科研成果: 主要学术论文 [1]Yao C B*, Sun X S, et al. Seakeeping computation of two parallel ships with Rankine source panel method in frequency domain [J]. Engineering Analysis with Boundary Elements, 2019, 109:70-80. [2]Yao C B*, Sun X S, et al. Numerical and experimental study on seakeeping performance of ship in finite water depth [J]. Applied Ocean Research, 2017, 67:59-77. (SCI,EI) [3]Yao C B*, Dong W C. Numerical study on local steady flow effects on hydrodynamic interaction between two parallel ships advancing in waves [J]. Engineering Analysis with Boundary Elements, 2016, 66:129-144. (SCI,EI) [4]Yao C B*, Dong W C. 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. (SCI,EI) [5]Yao C B*, Dong W C. Study on fast integration method for Bessho form translating-pulsating source Green’s function distributing on a panel [J]. Ocean Engineering.2014, 89(1):10-20. (SCI,EI) [6]Yao C B*, Dong W C.A fast integration method for translating-pulsating source Green’s function in Bessho form[J].Journal of Zhejiang University –SCIENCE A(Applied physics&engineering), 2014, 15(2):108-119. (SCI,EI) [7]Sun X S, Yao C B*, Ye. Q. Numerical investigation on seakeeping performance of SWATH with three dimensional translating-pulsating source Green function[J]. Engineering Analysis with Boundary Elements, 2016, 73: 215-225. (SCI,EI) [8]Sun XS, Yao CB*, Ma C. Partially nonlinear time domain analysis on ship motions in waves with translating-pulsating source Green function [J]. Ocean Engineering, 2018,170: 374-391.(SCI,EI) [9]Sun XS, Yao CB, Xiong Y, et al. Numerical and experimental study on seakeeping performance of a SWATH vehicle in head waves [J]. Applied Ocean Research, 2017, 68: 262-275, (SCI,EI) [10]姚朝帮*, 董文才. 开尔文源格林函数数值积分方法研究 [J]. 上海交通大学学报,2014,48(1): 98-105.(EI) [11]姚朝帮*, 董文才. Kelvin 源格林函数数值计算方法对比研究 [J]. 哈尔滨工程大学学报, 2015, 36(1):98-103.(EI) [12]Yao C B *, Dong W C. Method to calculate resistance of high-speed displacement ship taking the effect of dynamic sinkage and trim and fluid viscosity into account [J]. Journal of Shanghai Jiaotong University(Science), 2012,17(4):421-426.(EI) [13]Yao C B *, Dong W C. A method to calculate resistance of ship taking the effect of dynamic sinkage & trim and viscosity of fluid[C].Applied Mechanics and materials, 2011, (121-126):1849-1857.(EI) [14]姚朝帮*,董文才,许勇. 深 V 型艇系列模型纵向运动试验研究[J].哈尔滨工程大学 报,2010,31(9): 1-6. (EI) [15]董文才,姚朝帮.查洁法结合 RANS 方程的滑行艇阻力计算方法[J].上海交通大学学报, 2012, 45(8):1223-1229.(EI) [16]董文才,姚朝帮.中高速深 V 型船阻力预报方法及尾板减阻机理研究[J].哈尔滨工程大 学学报, 2011, 32(7):848-852. (EI) [17]Sun X S, Yao C B, Ye Q. Seakeeping prediction of SWATH with three dimensional translating-pulsating source Green’s function [J]. Journal of ship mechanics. (EI) [18]孙小帅,姚朝帮*,叶青. 稳定鳍和波高对 SWATH 波浪中纵向运动影响模型试验研究 [J]. 哈尔滨工程大学学报, 2018, 39(4):674-679. (EI) [19]孙小帅,姚朝帮*,熊鹰等. 基于移动脉动源格林函数的 SWATH 耐波性频域计算方法 研究[J]. 上海交通大学学报, 2018, 52(6):698-707. (EI) [20]孙小帅, 姚朝帮*, 叶青. 小水线面双体船波浪中纵向运动性能模型试验研究 [21]孙小帅,姚朝帮*,叶青. 小水线面双体船横摇阻尼特性数值与试验研究 [22]Sun XS, Yao CB, Xiong Y, et al. Time domain analysis on ship motions in waves with translating-pulsating source Green function [J]. Journal of ship mechanics, 2018,22(6):703-713. (EI) [23]Sun X S, Dong W C, Yao C B. URANS simulation on diffraction problem of a vessel with transom stern[J]. Journal of ship mechanics, 2016, 20(6):664-673. (EI) [24]Sun X S, Dong W C, Yao C B. Evaluation of viscous effect on wave excitation force of a vessel with transom stern[J]. Journal of ship mechanics, 2017, 21(12): 1468-1479. (EI) [25]邓磊,董文才,姚朝帮. 迎浪规则波中小水线面双体船纵向运动及波浪载荷非线性特性数值分析[J].船舶力学,2017,21(3):249-262. (EI) [26]郑义,董文才,姚朝帮. 排水型深 V 船系列模型尾板减阻试验研究[J].上海交通大学学报,2011: 475-480.(EI)
授权专利 [1]一种低阻力高耐波性尖舭排水船型设计方法,ZL201218008119.5.(排3) [2]一种千吨级高耐波性尖舭排水船型,ZL201218008118.0.(排3) [3]一种多自由度自适应船模拖曳装置,ZL2013180081466.X.(排3) [4]一种用于小水线面双体船模型试验的拖曳装置,ZL201610184561.0.(排2)
软件著作权 [1]姚朝帮,董文才,欧勇鹏. 波浪中并行两船水动力频域分析系统 V1.0. [2]姚朝帮,孙小帅,霍聪等. 船舶兴波阻力及波形预报系统 V1.0. [3]姚朝帮,董文才,孙小帅. SWATH 船耐波性能预报系统 V1.0. |