PP026-01
The dynamics of the global monsoon: connecting theory and observations

Thursday, 10 December 2020: 16:00
Virtual
Simona Bordoni, University of Trento, Trento, Italy, Ruth Geen, University of Exeter, Exeter, EX4, United Kingdom, David Battisti, University of Washington, Atmospheric Sciences, Seattle, WA, United States and Katrina L. Hui, Massachusetts Institute of Technology, Cambridge, MA, United States; California Institute of Technology, Pasadena, CA, United States
Abstract:
Earth’s monsoons are complex systems, governed by both large-scale constraints on the atmospheric general circulation and regional interactions with continents and orography, and coupled to the ocean. Monsoons have historically been considered as distinct regional systems, and the prevailing view has been, and remains, an intuitive picture of monsoon as a form of large-scale sea breeze, driven by land-sea contrast. However, climate dynamics is seldom intuitive. More recently, a perspective has emerged within the observational and Earth system modeling communities of a global monsoon that is the result of a seasonally migrating tropical convergence zone, intimately connected to the global tropical atmospheric overturning and localized by regional characteristics. Parallel with this, over the past decade, much theoretical progress has been made in understanding the fundamental dynamics of the seasonal Hadley cells and Intertropical Convergence Zones via the use of hierarchical modeling approaches, including highly idealized simulations such as aquaplanets. Here we review the theoretical progress made, and explore the extent to which these theoretical advances can help synthesize theory with observations and understand differing characteristics of regional monsoons. We show that this theoretical work provides strong support for the migrating convergence zone picture, allows constraints on the circulation to be identified via the momentum and energy budgets, and lays out a framework to assess variability and to possibly constrain past and future changes of the monsoon.