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Ship Resistance and Propulsion - Practical Estimation of Ship Propulsive Power (Hardcover, 2nd Revised edition): Anthony F.... Ship Resistance and Propulsion - Practical Estimation of Ship Propulsive Power (Hardcover, 2nd Revised edition)
Anthony F. Molland, Stephen R. Turnock, Dominic A. Hudson
R2,755 Discovery Miles 27 550 Ships in 12 - 17 working days

This second edition provides a comprehensive and scientific approach to evaluating ship resistance and propulsion. Written by experts in the field, it includes the latest developments in CFD, experimental techniques and guidance for the practical estimation of ship propulsive power. It addresses improvements in energy efficiency and reduced emissions, and the introduction of the Energy Efficiency Design Index (EEDI). Descriptions have now been included of pump jets, rim driven propulsors, shape adaptive foils, propeller noise and dynamic positioning. Trial procedures have been updated, and preliminary estimates of power for hydrofoil craft, submarines and AUVs are incorporated. Standard series data for hull resistance and propeller performance are included, enabling practitioners to make ship power predictions based on material and data within the book. Numerous fully worked examples illustrate applications for most ship and small craft types, making this book ideal for practising engineers, naval architects, marine engineers and undergraduate and postgraduate students.

Marine Rudders and Control Surfaces - Principles, Data, Design and Applications (Hardcover): Anthony F. Molland, Stephen R.... Marine Rudders and Control Surfaces - Principles, Data, Design and Applications (Hardcover)
Anthony F. Molland, Stephen R. Turnock
R2,576 Discovery Miles 25 760 Ships in 12 - 17 working days

This book guides naval architects from the first principles of the physics of control surface operation, to the use of experimental and empirical data and applied computational fluid dynamic modelling of rudders and control surfaces.
The empirical and theoretical methods applied to control surface design are described in depth and their use explained through application to particular cases. The design procedures are complemented with a number of worked practical examples of rudder and control surface design.
The online companion site contains an extensive modelling data library, plus software for theoretical control surface design, based on over 25 years of world-class research at the University of Southampton, an incredible resource for engineers in this field.
- The only text dedicated to marine control surface design
- Provides experimental, theoretical and applied design information valuable for practising engineers, designers and students
- Accompanied by an online extensive experimental database together with software for theoretical
predictions and design development

Marine Rudders, Hydrofoils and Control Surfaces - Principles, Data, Design and Applications (Paperback, 2nd edition): Anthony... Marine Rudders, Hydrofoils and Control Surfaces - Principles, Data, Design and Applications (Paperback, 2nd edition)
Anthony F. Molland, Stephen R. Turnock
R3,592 Discovery Miles 35 920 Ships in 12 - 17 working days

The course keeping and manoeuvring requirements for a ship are governed by international maritime law. In assessing and predicting the course keeping and manoeuvring capabilities of the ship, knowledge is required of the rudder forces necessary to keep a course or facilitate a manoeuvre. The second edition of Marine Rudders, Hydrofoils and Control Surfaces includes up-to-date data and rudder design techniques that enable the rudder forces to be estimated, together with any interactions due to the hull and propeller. The new edition describes the design and application of hydrofoils including shape adaptive design, and their applications including hydrofoil craft, yachts, and kite surfing hydrofoils. The professional will also face the need to design control surfaces for motion control, such as roll and pitch, for surface vessels and submersibles, and the book contains the necessary techniques and data to carry out these tasks. This book is for practicing naval architects and marine engineers, small craft designers, yacht designers, hydrodynamicists, undergraduate and postgraduate students of naval architecture, maritime engineering and ship science, and the broader engineering community involved in the development of marine craft that rely on the generation of 'lift' such as control engineers and aerodynamicists.

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