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Titlebook: Dispersive Shallow Water Waves; Theory, Modeling, an Gayaz Khakimzyanov,Denys Dutykh,Oleg Gusev Book 2020 Springer Nature Switzerland AG 20

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發(fā)表于 2025-3-21 17:23:59 | 只看該作者 |倒序?yàn)g覽 |閱讀模式
書目名稱Dispersive Shallow Water Waves
副標(biāo)題Theory, Modeling, an
編輯Gayaz Khakimzyanov,Denys Dutykh,Oleg Gusev
視頻videohttp://file.papertrans.cn/282/281525/281525.mp4
概述Presents cutting-edge research on dispersive wave modelling, and the numerical methods used to simulate the propagation and generation of long surface water waves.Demonstrates state-of-the-art, adapti
叢書名稱Lecture Notes in Geosystems Mathematics and Computing
圖書封面Titlebook: Dispersive Shallow Water Waves; Theory, Modeling, an Gayaz Khakimzyanov,Denys Dutykh,Oleg Gusev Book 2020 Springer Nature Switzerland AG 20
描述This monograph presents cutting-edge research on dispersive wave modelling, and the numerical methods used to simulate the propagation and generation of long surface water waves. Including both an overview of existing dispersive models, as well as recent breakthroughs, the authors maintain an ideal balance between theory and applications. From modelling tsunami waves to smaller scale coastal processes, this book will be an indispensable resource for those looking to be brought up-to-date in this active area of scientific research..Beginning with an introduction to various dispersive long wave models on the flat space, the authors establish a foundation on which readers can confidently approach more advanced mathematical models and numerical techniques. The first two chapters of the book cover modelling and numerical simulation over globally flat spaces, including adaptive moving grid methods along with the operator splitting approach, which was historically proposed at the Institute of Computational Technologies at Novosibirsk. Later chapters build on this to explore high-end mathematical modelling of the fluid flow over deformed and rotating spheres using the operator splitting ap
出版日期Book 2020
關(guān)鍵詞Nonlinear dispersive waves; Dispersive wave; Dispersive wave equation; Dispersive models; Water wave mod
版次1
doihttps://doi.org/10.1007/978-3-030-46267-3
isbn_softcover978-3-030-46266-6
isbn_ebook978-3-030-46267-3Series ISSN 2730-5996 Series E-ISSN 2512-3211
issn_series 2730-5996
copyrightSpringer Nature Switzerland AG 2020
The information of publication is updating

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發(fā)表于 2025-3-22 00:05:45 | 只看該作者
Book 2020hods along with the operator splitting approach, which was historically proposed at the Institute of Computational Technologies at Novosibirsk. Later chapters build on this to explore high-end mathematical modelling of the fluid flow over deformed and rotating spheres using the operator splitting ap
板凳
發(fā)表于 2025-3-22 04:13:37 | 只看該作者
2730-5996 ng surface water waves.Demonstrates state-of-the-art, adaptiThis monograph presents cutting-edge research on dispersive wave modelling, and the numerical methods used to simulate the propagation and generation of long surface water waves. Including both an overview of existing dispersive models, as
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Numerical Simulation on a Globally Spherical Geometry,ion distance over the sphere and on the linear extent of generation region. Finally, the numerical method is applied to a couple of real-world events. Namely, we undertake simulations of the . 2007 and . 2010 tsunamis. Whenever the data is available, our computational results are confronted with real measurements.
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The Building of British Social Anthropology by the new generation of ‘pioneers’—F. Serre, C.C. Mei and Le Méhauté and D. Peregrine who derived modern nonlinear dispersive wave models. After this time the modern period started, which can be characterized by the proliferation of journal publications and it is much more difficult to keep track of these records.
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The Bulgarian Language in the Digital Agesure is found by solving a nonlinear elliptic equation. Moreover, this form of governing equations allows to determine the natural form of boundary conditions to obtain a well-posed (numerical) problem.
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Model Derivation on a Globally Flat Space, by the new generation of ‘pioneers’—F. Serre, C.C. Mei and Le Méhauté and D. Peregrine who derived modern nonlinear dispersive wave models. After this time the modern period started, which can be characterized by the proliferation of journal publications and it is much more difficult to keep track of these records.
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