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Titlebook: Two-Fluid Model Stability, Simulation and Chaos; Martín López de Bertodano,William Fullmer,Victor H Book 2017 Springer International Publi

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书目名称Two-Fluid Model Stability, Simulation and Chaos
编辑Martín López de Bertodano,William Fullmer,Victor H
视频video
概述Analyzes linear and nonlinear regularizations that do not eliminate or suppress the KH instability artificially.Reviews finite different First Order Upwind methods and develops second order methods in
图书封面Titlebook: Two-Fluid Model Stability, Simulation and Chaos;  Martín López de Bertodano,William Fullmer,Victor H Book 2017 Springer International Publi
描述This book addresses the linear and nonlinear two-phase stability of the one-dimensional Two-Fluid Model (TFM) material waves and the numerical methods used to solve it. The TFM fluid dynamic stability is a problem that remains open since its inception more than forty years ago. The difficulty is formidable because it involves the combined challenges of two-phase topological structure and turbulence, both nonlinear phenomena. The one dimensional approach permits the separation of the former from the latter..The authors first analyze the kinematic and Kelvin-Helmholtz instabilities with the simplified one-dimensional Fixed-Flux Model (FFM). They then analyze the density wave instability with the well-known Drift-Flux Model. They demonstrate that the Fixed-Flux and Drift-Flux assumptions are two complementary TFM simplifications that address two-phase local and global linear instabilities separately. Furthermore, they demonstrate with a well-posed FFM and a DFM two cases ofnonlinear two-phase behavior that are chaotic and Lyapunov stable. .On the practical side, they also assess the regularization of an ill-posed one-dimensional TFM industrial code. Furthermore, the one-dimensional st
出版日期Book 2017
关键词Two-phase flow analysis; Drift flux model; Linear and nonlinear fluid dynamic stability; Horizontal str
版次1
doihttps://doi.org/10.1007/978-3-319-44968-5
isbn_softcover978-3-319-83174-9
isbn_ebook978-3-319-44968-5
copyrightSpringer International Publishing Switzerland 2017
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