Tropical Intraseasonal Variability and the Stochastic Skeleton Method Tropical Intraseasonal Variability and the Stochastic Skeleton Method
Mathematics of Planet Earth

Tropical Intraseasonal Variability and the Stochastic Skeleton Method

Andrew J. Majda und andere
    • 39,99 €
    • 39,99 €

Beschreibung des Verlags

In this text, modern applied mathematics and physical insight are used to construct the simplest and first nonlinear dynamical model for the Madden-Julian oscillation (MJO), i.e. the stochastic skeleton model. This model captures the fundamental features of the MJO and offers a theoretical prediction of its structure, leading to new detailed methods to identify it in observational data. The text contributes to understanding and predicting intraseasonal variability, which remains a challenging task in contemporary climate, atmospheric, and oceanic science. In the tropics, the Madden-Julian oscillation (MJO) is the dominant component of intraseasonal variability.

One of the strengths of this text is demonstrating how a blend of modern applied mathematical tools, including linear and nonlinear partial differential equations (PDEs), simple stochastic modeling, and numerical algorithms, have been used in conjunction with physical insight to create the model. These tools are alsoapplied in developing several extensions of the model in order to capture additional features of the MJO, including its refined vertical structure and its interactions with the extratropics.

This book is of interest to graduate students, postdocs, and senior researchers in pure and applied mathematics, physics, engineering, and climate, atmospheric, and oceanic science interested in turbulent dynamical systems as well as other complex systems.

GENRE
Wissenschaft und Natur
ERSCHIENEN
2019
24. September
SPRACHE
EN
Englisch
UMFANG
132
Seiten
VERLAG
Springer International Publishing
ANBIETERINFO
Springer Science & Business Media LLC
GRÖSSE
33,9
 MB
Nonlinear Physical Oceanography Nonlinear Physical Oceanography
2007
Nonequilibrium Phenomena in Plasmas Nonequilibrium Phenomena in Plasmas
2006
Modeling Atmospheric and Oceanic Flows Modeling Atmospheric and Oceanic Flows
2014
Nonlinear Dynamics in Geosciences Nonlinear Dynamics in Geosciences
2007
Turbulence in the Solar Wind Turbulence in the Solar Wind
2016
ATMOSPHERE-OCEAN MODELING: COUPLING AND COUPLERS ATMOSPHERE-OCEAN MODELING: COUPLING AND COUPLERS
2021
Forecasting and Assessing Risk of Individual Electricity Peaks Forecasting and Assessing Risk of Individual Electricity Peaks
2019
The Dynamics of Biological Systems The Dynamics of Biological Systems
2019
Mathematics of Planet Earth Mathematics of Planet Earth
2019
Infectious Diseases and Our Planet Infectious Diseases and Our Planet
2021
Quasi-linear Theory for Surface Wave-Current Interactions Quasi-linear Theory for Surface Wave-Current Interactions
2022
The Mathematics of Marine Modelling The Mathematics of Marine Modelling
2022