Dimensionless Numerical Approaches for the Performance Prediction of Marine Waterjet Propulsion Units
Author(s) -
Marco Altosole,
G. Benvenuto,
Massimo Figari,
Ugo Campora
Publication year - 2012
Publication title -
international journal of rotating machinery
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.265
H-Index - 33
eISSN - 1026-7115
pISSN - 1023-621X
DOI - 10.1155/2012/321306
Subject(s) - propulsion , computer science , performance prediction , marine engineering , jet propulsion , process (computing) , dimensionless quantity , naval architecture , engineering design process , set (abstract data type) , work (physics) , jet (fluid) , mechanical engineering , simulation , aerospace engineering , engineering , mechanics , physics , programming language , operating system
One of the key issues at early design stage of a high-speed craft is the selection and the performance prediction of the propulsion system because at this stage only few information about the vessel are available. The objective of this work is precisely to provide the designer, in the case of waterjet propelled craft, with a simple and reliable calculation tool, able to predict the waterjet working points in design and off-design conditions, allowing to investigate several propulsive options during the ship design process. In the paper two original dimensionless numerical procedures, one referred to jet units for naval applications and the other more suitable for planing boats, are presented. The first procedure is based on a generalized performance map for mixed flow pumps, derived from the analysis of several waterjet pumps by applying similitude principles of the hydraulic machines. The second approach, validated by some comparisons with current waterjet installations, is based on a complete physical approach, from which a set of non-dimensional waterjet characteristics has been drawn by the authors. The presented application examples show the validity and the degree of accuracy of the proposed methodologies for the performance evaluation of waterjet propulsion systems
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