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WU | Marine Propeller Theory and Application | E-Book | www.sack.de
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E-Book, Französisch

WU Marine Propeller Theory and Application


1. Auflage 2026
ISBN: 978-2-7598-4096-0
Verlag: De Gruyter
Format: PDF
Kopierschutz: 1 - PDF Watermark

E-Book, Französisch

ISBN: 978-2-7598-4096-0
Verlag: De Gruyter
Format: PDF
Kopierschutz: 1 - PDF Watermark



Marine propellers have been the primary means of ship propulsion for centuries and remain at the heart of modern marine engineering. Reflecting the latest advances in the field, this book provides a comprehensive introduction to the theory, design, analysis, and performance of marine propellers. Combining fundamental principles with practical applications, it presents a wealth of numerical results derived from computational fluid dynamics (CFD) simulations, state-of-the-art measurement and testing techniques, and detailed design case studies. The eight chapters cover the development of marine propulsion systems, propeller geometry, propulsion theory, open-water testing, ship–propeller interaction, cavitation, structural strength, and chart-based propeller design. Moving beyond purely theoretical treatments, the book offers an accessible and practice-oriented approach. Through extensive CFD visualizations and engineering examples, it illustrates the complex relationships between propeller geometry, hydrodynamic performance, cavitation behaviour, and structural integrity. It also introduces modern design, manufacturing, measurement, and testing technologies, together with advanced chart-based design methods that extend beyond conventional efficiency-focused approaches.This work will be a valuable reference for researchers, graduate students, and engineers in naval architecture, marine engineering, ship hydrodynamics, and propulsion system design.

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Contributor: Lihong WU Lihong WU is Professor at Dalian Maritime University, where she has been serving as a faculty member since 2010, teaching undergraduate courses in Ship Resistance and Ship Propulsion, and a postgraduate course in Marine Propeller Theory. Her research focuses on marine propeller design and hydrodynamics, ship hydrodynamics, and computational fluid dynamics.



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