Hydrodynamics of Planing Monohull Watercraft (eBook)

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2016 | 1st ed. 2017
X, 105 Seiten
Springer International Publishing (Verlag)
978-3-319-39219-6 (ISBN)

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Hydrodynamics of Planing Monohull Watercraft - William S. Vorus
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This book addresses the principles involved in the design and engineering of planing monohull power boats, with an emphasis on the theoretical fundamentals that readers need in order to be fully functional in marine design and engineering. Author William Vorus focuses on three topics: boat resistance, seaway response, and propulsion and explains the physical principles, mathematical details, and theoretical details that support physical understanding. In particular, he explains the approximations and simplifications in mathematics that lead to success in the applications of planing craft design engineering, and begins with the simplest configuration that embodies the basic physics. He leads readers, step-by-step, through the physical complications that occur, leading to a useful working knowledge of marine design and engineering. Included in the book are a wealth of examples that exemplify some of the most important naval architecture and marine engineering problems that challenge many of today's engineers.

William Vorus, PhD, is Professor Emeritus and Jerome L. Goldman Endowed Chair in the School of Naval Architecture and Marine Engineering at the University of New Orleans, in Louisiana. He is one of the leading authorities in the field of planing watercraft and has published extensively on the topic in journals. 

William Vorus, PhD, is Professor Emeritus and Jerome L. Goldman Endowed Chair in the School of Naval Architecture and Marine Engineering at the University of New Orleans, in Louisiana. He is one of the leading authorities in the field of planing watercraft and has published extensively on the topic in journals. 

Preface4Part 1: Boat Hull Hydrodynamics5Introduction and Background5Chapter I: Conceptual Monohull Planing in Calm Water7Planing Boat Hydrostatics11Hydrostatic Solution13Chapter II: Slender-Body Hydrodynamics14Planing Solution in Calm Water14Analysis16Normal Force Coefficient (per unit length)17Lift and Drag18Numerical Example18More General Non-similar Slender Planing Hulls25Numerical Analysis27Shallow Water Planing29Chapter III Time Domain Analysis30Chapter IV Calm-water Mechanics33Porpoising40Gravity Effects in Boat Steady Performance40The Components of Planing Craft Drag41Induced drag41Wave drag42Spray drag41Use of Trim Tabs42Chapter V:  Planing in Sea Waves44Wave Spectrum and Inversion45Seaway Motion47Regular Wave Impact51Part 2: Boat Propulsion Hydrodynamics56Introduction and Background56Design of Ventilated Propellers58Chapter 1Data requirements for design58Vent-Cavity Creation59Vent-Cavity Maintenance59Specification of Design Geometry63Chapter 2 An Engineering Approximation64SPP Design Example65Cavitation (Ventilation) Characteristics68Blade Strength77Stress and Deflection Prediction78Open-Water Curves79Hull Propeller Matching81Consequences of Hull – Propeller Mismatch84Propulsion Efficiency Enhancing Devices86Part 2 Conclusion86References:87Appendix        88

Erscheint lt. Verlag 26.8.2016
Reihe/Serie SpringerBriefs in Applied Sciences and Technology
SpringerBriefs in Applied Sciences and Technology
Zusatzinfo X, 105 p. 50 illus., 35 illus. in color.
Verlagsort Cham
Sprache englisch
Themenwelt Naturwissenschaften Physik / Astronomie
Technik Bauwesen
Technik Maschinenbau
Schlagworte Boat Hydrostatics • Boat resistance • Boat steady performance • Calm water planing • DOF of rigid-body-dynamics • fluid- and aerodynamics • Froude number • Hydrostatic solution • Porpoising • Seaway response • Shallow water planing
ISBN-10 3-319-39219-0 / 3319392190
ISBN-13 978-3-319-39219-6 / 9783319392196
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