文章基于Bessho型三维移动脉动源格林函数(Three Dimensional Translating-pulsating Source Green Function,3DTP),开展了小水线面双体船(Small Waterplane Area Twin Hull,SWATH)耐波性数值求解方法研究,计入了对SWATH运动计算有较大...文章基于Bessho型三维移动脉动源格林函数(Three Dimensional Translating-pulsating Source Green Function,3DTP),开展了小水线面双体船(Small Waterplane Area Twin Hull,SWATH)耐波性数值求解方法研究,计入了对SWATH运动计算有较大影响的因素:两片体之间的兴波干扰、粘性阻尼和稳定鳍的影响。求解了SWATH-6A波浪中航行时的波浪力和纵向运动,通过与切片法结果和试验结果比较验证了计算方法。结果表明,基于3DTP的运动计算结果优于切片法结果,特别是纵摇运动预报较好,与试验值吻合更好。展开更多
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 substitut...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 0-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 struc- tures moving in waves.展开更多
基金Supported by the National Natural Science Foundation of China(No.50879090)the Key Program of Hydrodynamics of China(No.914A14030712JB11044)~~
文摘文章基于Bessho型三维移动脉动源格林函数(Three Dimensional Translating-pulsating Source Green Function,3DTP),开展了小水线面双体船(Small Waterplane Area Twin Hull,SWATH)耐波性数值求解方法研究,计入了对SWATH运动计算有较大影响的因素:两片体之间的兴波干扰、粘性阻尼和稳定鳍的影响。求解了SWATH-6A波浪中航行时的波浪力和纵向运动,通过与切片法结果和试验结果比较验证了计算方法。结果表明,基于3DTP的运动计算结果优于切片法结果,特别是纵摇运动预报较好,与试验值吻合更好。
基金Supported by the National Natural Science Foundation of China(No.50879090 and No.51509256)the Key Program of Hydrodynamics of China(No.9140A1403071251311044)+1 种基金the Aeronautical Science Foundation of China(Grant No.20152316005)the Innovation Research Foundation for Ph.D.Candidates of Naval University of Engineering(Grant No.4142C15F)~~
文摘本文基于三维移动脉动源格林函数(Three Dimensional Translating-Pulsating source Green function,3DTP)求解的水动力系数,通过频时域转换法求解时延函数,建立了船舶耐波性时域计算方法,比较了在平动坐标系和随动坐标系下求解船体运动方程对运动计算结果的影响,并与频域计算结果和试验结果进行了对比。结果表明,采用频时域转换法求解时延函数快速高效。在耐波性平动坐标系下求解船体运动方程得到的运动结果与频域结果相比存在偏差,在重心随动坐标系下求解船体运动方程得到的运动结果与频域结果和试验结果吻合良好。
基金Project supported by the National Natural Science Foundation of China (No. 50879090), and the Key Research Program of Hydrody- namics of China (No. 9140A 14030712JB 11044)
文摘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 0-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 struc- tures moving in waves.