Practical Ship Hydrodynamics
The author has provided the reader with comprehensive coverage of ship hydrodynamics with a focus on numerical methods now in use. The book provides a global overview of experimental and numerical methods for ship resistance and propulsion, manoeuvring and seakeeping. As boundary element techniques...
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Main Author | |
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Format | eBook Book |
Language | English |
Published |
Oxford ; Boston
Elsevier
2000
Butterworth-Heinemann Elsevier Science & Technology |
Edition | 1 |
Subjects | |
Online Access | Get full text |
ISBN | 9780750648516 0750648511 |
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Abstract | The author has provided the reader with comprehensive coverage of ship hydrodynamics with a focus on numerical methods now in use. The book provides a global overview of experimental and numerical methods for ship resistance and propulsion, manoeuvring and seakeeping. As boundary element techniques are now in standard use, these are covered in sufficient detail for independent code development.
The book is divided into seven chapters. Chapter one contains an overview of problems and approaches, including the basics of model and full scale testing. An introduction to computational fluid dynamics is given, including a discussion of applications. The next four chapters cover the subjects: propellers, resistance and propulsion, seakeeping and manoeuvring. These chapters present basic methods, such as model testing, extrapolation to full scale, and procedures for design. Substantial parts of each chapter include numerical methods and their applications. The last two chapters are devoted to boundary element methods for resistance and seakeeping. |
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AbstractList | The author has provided the reader with comprehensive coverage of ship hydrodynamics with a focus on numerical methods now in use. The book provides a global overview of experimental and numerical methods for ship resistance and propulsion, manoeuvring and seakeeping. As boundary element techniques are now in standard use, these are covered in sufficient detail for independent code development. The book is divided into seven chapters. Chapter one contains an overview of problems and approaches, including the basics of model and full scale testing. An introduction to computational fluid dynamics is given, including a discussion of applications. The next four chapters cover the subjects: propellers, resistance and propulsion, seakeeping and manoeuvring. These chapters present basic methods, such as model testing, extrapolation to full scale, and procedures for design. Substantial parts of each chapter include numerical methods and their applications. The last two chapters are devoted to boundary element methods for resistance and seakeeping. The author has provided the reader with comprehensive coverage of ship hydrodynamics with a focus on numerical methods now in use. The book provides a global overview of experimental and numerical methods for ship resistance and propulsion, manoeuvring and seakeeping. As boundary element techniques are now in standard use, these are covered in sufficient detail for independent code development. The book is divided into seven chapters. Chapter one contains an overview of problems and approaches, including the basics of model and full scale testing. An introduction to computational fluid dynamics is given, including a discussion of applications. The next four chapters cover the subjects: propellers, resistance and propulsion, seakeeping and manoeuvring. These chapters present basic methods, such as model testing, extrapolation to full scale, and procedures for design. Substantial parts of each chapter include numerical methods and their applications. The last two chapters are devoted to boundary element methods for resistance and seakeeping. |
Author | Bertram, Volker |
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ContentType | eBook Book |
Copyright | 1999 |
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Discipline | Military & Naval Science |
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ISBN | 9780750648516 0750648511 |
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Notes | Includes bibliographical references (p. 265-268) and index |
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PageCount | 281 |
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PublicationDate | 1999 2000 2000-08-14 |
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PublicationPlace | Oxford ; Boston |
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Publisher | Elsevier Butterworth-Heinemann Elsevier Science & Technology |
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Snippet | The author has provided the reader with comprehensive coverage of ship hydrodynamics with a focus on numerical methods now in use. The book provides a global... |
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SubjectTerms | Civil Engineering & Construction Materials General References Hydrodynamics Marine Engineering & Naval Architecture Ships Ships & Vessels Ships -- Hydrodynamics |
TableOfContents | Title Page
Preface
Table of Contents
1. Introduction
2. Propellers
3. Resistance and Propulsion
4. Ship Seakeeping
5. Ship Manoeuvring
6. Boundary Element Methods
7. Numerical Example for BEM
References
Index Front Cover -- Practical Ship Hydrodynamics -- Copyright Page -- Contents -- Preface -- Chapter 1. Introduction -- 1.1 Overview of problems and approaches -- 1.2 Model tests - similarity laws -- 1.3 Full-scale trials -- 1.4 Numerical approaches (computational fluid dynamics) -- 1.5 Viscous flow computations -- Chapter 2. Propellers -- 2.1 Introduction -- 2.2 Propeller curves -- 2.3 Analysis of propeller flows -- 2.4 Cavitation -- 2.5 Experimental approach -- 2.6 Propeller design procedure -- 2.7 Propeller-induced pressures -- Chapter 3. Resistance and propulsion -- 3.1 Resistance and propulsion concepts -- 3.2 Experimental approach -- 3.3 Additional resistance under service conditions -- 3.4 Simple design approaches -- 3.5 CFD approaches for steady flow -- 3.6 Problems for fast and unconventional ships -- 3.7 Exercises: resistance and propulsion -- Chapter 4. Ship seakeeping -- 4.1 Introduction -- 4.2 Experimental approaches (model and full scale) -- 4.3 Waves and seaway -- 4.4 Numerical prediction of ship seakeeping -- 4.5 Slamming -- 4.6 Exercises: seakeeping -- Chapter 5. Ship manoeuvring -- 5.1 Introduction -- 5.2 Simulation of manoeuvring with known coefficients -- 5.3 Experimental approaches -- 5.4 Rudders -- 5.5 Exercises: manoeuvring -- Chapter 6. Boundary element methods -- 6.1 Introduction -- 6.2 Source elements -- 6.3 Vortex elements -- 6.4 Dipole elements -- 6.5 Special techniques -- Chapter 7. Numerical example for BEM -- 7.1 Two-dimensional flow around a body in infinite fluid -- 7.2 Two-dimensional wave resistance problem -- 7.3 Three-dimensional wave resistance problem -- 7.4 Strip method module (two dimensional) -- 7.5 Rankine panel method in the frequency domain -- References -- Index |
Title | Practical Ship Hydrodynamics |
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