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Theoretical prediction of the seakeeping characteristics of two fast displacement catamarans in oblique seas

Theoretical prediction of the seakeeping characteristics of two fast displacement catamarans in oblique seas
Theoretical prediction of the seakeeping characteristics of two fast displacement catamarans in oblique seas
This report employs two different three-dimensional potential flow analyses to evaluate the hydrodynamic coefficients and responses of two high speed displacement catamaran forms. The hullforms are based on the NPL round-bilge series and the Series 64 form. For each hullform two catamaran demihull spacings are considered. These configurations are investigated in regular deep water waves at three different heading angles; namely head seas (? = 180°), ? = 150° and ? = 120°, and for a forward speed corresponding to a Froude number of 0.65.

A selection of hydrodynamic coefficients are presented, together with heave, pitch and roll responses for all of the configurations examined. Comparisons with experimental measurements are included and discussed. Differences between the two three-dimensional methods are discussed and the limitations of the current theoretical methods highlighted. Possible ways to improve the theoretical models are outlined with particular reference to: a) the treatment of forward speed effects,
b) viscous damping effects around the resonant frequencies,
c) the effects of changes in hull attitude with forward speed,
d) the modelling of a transom stern, particularly at high forward speeds.
113
University of Southampton
Wellicome, J.F.
d0198d44-a436-4090-ab85-db0955b99973
Temarel, P.
b641fc50-5c8e-4540-8820-ae6779b4b0cf
Molland, A.F.
917272d0-ada8-4b1b-8191-1611875ef9ca
Hudson, D.A.
3814e08b-1993-4e78-b5a4-2598c40af8e7
Wellicome, J.F.
d0198d44-a436-4090-ab85-db0955b99973
Temarel, P.
b641fc50-5c8e-4540-8820-ae6779b4b0cf
Molland, A.F.
917272d0-ada8-4b1b-8191-1611875ef9ca
Hudson, D.A.
3814e08b-1993-4e78-b5a4-2598c40af8e7

Wellicome, J.F., Temarel, P., Molland, A.F. and Hudson, D.A. (1999) Theoretical prediction of the seakeeping characteristics of two fast displacement catamarans in oblique seas (Ship Science Reports, 113) Southampton, UK. University of Southampton 29pp.

Record type: Monograph (Project Report)

Abstract

This report employs two different three-dimensional potential flow analyses to evaluate the hydrodynamic coefficients and responses of two high speed displacement catamaran forms. The hullforms are based on the NPL round-bilge series and the Series 64 form. For each hullform two catamaran demihull spacings are considered. These configurations are investigated in regular deep water waves at three different heading angles; namely head seas (? = 180°), ? = 150° and ? = 120°, and for a forward speed corresponding to a Froude number of 0.65.

A selection of hydrodynamic coefficients are presented, together with heave, pitch and roll responses for all of the configurations examined. Comparisons with experimental measurements are included and discussed. Differences between the two three-dimensional methods are discussed and the limitations of the current theoretical methods highlighted. Possible ways to improve the theoretical models are outlined with particular reference to: a) the treatment of forward speed effects,
b) viscous damping effects around the resonant frequencies,
c) the effects of changes in hull attitude with forward speed,
d) the modelling of a transom stern, particularly at high forward speeds.

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More information

Published date: 1999
Additional Information: ISSN 0140-3818
Organisations: Fluid Structure Interactions Group

Identifiers

Local EPrints ID: 46425
URI: http://eprints.soton.ac.uk/id/eprint/46425
PURE UUID: 96382ff2-799a-4269-9141-156bd843c95d
ORCID for P. Temarel: ORCID iD orcid.org/0000-0003-2921-1242
ORCID for D.A. Hudson: ORCID iD orcid.org/0000-0002-2012-6255

Catalogue record

Date deposited: 28 Jun 2007
Last modified: 16 Mar 2024 02:48

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Contributors

Author: J.F. Wellicome
Author: P. Temarel ORCID iD
Author: A.F. Molland
Author: D.A. Hudson ORCID iD

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