Computational Geometry For Ships

Author:   Horst Nowacki (Tech Univ Berlin, Germany) ,  M I G Bloor (Univ Of Leeds, Uk) ,  B Oleksiewicz (Technical Univ Of Gdansk, Poland)
Publisher:   World Scientific Publishing Co Pte Ltd
ISBN:  

9789810233532


Pages:   252
Publication Date:   01 March 1995
Format:   Paperback
Availability:   To order   Availability explained
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Computational Geometry For Ships


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Overview

This text provides a guide to computational geometry for ships. It takes into account recent progress in this field by adapting modern computational methodology to ship-geometric applications. Preliminary curve and surface techniques are included to educate engineers in the use of mathematical methods to assist in CAD and other design areas. In addition, the text provides a study of interpolation and approximation techniques, which is reinforced by direct application to ship curve design, ship curve fairing techniques and other related disciplines. The design, evaluation and production of ship surface geometries are further demonstrated by including current and evolving CAD modelling systems.

Full Product Details

Author:   Horst Nowacki (Tech Univ Berlin, Germany) ,  M I G Bloor (Univ Of Leeds, Uk) ,  B Oleksiewicz (Technical Univ Of Gdansk, Poland)
Publisher:   World Scientific Publishing Co Pte Ltd
Imprint:   World Scientific Publishing Co Pte Ltd
Dimensions:   Width: 15.00cm , Height: 1.50cm , Length: 21.10cm
Weight:   0.340kg
ISBN:  

9789810233532


ISBN 10:   9810233531
Pages:   252
Publication Date:   01 March 1995
Audience:   College/higher education ,  Professional and scholarly ,  Undergraduate ,  Postgraduate, Research & Scholarly
Format:   Paperback
Publisher's Status:   Active
Availability:   To order   Availability explained
Stock availability from the supplier is unknown. We will order it for you and ship this item to you once it is received by us.

Table of Contents

Curve definition; curve representation; curve generation; ship curve design; elementary mathematical properties of surfaces; the PDE method for surface generation; blend design; free-form surface design; numerical solutions of elliptic PDES; surface generation; ship surface design; analysis of surface fairness; hydrodynamic evaluation of generated surfaces.

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