SCI论文30余篇:
[1]Hu J, Zhou L. Further study on level ice resistance and channel resistance for an icebreaking vessel[J]. International Journal of Naval Architecture and Ocean Engineering, 2016, 8(2): 169-176.
[2]Hu J, Zhou L. Experimental and numerical study on wave drift forces on a semi-submersible platform in waves[J]. Ships and Offshore Structures, 2017, 12(1): 56-65.
[3]Hu J, Zhou L. Experimental and numerical study on ice resistance for icebreaking vessels[J]. International Journal of Naval Architecture and Ocean Engineering, 2015, 7(3): 626-639.
[4]Hu J, Lu Z Q, Kan X Y, et al. Numerical simulation on interface evolution and impact of flooding flow[J]. Shock and Vibration, 2015, 2015.
[5]Hu J, Guo L, Sun S. Numerical simulation of the potential flow around a submerged hydrofoil with fully nonlinear free-surface conditions[J]. Journal of Coastal Research, 2018, 34(1): 238-252.
[6]Hu J, Liu L, Chen Y, et al. Impact of a Square Liquid Body on a Rigid Plate[C]//2017 International Conference on Manufacturing Engineering and Intelligent Materials (ICMEIM 2017). Atlantis Press, 2017.
[7]Hu J, Guo L, Geng C, et al. Numerical Investigation of Collapsing Liquid Cylinder[C]//2017 International Conference on Manufacturing Engineering and Intelligent Materials (ICMEIM 2017). Atlantis Press, 2017.
[8]Feng F, Geng C, Guo T, Hu J*. Numerical Simulation of Cotra Rotating Propellers[C]//2017 International Conference on Manufacturing Engineering and Intelligent Materials (ICMEIM 2017). Atlantis Press, 2017.
[9]Hu J, Wang Y, Zhang W, et al. Tip vortex prediction for contra-rotating propeller using large eddy simulation[J]. Ocean Engineering, 2019, 194: 106410.
[10]Hu J, Zhang W, Sun S, et al. Numerical simulation of Vortex–Rudder interactions behind the propeller[J]. Ocean Engineering, 2019, 190: 106446.
[11]Hu J, Zhang W, Sun S, et al. Numerical simulation of interaction between vane wheel and propeller tip vortex[J]. Ships and Offshore Structures, 2019: 1-13.
[12]Hu J, Zhang W, Guo H, et al. Numerical simulation of propeller wake vortex–rudder interaction in oblique flows[J]. Ships and Offshore Structures, 2020: 1-12.
[13]Guo C, Guo H, Hu J*, et al. Large Eddy Simulation of Flow over Wavy Cylinders with Different Twisted Angles at a Subcritical Reynolds Number[J]. Journal of Marine Science and Engineering, 2019, 7(7): 227
[14]Hu J, Liu L, Guo C, et al. Analysis of hydrodynamic interference between two foils using a boundary element method[J]. Ocean Engineering, 2020, 199: 106737.
中文论文:[1]胡健,张维鹏.螺旋桨尾流-自由叶轮耦合作用的数值模拟[J].华中科技大学学报(自然科学版),2019,47(10):82-86+104.
[2]胡健. 纵倾对螺旋桨空化的影响[C]. 中国力学学会、浙江大学.中国力学大会论文集(CCTAM 2019).中国力学学会、浙江大学:中国力学学会,2019:3799-3807.
[3]李涛,赵旺,胡健*. 摆线推进器水动力性能研究[C]. 中国力学学会、浙江大学.中国力学大会论文集(CCTAM 2019).中国力学学会、浙江大学:中国力学学会,2019:3831-3837.
[4]张维鹏,胡健*,毛翼轩,陈昉. 侧斜对螺旋桨梢涡流场的影响[C]. 中国造船工程学会船舶力学学术委员会.2019年船舶结构力学学术会议论文集.中国造船工程学会船舶力学学术委员会:中国造船工程学会,2019:618-624.
[5]胡健,张维鹏,赵大刚.变航态推进器设计及水动力性能分析[J].华中科技大学学报(自然科学版),2019,47(07):113-117.
[6]胡健,杨建,张维鹏,郭春雨.桨后自由叶轮水动力性能分析[J].哈尔滨工程大学学报,2020,41(01):24-30.
[7]胡健,张维鹏,汪春辉.桨叶涡流场中舵表面脉动压力的数值模拟[J].哈尔滨工程大学学报,2019,40(10):1690-1695.
[8]胡洋,胡健,刘亚彬.斜流中螺旋桨的水动力性能研究[J].武汉理工大学学报(交通科学与工程版),2019,43(02):262-268.
[9]钱正芳,张纬康,马骋,胡健*.半浸桨水动力性能预报方法研究[J].中国造船,2018,59(04):51-59.
[10]钱正芳,胡健*,张纬康.摆线推进器水动力性能和流场结构预报方法研究[J].中国造船,2018,59(04):124-133.
[11]胡健,赵旺,王子斌.三维摆动水翼仿生推进水动力分析[J].应用科技,2019,46(02):1-6.
[12]胡健,刘立超.二维溃坝的数值模拟研究[J].应用科技,2018,45(05):6-9+15.
[13]谷浪,王超,胡健,翁凯强.采用带梢隙涡模型的面元法预报泵喷水动力性能[J].中国造船,2017,58(04):14-23.
[14]胡健,耿冲,冯峰.基于大涡模拟的螺旋桨梢涡数值分析[J].华中科技大学学报(自然科学版),2017,45(11):68-73.
[15]胡健,李聪慧,张维鹏,刘立超.基于CFD的桨舵水动力干扰研究[J].应用科技,2017,44(03):5-11+18.
[16]胡健,郭磊,李聪慧,张维鹏,陆尊琦.近自由面水翼性能分析[J].应用科技,2017,44(04):5-11.
[17]胡健,王楠,胡洋.导管桨水动力特性的数值研究[J].哈尔滨工程大学学报,2017,38(06):815-821.
[18]胡健,郭婷婷,郭磊.对转桨水动力性能的数值模拟[J].武汉理工大学学报,2016,38(09):51-59.
[19]胡健,王楠,胡洋.加速导管和减速导管的性能比较[J].北京航空航天大学学报,2017,43(02):240-252.
[20]孙士丽,胡健,孙义龙.斜壁结构的水动力收敛方法研究[J].船舶力学,2015,19(06):654-663.
[21]孙士丽,胡健,胡竞中.可压缩性水柱冲击弹性平板的砰击问题研究(英文)[J].船舶力学,2013,17(09):1031-1037.
[22]孙士丽,孙义龙,胡竞中,胡健.圆柱体出水运动的自由面效应及水冢现象分析[J].计算物理,2013,30(02):187-193.
[23]黄胜,解学参,胡健.鳍对拖式吊舱推进器水动力性能的影响[J].海军工程大学学报,2009,21(02):50-54.
[24]胡健,马骋,黄胜,钱正芳.螺旋桨尾流场的数值分析[J].哈尔滨工程大学学报,2008,29(12):1255-1260.
[25]胡健,苏玉民,黄胜.螺旋桨诱导的船尾脉动压力的数值模拟[J].哈尔滨工程大学学报,2005(03):292-296.