上海交通大学学报 ›› 2019, Vol. 53 ›› Issue (12): 1428-1439.doi: 10.16183/j.cnki.jsjtu.2019.12.005
毛立夫,李英辉,易宏
发布日期:
2020-01-06
通讯作者:
李英辉,男,上海市人,讲师,电话(Tel.):021-34207165; E-mail:lyh_wcz@outlook.com.
作者简介:
毛立夫(1991-),男,河南省周口市人,博士生,主要从事新型船舶开发、水动力计算等.
基金资助:
MAO Lifu,LI Yinghui,YI Hong
Published:
2020-01-06
摘要: 基于三维势流理论并考虑黏性阻尼,计算某斜支柱小水线面双体(I-SWATH)船在波浪中的运动响应.与常规直支柱小水线面双体船和代尔夫特372双体船进行对比,I-SWATH船具有更好的耐波性能.以此为基础,充分考虑黏性条件,通过求解雷诺平均Navier-Stokes方程并结合重叠网格方法,进一步研究该I-SWATH船在静水及规则波中的阻力性能及运动响应.计算结果表明:I-SWATH船存在波浪增阻为负值的情况,并获得了在某种程度上倾斜支柱能够利用波浪能量的结论.
中图分类号:
毛立夫,李英辉,易宏. 斜支柱小水线面双体船水动力性能的数值研究[J]. 上海交通大学学报, 2019, 53(12): 1428-1439.
MAO Lifu,LI Yinghui,YI Hong. Numerical Studies on Hydrodynamic Performance of a SWATH Ship with Inclined Struts[J]. Journal of Shanghai Jiaotong University, 2019, 53(12): 1428-1439.
[1]BRIZZOLARA S, VERNENGO G. Automatic optimization computational method for unconventional SWATH ships resistance [J]. International Journal of Mathematical Models and Methods in Applied Sciences, 2011, 5(5): 882-889. [2]SERDO K, BRCIC D, FRANCIC V, et al. Compa-rative analysis of conventional and SWATH passenger catamaran[C]. Proceedings of 12th International Conference on Transport Science, Portoroz, Slovenija: Mednarodno Posvetovanje o Prometni Znanosti, 2009: 14-20. [3]BRIZZOLARA S, CURTIN T, BOVIO M. Concept design and hydrodynamic optimization of an innovative SWATH USV by CFD methods[J]. Ocean Dynamics, 2012, 62(2): 227-237. [4]QIAN P, YI H, LI Y H. Numerical and experimental studies on hydrodynamic performance of a small-waterplane-area-twin-hull (SWATH) vehicle with inclined struts[J]. Ocean Engineering, 2015, 96: 181-191. [5]DAVIS M R, HOLLOWAY D S. The influence of hull form on the motions of high speed vessels in head seas[J]. Ocean Engineering, 2003, 30(16): 2091-2115. [6]毛筱菲. 小水线面双体船在波浪中的运动响应预报[J]. 船海工程, 2005(4): 13-15. MAO Xiaofei. Numerical study of the motion response prediction of SWATH ship in waves[J]. Ship & Ocean Engineering, 2005(4): 13-15. [7]刘志华, 董文才, 熊鹰. 小型高速SWATH船下体型线研究[J]. 船舶工程, 2004, 26(6): 4-8. LIU Zhihua, DONG Wencai, XIONG Ying. Study on lines of lower hull of small-sized high-speed SWATH ship[J]. Ship Engineering, 2004, 26(6): 4-8. [8]林鹏, 倪其军, 李胜忠, 等. 小水线面双体船纵向航态与阻力特性的CFD分析[J]. 船舶力学, 2017, 21(2): 168-174. LIN Peng, NI Qijun, LI Shengzhong, et al. Numerical simulation of resistance for the SWATH with consideration of navigation attitude[J]. Journal of Ship Mechanics, 2017, 21(2): 168-174. [9]DUBROVSKY V A, MATVEEV K I. Small waterplane area ship models: Re-analysis of test results based on scale effect and form drag[J]. Ocean Engineering, 2006, 33(7): 950-963. [10]LEI D, DONG W C, YAO C B. Numerical study on the nonlinear characteristics of longitudinal motions and wave loads for SWATH ship in regular head waves [J]. Journal of Ship Mechanics, 2017, 21(3): 249-262. [11]TECHET A H. Propulsive performance of biologically inspired flapping foils at high Reynolds numbers[J]. Journal of Experimental Biology, 2008, 211(2): 274-279. [12]KRYLOV V V, PRITCHARD G V. Experimental confirmation of the propulsion of marine vessels employing guided flexural waves in attached elastic fins[J]. Journal of Fluids and Structures, 2007, 23(2): 297-307. [13]LIU J Y, LI Y H, YI H, et al. The modeling and analysis of wave powering surface vehicle[C]//MTS/IEEE OCEANS Conference. Kona, HI, USA: IEEE, 2011: 1-6. [14]李英辉, 易宏. 斜支柱小水线面双体船船型优化[C]//2008年船舶水动力学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: 290-298. LI Yinghui, YI Hong. Optimization of hull shape of swath with inclined struts[C]//2008 Ship Hydrodynamics Academic Conference and 30th Anniversary of China Ship Academia Entering ITT. Hangzhou: The Chinese Society of Naval Architects and Marine Engineers, 2008: 290-298. [15]李岑, 李英辉, 易宏. 斜支柱小水线面双体船初稳性特征研究[J]. 船舶工程, 2009, 31(6): 6-8. LI Cen, LI Yinghui, YI Hong. Study on the initial stability of canted strut SWATH[J]. Ship Engineering, 2009, 31(6): 6-8. [16]MAO L F, WEI C Z, LI Y H, et al. Numerical and experimental studies of submergence depth influence on the resistance of a SWATH with inclined struts [C]//The 27th International Ocean and Polar Engineering Conference. San Francisco, California, USA: International Society of Offshore and Polar Engineers, 2017: 970-976. [17]LATORRE R, VASCONSELLOS J. Study of hull angle influence on SWATH heave and pitch motions[J]. Naval Engineers Journal, 2001, 113(1): 63-69. [18]WU T Y. Fish swimming and bird/insect flight[J]. Annual Review of Fluid Mechanics, 2011, 43: 25-58. [19]LEE C M. Theoretical prediction of motion of small-waterplane-area, twin-hull (SWATH) ships in waves: SPD-76-0046 [R]. David W. Taylor Naval Ship Research and Development Center, 1976. [20]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. [21]FALCHI M, FELLI M, GRIZZI S, et al. SPIV measurements around the DELFT 372 catamaran in steady drift[J]. Experiments in Fluids, 2014, 55(11): 1844. [22]许勇, 董文才, 欧勇鹏. 基于FFT-FS频谱细化技术的船模耐波性试验测量信号分析方法研究[J]. 船舶力学, 2012, 16(5): 497-503. XU Yong, DONG Wencai, OU Yongpeng. Study on the analytical method of measured signal based on FFT-FS spectrum subdivision technique of seakeeping test for ship model[J]. Journal of Ship Mechanics, 2012, 16(5): 497-503. |
[1] | 叶礼裕, 王超, 郭春雨, 常欣. 集中冰载工况下的桨叶边缘强度校核方法[J]. 上海交通大学学报, 2020, 54(1): 10-19. |
[2] | 姚慧岚, 张怀新. 较低雷诺数下ITTC尺度效应换算方法的改进[J]. 上海交通大学学报, 2019, 53(1): 35-41. |
[3] | 杨云涛,朱仁传,蒋银,缪国平. 三维无反射数值波浪水池及波浪与结构物相互作用的模拟[J]. 上海交通大学学报(自然版), 2018, 52(3): 253-260. |
[4] | 魏成柱,易宏,李英辉. 船首对单体穿浪船水动力性能的影响[J]. 上海交通大学学报(自然版), 2018, 52(3): 268-275. |
[5] | 毛立夫,魏成柱,李英辉,易宏. 浸深对高速斜支柱小水线面双体船阻力的影响[J]. 上海交通大学学报(自然版), 2018, 52(3): 276-282. |
[6] | 周耀华,张高峰. 国际海事组织参数横摇Level 2衡准运动预报方法选型[J]. 上海交通大学学报(自然版), 2018, 52(3): 283-290. |
[7] | 杨吉祥1,2,王天英3,唐文勇1,2,范菊1,2. 三维方形浮式储油卸油装置横摇阻尼预报[J]. 上海交通大学学报(自然版), 2018, 52(3): 261-267. |
[8] | 赵大刚1,郭春雨1,苏玉民1,豆鹏飞2,景涛1,张海鹏1. L型吊舱推进器直航及操舵工况水动力性能试验研究[J]. 上海交通大学学报(自然版), 2017, 51(7): 812-818. |
[9] | 王睿,熊鹰. 对转桨整体定常面元法[J]. 上海交通大学学报(自然版), 2017, 51(7): 827-830. |
[10] | 陈思,马宁,顾解忡. 基于弱非线性假定的船舶波浪增阻数值计算[J]. 上海交通大学学报(自然版), 2017, 51(3): 277-. |
[11] | 蒲汲君,熊鹰,王睿. 三维水翼初始梢涡空泡数的尺度效应[J]. 上海交通大学学报(自然版), 2017, 51(3): 374-. |
[12] | 蒋一,孙寒冰,邹劲,杨东梅,胡安康. 变角度尾压浪板对断级滑行艇阻力性能的影响[J]. 上海交通大学学报(自然版), 2017, 51(3): 320-. |
[13] | 龚杰,郭春雨,张海鹏. 喷水推进船模旋转叶轮流场的数值分析[J]. 上海交通大学学报(自然版), 2017, 51(3): 326-. |
[14] | 刘晗a,马宁b,c,顾解忡b,c. 考虑侧壁效应修正的循环水槽船模斜航试验水动力计算[J]. 上海交通大学学报(自然版), 2017, 51(2): 142-. |
[15] | 罗少泽a, b, c, 马宁a, b, c, 平川嘉昭, 顾解忡a, b, c. 大型集装箱船拖曳水池敞开式风场中风阻试验与数值计算[J]. 上海交通大学学报, 2016, 50(03): 389-394. |
阅读次数 | ||||||
全文 |
|
|||||
摘要 |
|
|||||