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3 차원 시간영역 근사비선형 2 차경계요소법에 의한 선체의 대진폭 운동 및 파랑하중 계산Estimation of Large Amplitude Motions and Wave Loads of a Ship Advancing in Transient Waves by Using a Three Dimensional Time-domain Approximate Body-exact Nonlinear 2nd-order BEM

Other Titles
Estimation of Large Amplitude Motions and Wave Loads of a Ship Advancing in Transient Waves by Using a Three Dimensional Time-domain Approximate Body-exact Nonlinear 2nd-order BEM
Authors
홍도천성홍근홍사영
Issue Date
2010
Publisher
대한조선학회
Keywords
Time-Domain Approximate Body Nonlinear Ship Motion and Wave Loads (시간영역근사비선형 선체운동 및 파랑하중); Forward-Speed Diffraction Impulse-Response Function (전진속도 충격응답함수); Three-Dimensional Time-Domain Forward-Speed Free-Surface Green Function (3DTFFG: 3 차원 시간영역 전진속도 자유표면 그린함수); Time-Domain Green Integral Equation (시간영역 Green 적분방정식); Forward-Speed Radiation Memory Function (전진속도운동이력함수); 2nd Order Boundary Element Method (2 차경계요소법)
Citation
대한조선학회 논문집, v.47, no.3, pp 291 - 305
Pages
15
Journal Title
대한조선학회 논문집
Volume
47
Number
3
Start Page
291
End Page
305
URI
https://www.kriso.re.kr/sciwatch/handle/2021.sw.kriso/1204
ISSN
1225-1143
Abstract
A three-dimensional time-domain calculation method is of crucial importance inprediction of the motions and wave loads of a ship advancing in a severe irregular sea. The exact solution of the free surface wave-ship interaction problem is very complicated because of the essentially nonlinear boundary conditions. In this paper, an approximate body nonlinear approach based on the three-dimensional timedomain forward-speed free-surface Green function has been presented. The Froude- Krylov force and the hydrostatic restoring force are calculated over the instantaneous wetted surface of the ship while the forces due to the radiation and scattering potentials over the mean wetted surface. The time domain radiation and scattering potentials have been obtained from a time invariant kernel of integral equations for the potentials which are discretized according to the second-order boundary element method (Hong and Hong 2008). The diffraction impulse-response functions of the Wigley seakeeping model advancing in transient head waves at various Froude numbers have been presented. A simulation of coupled heave-pitch motion of a long rectangular barge advancing in regular head waves of large amplitude has been carried out. Comparisons between the linear and the approximate body nonlinear numerical results of motions and wave loads of the barge at a nonzero Froude number have been made.
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Sung, Hong Gun
친환경해양개발연구본부 (심해공학연구센터)
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