Numerical Methods for Seakeeping Problems
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Product details:
- Edition number 1st ed. 2021
- Publisher Springer International Publishing
- Date of Publication 20 January 2021
- Number of Volumes 1 pieces, Book
- ISBN 9783030625603
- Binding Hardback
- No. of pages290 pages
- Size 235x155 mm
- Weight 623 g
- Language English
- Illustrations XII, 290 p. 79 illus., 9 illus. in color. Illustrations, black & white 0
Categories
Mathematics in engineering and natural sciences
Civil and construction engineering
Further readings in the field of technology
Further readings in physics
Mathematics in engineering and natural sciences (charity campaign)
Civil and construction engineering (charity campaign)
Further readings in the field of technology (charity campaign)
Further readings in physics (charity campaign)
Long description:
The book describes currently applied and newly developed advanced numerical methods for wave-induced ship motions and loads. Besides well-established computational methods based on strip theory, panel methods and finite volume methods for unsteady Reynolds-averaged Navier-Stokes equations (URANS), recent advances like a fully nonlinear Rankine panel method, URANS calculations including elastic hull deformations, and an improved method to predict added resistance in waves are explained in detail. Furthermore, statistical methods to assess extreme motions and loads are described both for linear and nonlinear responses in a stationary seaway as well as during long-term ship operations. Results of motions and loads, computed using the various methods, are compared with each other and with results of model experiments.
Introductory chapters on fluid dynamics, motions of rigid and elastic ship hulls, numerical methods to compute fluid flows associated withwind waves, and the development and simulation of seaways complement the volume. The book will be of interest to post-graduate students, PhD candidates, as well as engineers in the field of naval architecture, ocean, and marine engineering.
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Table of Contents:
Introduction.- Fundamentals of Hydordynamics and Statistics Wave Theories.- Kinematics and Dynamics of rigid bodies.- Strip Methods.- Boundary Element Methods.- Field Methods.- Computational Procedures.- Applications.