Theory and Design of Air Cushion Craft - Liang Yun, Alan Bliault

Theory and Design of Air Cushion Craft

, (Autoren)

Buch | Hardcover
632 Seiten
2000
Butterworth-Heinemann Ltd (Verlag)
978-0-340-67650-9 (ISBN)
299,95 inkl. MwSt
Describes the theory and design both of Air Cushion Vehicles (ACV) and Surface Effect Ships (SES). This work begins by introducing hovercraft types and their development and application throughout the world. It guides the reader on how to perform machinery and systems selection within ACV and SES overall design.
This definitive text describes the theory and design both of Air Cushion Vehicles (ACV) and Surface Effect Ships (SES). It begins by introducing hovercraft types and their development and application throughout the world in the last three decades, before going on to discuss the theoretical aspects of ACV and SES craft covering their hovering performance, dynamic trim over calm water, resistance, stability, manoeuvrability, skirt configuration and analysis of forces acting on the skirts, ACV and SES seakeeping, and the methodology of scaling aerodynamic and hydrodynamic forces acting on the ACV/SES from model test data.

The latter chapters describe a design methodology, including design criteria and standard methods for estimating craft performance, lift system design, skirt design, hull structure, propulsion systems and power unit selection. Much technical information, data, and references to further work on hovercraft and SES design is provided. The book will be a useful reference to engineers, technicians, teachers, students (both undergraduate and postgraduate), operators etc. who are involved in ACV/SES research, design, construction and operation.

Introduction to hovercraftAir cushion theorySteady drag forcesStabilityTrim and water surface deformation under the cushionManoeuvrabilityDesign and analysis of ACV and SES skirtsMotions in wavesModel experiments and scaling lawsDesign methodology and performance estimationDetermination of principal dimensions of ACVSESLift system designSkirt designStructural designPropulsion system designPower unit selection

Erscheint lt. Verlag 26.5.2000
Verlagsort Oxford
Sprache englisch
Gewicht 1220 g
Themenwelt Technik Maschinenbau
ISBN-10 0-340-67650-7 / 0340676507
ISBN-13 978-0-340-67650-9 / 9780340676509
Zustand Neuware
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