期刊文献+

Prediction of Hydrodynamic Forces on a Moored Ship Induced by a Passing Ship in Shallow Water Using a High-Order Panel Method 被引量:4

Prediction of Hydrodynamic Forces on a Moored Ship Induced by a Passing Ship in Shallow Water Using a High-Order Panel Method
原文传递
导出
摘要 A three-dimensional high-order panel method based on non-uniform rational B-spline(NURBS) is developed for predicting the hydrodynamic interaction forces on a moored ship induced by a passing ship in shallow water. An NURBS surface is used to precisely represent the hull geometry. Velocity potential on the hull surface is described by B-spline after the source density distribution on the boundary surface is determined. A collocation approach is applied to the boundary integral equation discretization. Under the assumption of low passing speed, the effect of free surface elevation is neglected in the numerical calculation, and infinite image method is used to deal with the finite water depth effect. The time stepping method is used to solve the velocity potential at each time step. Detailed convergence study with respect to time step, panel size and Green function is undertaken. The present results of hydrodynamic forces are compared with those obtained by slender-body theory to show the validity of the proposed numerical method. Calculations are conducted for different water depths and lateral distances between ships, and the detail results are presented to demonstrate the effects of these factors. A three-dimensional high-order panel method based on non-uniform rational B-spline(NURBS) is developed for predicting the hydrodynamic interaction forces on a moored ship induced by a passing ship in shallow water. An NURBS surface is used to precisely represent the hull geometry. Velocity potential on the hull surface is described by B-spline after the source density distribution on the boundary surface is determined. A collocation approach is applied to the boundary integral equation discretization. Under the assumption of low passing speed, the effect of free surface elevation is neglected in the numerical calculation, and infinite image method is used to deal with the finite water depth effect. The time stepping method is used to solve the velocity potential at each time step. Detailed convergence study with respect to time step, panel size and Green function is undertaken. The present results of hydrodynamic forces are compared with those obtained by slender-body theory to show the validity of the proposed numerical method. Calculations are conducted for different water depths and lateral distances between ships, and the detail results are presented to demonstrate the effects of these factors.
出处 《Journal of Shanghai Jiaotong university(Science)》 EI 2016年第2期129-135,共7页 上海交通大学学报(英文版)
基金 the National Natural Science Foundation of China(Nos.51179019 and 51309152)
关键词 moored ship passing ship hydrodynamic interaction non-uniform rational B-spline(NURBS) high-order panel method moored ship passing ship hydrodynamic interaction non-uniform rational B-spline(NURBS) high-order panel method
  • 相关文献

参考文献2

二级参考文献18

  • 1Chen HC, Lin WM, Liut DA, Hwang WY (2003). An advanced viscous flow computation method for ship-ship dynamic interactions in shallow and restricted waterway. Proceedings of International Conference on Marine Simulation and Ship Maneuverability (MARSIM'03), Kanazawa, Japan, 3, RC-35-1-10.
  • 2Ch'ng PW, Doctors LJ, Renilson MR (1993). A method of calculating the ship-bank interaction forces and moments in restricted water. International Shipbuilding Progress, 40(421), 7-23.
  • 3Ch'ng PW (1991). An investigation into the influence of bank effect on ship manoeuvring and its mathematics modeling for a ship-handling simulator. ME. thesis, School of Mechanical and Manufacturing Engineering, The University of New South Wales, Sydney.
  • 4Fonfach JM, Sutulo S, Guedes Soares C (2011). Numerical study of ship-to-ship interaction forces on the basis of various flow models. Proceedings of the 2nd International Conference on Ship Manoeuvring in Shallow and Confined Water STS, Trondheim, Norway, 137-146.
  • 5Hess JL, Smita AMO(1964)." Calculation of nonlifting potential flow about arbitrary three-dimensional bodies. Journal of Ship Research, 8(2), 22-44.
  • 6Hess JL, Smith AMO (1967). Calculation of potential flow about arbitrary bodies. Progress in Aeronautical Sciences, 8, 1-137.
  • 7ntore aforce H__ Lataire E, M, E, Eloot K, Delefortrie G (2007). Navigation in confined waters: influence of bank characteristics on ship-bank interaction. Proceedings of the 2nd International Conference on Marine Research and Transportation, Ischia, Naples, Italy, 1-9.
  • 8Norrbin NH (1974). Bank effects on a ship moving through a short dredged channel. Proceedings of the Tenth Symposium on Naval Hydrodynamics, Cambridge, 71-88.
  • 9SOding H, Conrad F (2005). Analysis of overtaking manoeuvres in a narrow waterway. Ship Technology Research, 52(4), 189-193.
  • 10Sutulo S, Guedes Soares C (2008). Simulation of the hydrodynamic interaction forces in close-proximity manoeuvring. Proceedings of the 27th Annual International Conference on Offshore Mechanics and Arctic Engineering (OMAE 2008), Estoril. Portugal, OMAE2008-57938.

共引文献8

同被引文献8

引证文献4

二级引证文献2

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部