Advanced numerical models for simulating tsunami waves and runup /
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Meeting name: | International Workshop on Long-Wave Runup Models (3rd : 2004 : Santa Catalina Island, Calif.) |
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Imprint: | Hackensack, N.J. ; London : World Scientific, c2008. |
Description: | xix, 322 p. : ill. (some col.) ; 24 cm. |
Language: | English |
Series: | Advances in coastal and ocean engineering ; v. 10 |
Subject: | |
Format: | Print Book |
URL for this record: | http://pi.lib.uchicago.edu/1001/cat/bib/7525548 |
Table of Contents:
- Preface
- A Dedication to Dr. Cliff J. Astill
- Part 1. Review Papers
- Chapter 1. Modeling Runup with Depth Integrated Equation Models
- Chapter 2. High-Resolution Finite Volume Methods for the Shallow Water Equations with Bathymetry and Dry States
- Chapter 3. SPH Modeling of Tsunami Waves
- Chapter 4. A Large Eddy Simulation Model for Tsunami and Runup Generated by Landslides
- Chapter 5. Free-Surface Lattice Boltzmann Modeling in Single Phase Flows
- Part 2. Extended Abstracts
- Chapter 6. Benchmark Problems
- Chapter 7. Tsunami Runup onto a Plane Beach
- Chapter 8. Nonlinear Evolution of Long Waves over a Sloping Beach
- Chapter 9. Amplitude Evolution and Runup of Long Waves; Comparison of Experimental and Numerical Data on a 3D Complex Topography
- Chapter 10. Numerical Simulations of Tsunami Runup onto a Three-Dimensional Beach with Shallow Water Equations
- Chapter 11. 3D Numerical Simulation of Tsunami Runup onto a Complex Beach
- Chapter 12. Evaluating Wave Propagation and Inundation Characteristics of the Most Tsunami Model over a Complex 3D Beach
- Chapter 13. Tsunami Generation and Runup Due to a 2D Landslide
- Chapter 14. Boussinesq Modeling of Landslide-Generated Waves and Tsunami Runup
- Chapter 15. Numerical Simulation of Tsunami Runup onto a Complex Beach with a Boundary-Fitting Cell System
- Chapter 16. A 1-D Lattice Boltzmann Model Applied to Tsunami Runup onto a Plane Beach
- Chapter 17. A Lagrangian Model Applied to Runup Problems
- Appendix. Phase-Averaged Towed PIV Measurements for Regular Head Waves in a Model Ship Towing Tank