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Image of Reflections on Power Prediction Modeling of Conventional High-Speed Craft

Electronic Resource

Reflections on Power Prediction Modeling of Conventional High-Speed Craft

Radojčić, Dejan - Personal Name;

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This SpringerBrief focuses on modeling and power evaluation of high-speed craft. The various power prediction methods, a principal design objective for high-speed craft of displacement, semi-displacement, and planing type, are addressed. At the core of the power prediction methods are mathematical models for resistance and propulsion efficiency. The models are based on the experimental data of various high-speed hull and propeller series. The regression analysis and artificial neural network (ANN) methods are used as an extraction tool for this kind of mathematical models. A variety of mathematical models of this type are discussed in the book.

Once these mathematical models have been developed and validated, they can be readily programmed into software tools, thereby enabling the parametric analyses required for the optimization of a high-speed craft design. This book provides the foundational reference for these software tools, and their use in the design of high-speed craft. High-speed craft are very different from conventional ships. Current professional literature leaves a gap in the documentation of best design practices for high-speed craft.
This book is aimed at naval architects who design and develop various types of high-speed vessels.


Availability
Inventory Code Barcode Call Number Location Status
1908001956EB0002617620.1 Rad rCentral Library (OPAC)Available
Detail Information
Series Title
-
Call Number
620.1 Rad r
Publisher
: Springer Cham., 2018
Collation
xxiv, 93p.:Ill
Language
English
ISBN/ISSN
978-3-319-94899-7
Classification
620.1
Content Type
Ebook
Media Type
-
Carrier Type
online resource
Edition
1
Subject(s)
Mechanical Engineering
Specific Detail Info
-
Statement of Responsibility
BRF
Other version/related

No other version available

File Attachment
  • Reflections on Power Prediction Modeling of Conventional High-Speed Craft
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