Advanced Numerical Modelling of Wave Structure Interaction - Info and Reading Options
By David M Kelly, Angelos Dimakopoulos and Pablo Higuera Caubilla

"Advanced Numerical Modelling of Wave Structure Interaction" is published by CRC Press in Nov 15, 2022 - Milton and it has 270 pages.
“Advanced Numerical Modelling of Wave Structure Interaction” Metadata:
- Title: ➤ Advanced Numerical Modelling of Wave Structure Interaction
- Authors: David M KellyAngelos DimakopoulosPablo Higuera Caubilla
- Number of Pages: 270
- Publisher: CRC Press
- Publish Date: Nov 15, 2022
- Publish Location: Milton
“Advanced Numerical Modelling of Wave Structure Interaction” Subjects and Themes:
- Subjects: ➤ Wave resistance (Hydrodynamics) - Mathematical models - Hydraulic structures - Résistance de vagues - Modèles mathématiques - Ouvrages hydrauliques - Engineering
Edition Specifications:
- Format: paperback
Edition Identifiers:
- The Open Library ID: OL32585665M - OL24572765W
- ISBN-13: 9780367619381 - 9781351119535
- ISBN-10: 0367619385
- All ISBNs: 0367619385 - 9780367619381 - 9781351119535
AI-generated Review of “Advanced Numerical Modelling of Wave Structure Interaction”:
"Advanced Numerical Modelling of Wave Structure Interaction" Description:
Open Data:
Cover -- Title Page -- Copyright Page -- Foreword -- Table of Contents -- Introduction -- Chapter 1 Wave Generation and Absorption Techniques -- 1 Introduction -- 2 Review of wave generation and absorption methods -- 2.1 Static boundary wave generation and absorption boundary conditions -- 2.2 Relaxation zones -- 2.3 Internal wave makers -- 2.4 Moving wavemakers with active absorption -- 3 Discussion -- References -- Chapter 2 Wave Propagation Models for Numerical Wave Tanks -- 1 Introduction -- 2 Historical development -- 2.1 BEM models -- 2.2 FEM models -- 2.3 Spectral models -- 2.4 Fully Lagrangian models -- 3 Lagrangian numerical wave model -- 3.1 Mathematical formulation -- 3.2 Numerical scheme -- 3.3 Numerical dispersion relation and dispersion correction -- 3.4 Numerical treatment of breaking -- 3.5 Numerical efficiency -- 3.6 Model validation -- 4 Model application to the evolution of extreme wave groups -- 5 Model application to waves on sheared currents -- 6 Concluding remarks -- References -- Chapter 3 Wave Breaking and Air Entrainment -- 1 Introduction -- 2 Physics of breaking -- 2.1 Wave breaker types -- 2.2 Flow structure -- 3 Numerical model -- 4 Wave breaking of unstable sinusoidal wave -- 4.1 Initial configuration -- 4.2 Splash-up and large vortical structures -- 5 A new type of vortical structures under breaking waves -- 6 Discussion and future work -- References -- Chapter 4 Air Compressibility and Aeration Effects in Coastal Flows -- 1 Introduction -- 2 Flow model for dispersed water waves -- 2.1 Mathematical model -- 3 Numerical Method -- 3.1 Treatment of the advection equation -- 3.2 Spatial discretisation -- 3.3 The HLLC Riemann solver -- 3.4 Temporal discretisation -- 4 Results -- 4.1 1D problems -- 4.2 Free drop of a water column in a closed tank -- 4.3 Underwater explosion near a planar rigid wall
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