|
极地邮轮动力技术研究综述
|
Abstract:
针对国内首艘极地邮轮的动力系统特点,整理国内外极地邮轮动力技术和性能研究进展。根据已有极地邮轮及其他极地船只的动力技术特点进行介绍和分析,介绍各种的特点及各种试验方法,展望未来极地邮轮动力技术发展方向。
Aiming at the characteristics of the power system of the first polar cruise in China, the research progress of the power technology and performance of polar cruise at home and abroad is sorted out. According to the existing polar cruise and other polar ships of the dynamic technology characteristics of the introduction and analysis, this paper introduces various characteristics and various test methods, looking forward to the future development direction of polar cruise power technology.
[1] | 高宜朋, 曾凡明, 张晓锋. 吊舱推进器在舰船推进系统中的发展现状及关键技术分析[J]. 中国舰船研究, 2011, 6(1): 90-96. |
[2] | Pego, J. (2005) Construction of a Test Facility for the Research of Ship Propulsion System. Emirates Journal for Engineering Research, 10, 1-8. |
[3] | Frisch, J. (2004) Cavitation and Vibration Investigation for Podded Drives. T-POD Conference Papers, England, 387-399. |
[4] | Stettler, J.W. (2004) Steady and Unsteady Dynamics of an Azimuthing Podded Propulsor Related to Vehicle Maneuvering. Massachusetts Institute of Technology, Cambridge. https://doi.org/10.5957/SMC-2005-D11 |
[5] | Islam, M.F. (2007) Effects of Geometry Variations on the Perfor-mance of Podded Propulsors. Transactions—Society of Naval Architects and Marine Engineers, 115, 140-162. |
[6] | Veitch, I.M., Bose, N., et al. (2006) Numerical Study of Hub Taper Angle on Podded Propeller Perfor-mance. Journal of Marine Technology, 43, 1-10. https://doi.org/10.5957/mt1.2006.43.1.1 |
[7] | Ghassenmi, H. (2008) Computational Hydrodynamics Analysis of the Propeller-Rudder and the Azipod System. Ocean Engineering, 35, 117-130. https://doi.org/10.1016/j.oceaneng.2007.07.008 |
[8] | Bergh, L. (2007) Electrical System in Pod Propul-sion. Chalmers University of Technology, Goteborg. |
[9] | 曹梅亮, 王根禄, 朱鸣. 吊舱式推进装置水动力性能试验研究[J]. 上海交通大学学报, 2003(8): 1198-1200. |
[10] | 韩芸, 沈兴荣, 张峥. 吊舱式推进器敞水性能研究[C]//中国船舶水动力学会学术会议暨中国船舶学术界进入ITTC30周年纪念会. 杭州: 中国造船工程学会, 2008: 146-153. |
[11] | 董小倩, 杨晨俊. 吊舱推进器桨毂间隙影响的数值分析[J]. 上海交通大学学报, 2013, 47(6): 938-942. |
[12] | 孙瑜. 舱体下方带有鳍的吊舱推进器水动力性能研究[D]: [硕士学位论文]. 哈尔滨: 哈尔滨工程大学, 2013. |
[13] | 邢健. 吊舱推进器敞水推进性能研究[D]: [硕士学位论文]. 大连: 大连理工大学, 2014. |
[14] | 贺伟, 陈克强, 李子如. 串列式吊舱推进器操舵工况水动力试验研究[J]. 华中科技大学学报(自然科学版), 2015, 43(1): 107-111. |
[15] | 王展智, 熊鹰, 孙海涛, 王睿. 直航和回转工况下吊舱推进器水动力性能数值计算方法研究[J]. 推进技术, 2016, 37(3): 593-600. |
[16] | Guo, C., et al. (2016) Simulation of Hydrodynamic Performance of Drag and Dou-ble Reverse Propeller Podded Propulsors. Journal of Marine Science and Application, 15, 16-27. https://doi.org/10.1007/s11804-016-1337-y |
[17] | 刘登成, 韦喜忠, 洪方文, 唐登海. 推进器水动力性能数值预报自动化平台PreFluP开发[J]. 船舶力学, 2016, 20(7): 816-823. |
[18] | 黄红波, 吴颖昕, 王建芳, 樊晓冰. 大型循环水槽吊舱推进器空泡性能试验研究[J]. 船舶力学, 2017, 21(4): 396-406. |
[19] | 章新智, 王驰明, 郭昂. 豪华邮轮球艏的新型设计[J]. 船舶工程, 2014, 36(S1): 12-15. |
[20] | 王杉, 王艳霞, 赵强, 魏锦芳, 陈京普. 参数化方法的中型豪华游船特殊球艏线型优化[J]. 江苏科技大学学报(自然科学版), 2017, 31(5): 646-649. |
[21] | 王艳霞, 彭必业, 赵强, 等. 尾板对中型豪华邮轮阻力影响的试验研究[J]. 水动力学研究与进展(A辑), 2017. 32(6): 725-731. |
[22] | 刘鑫旺, 万德成. 豪华邮轮多航速兴波阻力的船型优化[J]. 中国舰船研究, 2020, 15(5): 1-10+40. |