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http://dx.doi.org/10.3744/SNAK.2003.40.5.026

Propeller Skew Optimization Considering Varying Wake Field  

문일성 (한국해양연구원 해양시스템안전연구소)
김건도 (충남대학교 선박해양공학과)
유용완 (한진중공업)
류민철 (대우조선해양)
이창섭 (충남대학교 선박해양공학과)
Publication Information
Journal of the Society of Naval Architects of Korea / v.40, no.5, 2003 , pp. 26-35 More about this Journal
Abstract
Propellers operating in a given nonuniform ship wake generate unsteady loads leading to undesirable stern vibration problems. The skew is known to be the most proper and effective geometric parameter to control or reduce the fluctuating forces on the shaft. This paper assumes the skew profile as either a quadratic or a cubic function of the radius and determines the coefficients of the polynomial function by applying the simplex method. The method uses the converted unconstrained algorithm to solve the constrained minimization problem of 6-component shaft excitation forces. The propeller excitation was computed either by applying the two-dimensional gust theory for quick estimation or by the fully three-dimensional unsteady lifting surface theory in time domain for an accurate solution. A sample result demonstrates that the shaft forces can be further reduced through optimization from the original design.
Keywords
Skew optimization; Lifting surface theory; Simplex method; unsteady force; wake field;
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  • Reference
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