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Marine Propulsors/Морские пропульсивные комплексы

Артикул: 00-01105759
в желания В наличии
Автор: Sverre Steen, Kourosh Koushan
Издательство: MDPI (все книги издательства)
Место издания: Switzerland
ISBN: 978-3-03897-202-0
Год: 2018
Переплет: Мягкая обложка
Страниц: 356
Вес: 891 г
4000 P
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Издание на английском языке
This book provides an update on the state of the art of hydrodynamic aspects of marine propellers and turbines, covering predictions using numerical and experimental methods, where the numerical methods comprise both potential flow panel methods, Navier–Stokes solvers and mixed methods. Open and ducted propellers, as well as azimuthing thrusters are represented, as well as operation in steady conditions, waves and off-design conditions. The book consists of 16 peer-reviewed scientific papers previously published in Journal of Marine Science and Engineering.

Contents
About the Special Issue Editors
Preface to "Marine Propulsors"
Sverre Steen and Kourosh Koushan
Marine Propulsors
Reprinted from: J. Mar. Sci. Eng. 2018, 6, 97, doi: 10.3390/jmse6030097
Seungnam Kim, Spyros A. Kinnas and Weikang Du
Panel Method for Ducted Propellers with Sharp Trailing Edge Duct with Fully Aligned Wake on Blade and Duct
Reprinted from: J. Mar. Sci. Eng. 2018, 6, 89, doi: 10.3390/jmse6030089
Joao Baltazar, Douwe Rijpkema, Jose Falcao de Campos and Johan Bosschers
Prediction of the Open-Water Performance of Ducted Propellers with a Panel Method
Reprinted from: J. Mar. Sci. Eng. 2018, 6, 27, doi: 10.3390/jmse6010027
Pieter Maljaars, Mirek Kaminski and Henk den Besten
Boundary Element Modelling Aspects for the Hydro-Elastic Analysis of Flexible Marine Propellers
Reprinted from: J. Mar. Sci. Eng. 2018, 6, 67, doi: 10.3390/jmse6020067
Pieter Maljaars, Mirek Kaminski and Henk den Besten
Experimental Validation of Fluid-Structure Interaction Computations of Flexible Composite Propellers in Open Water Conditions Using BEM-FEM and RANS-FEM Methods
Reprinted from: J. Mar. Sci. Eng. 2018, 6, 51, doi: 10.3390/jmse6020051
Pelle Bo Regener, Yasaman Mirsadraee and Poul Andersen
Nominal vs. Effective Wake Fields and Their Influence on Propeller Cavitation Performance
Reprinted from: J. Mar. Sci. Eng. 2018, 6, 34, doi: 10.3390/jmse6020034
Yiran Su, Seungnam Kim and Spyros A. Kinnas
Prediction of Propeller-Induced Hull Pressure Fluctuations via a Potential-Based Method: Study of the Effects of Different Wake Alignment Methods and of the Rudder
Reprinted from: J. Mar. Sci. Eng. 2018, 6, 52, doi: 10.3390/jmse6020052
Matthew C. Jones and Eric G. Paterson
Influence of Propulsion Type on the Stratified Near Wake of an Axisymmetric Self-Propelled Body
Reprinted from: J. Mar. Sci. Eng. 2018, 6, 46, doi: 10.3390/jmse6020046
David Hally
Modelling a Propeller Using Force and Mass Rate Density Fields
Reprinted from: J. Mar. Sci. Eng. 2018, 6, 41, doi: 10.3390/jmse6020041
Nabila Berchiche, Vladimir I. Krasilnikov and Kourosh Koushan
Numerical Analysis of Azimuth Propulsor Performance in Seaways: Influence of Oblique Inflow and Free Surface
Reprinted from: J. Mar. Sci. Eng. 2018, 6, 37, doi: 10.3390/jmse6020037
Giulio Dubbioso, Roberto Muscari, Salvatore Mauro and Andrea Di Mascio
Experimental and Numerical Investigation of Propeller Loads in Off-Design Conditions
Reprinted from: J. Mar. Sci. Eng. 2018, 6, 45, doi: 10.3390/jmse6020045
Johan Bosschers
A Semi-Empirical Prediction Method for Broadband Hull-Pressure Fluctuations and Underwater Radiated Noise by Propeller Tip Vortex Cavitation t
Reprinted from: J. Mar. Sci. Eng. 2018, 6, 49, doi: 10.3390/jmse6020049
Ville M. Viitanen, Antti Hynninen, Tuomas Sipila, Timo Siikonen
DDES of Wetted and Cavitating Marine Propeller for CHA Underwater Noise Assessment
Reprinted from: J. Mar. Sci. Eng. 2018, 6, 56, doi: 10.3390/jmse6020056
Stephan Helma, Heinrich Streckwall and Jan Richter
The Effect of Propeller Scaling Methodology on the Performance Prediction
Reprinted from: J. Mar. Sci. Eng. 2018, 6, 60, doi: 10.3390/jmse6020060
Bradford Knight, Robert Freda, Yin Lu Young and Kevin Maki
Coupling Numerical Methods and Analytical Models for Ducted Turbines to Evaluate Designs
Reprinted from: J. Mar. Sci. Eng. 2018, 6, 43, doi: 10.3390/jmse6020043
Francesco Salvatore, Zohreh Sarichloo, and Danilo Calcagni
Marine Turbine Hydrodynamics bya Boundary Element Method with Viscous Flow Correction
Reprinted from: J. Mar. Sci. Eng. 2018, 6, 53, doi: 10.3390/jmse6020053
Ji-Tao Qiu, Chen-Jun Yang, Xiao-Qian Dong, Zong-Long Wang, Wei Li and Francis Noblesse
Numerical Simulation and Uncertainty Analysis of an Axial-Flow Waterjet Pump
Reprinted from: J. Mar. Sci. Eng. 2018, 6, 71, doi: 10.3390/jmse6020071

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