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Journal of Zhejiang University-SCIENCE A (Applied Physics & Engineering)  2014, Vol. 15 Issue (2): 108-119    DOI: 10.1631/jzus.A1300209
Mechanics     
A fast integration method for translating-pulsating source Green’s function in Bessho form
Chao-bang Yao, Wen-cai Dong
Department of Naval Architecture Engineering, Naval University of Engineering, Wuhan 430033, China
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Abstract  The singularities and oscillatory performance of translating-pulsating source Green’s function in Bessho form were analyzed. Relative numerical integration methods such as Gaussian quadrature rule, variable substitution method (VSM), and steepest descent integration method (SDIM) were used to evaluate this type of Green’s function. For SDIM, the complex domain was restricted only on the θ-plane. Meanwhile, the integral along the real axis was computed by use of the VSM to avoid the complication of a numerical search of the steepest descent line. Furthermore, the steepest descent line was represented by the B-spline function. Based on this representation, a new self-compatible integration method corresponding to parametric t was established. The numerical method was validated through comparison with other existing results, and was shown to be efficient and reliable in the calculation of the velocity potentials for the 3D seakeeping and hydrodynamic performance of floating structures moving in waves.

Key wordsTranslating-pulsating source Green’s function      Oscillatory performance      False singularities point      Steepest descent integration method (SDIM)      Variable substitution method (VSM)     
Received: 16 June 2013      Published: 27 January 2014
CLC:  U661.32  
Cite this article:

Chao-bang Yao, Wen-cai Dong. A fast integration method for translating-pulsating source Green’s function in Bessho form. Journal of Zhejiang University-SCIENCE A (Applied Physics & Engineering), 2014, 15(2): 108-119.

URL:

http://www.zjujournals.com/xueshu/zjus-a/10.1631/jzus.A1300209     OR     http://www.zjujournals.com/xueshu/zjus-a/Y2014/V15/I2/108

[1] Chao-bang Yao, Wen-cai Dong. Modeling of fluid resonance in-between two floating structures in close proximity[J]. Journal of Zhejiang University-SCIENCE A (Applied Physics & Engineering), 2015, 16(12): 987-1000.