parameterization, by Anna Lo Piccolo, Ph.D., Brown University, May 2026. The ocean surface boundary layer …
Abstract of "OSOM: Predictability, Variability, and Response To Parameterizations Quantified Using Information Theory" by Aakash Bhalchandra Sane, Ph.D., Brown University, October 2021. The Ocean State …
Submesoscale features and processes with length scales of 1-10km strongly affect the state of the upper ocean by providing routes for large-scale energy to be …
This study examines how the width of warm ocean filaments influences the formation and evolution of submesoscale eddies. Using the MITgcm in an idealized, stratified …
This study examines how the width of warm ocean filaments influences the formation and evolution of submesoscale eddies. Using the MITgcm in an idealized, stratified …