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Tropical intraseasonal variability a...
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Majda, Andrew J.
Tropical intraseasonal variability and the stochastic skeleton method
Record Type:
Electronic resources : Monograph/item
Title/Author:
Tropical intraseasonal variability and the stochastic skeleton methodby Andrew J. Majda ... [et al.].
other author:
Majda, Andrew J.
Published:
Cham :Springer International Publishing :2019.
Description:
ix, 123 p. :ill., digital ;24 cm.
Contained By:
Springer eBooks
Subject:
Madden-Julian oscillationMathematical models.
Online resource:
https://doi.org/10.1007/978-3-030-22247-5
ISBN:
9783030222475$q(electronic bk.)
Tropical intraseasonal variability and the stochastic skeleton method
Tropical intraseasonal variability and the stochastic skeleton method
[electronic resource] /by Andrew J. Majda ... [et al.]. - Cham :Springer International Publishing :2019. - ix, 123 p. :ill., digital ;24 cm. - SpringerBriefs in mathematics of planet earth, weather, climate, oceans,2509-7326. - SpringerBriefs in mathematics of planet earth, weather, climate, oceans..
Introduction -- The deterministic skeleton model and observed features of the MJO -- A Stochastic Skeleton Model for the MJO -- Tropical-extratropical Interactions and the MJO Skeleton Model -- New indices for observations of tropical variability based on the skeleton model and a model for the Walker circulation -- Refined Vertical Structure in the Stochastic Skeleton Model for the MJO -- Current and Future Research Perspectives.
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 also applied 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.
ISBN: 9783030222475$q(electronic bk.)
Standard No.: 10.1007/978-3-030-22247-5doiSubjects--Topical Terms:
852181
Madden-Julian oscillation
--Mathematical models.
LC Class. No.: QC994
Dewey Class. No.: 519
Tropical intraseasonal variability and the stochastic skeleton method
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Introduction -- The deterministic skeleton model and observed features of the MJO -- A Stochastic Skeleton Model for the MJO -- Tropical-extratropical Interactions and the MJO Skeleton Model -- New indices for observations of tropical variability based on the skeleton model and a model for the Walker circulation -- Refined Vertical Structure in the Stochastic Skeleton Model for the MJO -- Current and Future Research Perspectives.
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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 also applied 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.
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