Journal of Shanghai Jiaotong University ›› 2017, Vol. 51 ›› Issue (7): 831-839.doi: 10.16183/j.cnki.jsjtu.2017.07.010
Previous Articles Next Articles
CHENG Yong1,JI Chunyan1,LU Tingting1,ZHAI Gangjun2
Online:
2017-07-31
Published:
2017-07-31
Supported by:
CLC Number:
CHENG Yong1,JI Chunyan1,LU Tingting1,ZHAI Gangjun2. Nonlinear Numerical Investigation on the Interaction of
Focused Waves with Very Large Floating Structure[J]. Journal of Shanghai Jiaotong University, 2017, 51(7): 831-839.
Add to citation manager EndNote|Ris|BibTeX
URL: https://xuebao.sjtu.edu.cn/EN/10.16183/j.cnki.jsjtu.2017.07.010
[1]王志军, 李润培, 舒志. 箱式超大型浮体结构在不规则波中的水弹性响应[J]. 上海交通大学学报, 2001, 35(10): 14771480. WANG Zhijun, LI Runpei, SHU Zhi. Hydroelastic response of boxtyped very large floating structure in irregular waves[J]. Journal of Shanghai Jiao Tong University, 2001, 35(10): 14771480. [2]孙辉, 崔维成, 刘应中. 超大型浮体在二维不均匀底部上的水弹性响应[J]. 上海交通大学学报, 2003, 37(8): 11721175. SUN Hui, CUI Weicheng, LIU Yingzhong. Hydroelastic response of very large floating structures over 2D variable bottom[J]. Journal of Shanghai Jiao Tong University, 2003, 37(8): 11721175 [3]ZHAO C B, HAO X C, LIANG R F, et al. Influence of hinged conditions on the hydroelastic response of compound floating structures[J]. Ocean Eng, 2015, 101: 1224. [4]CHENG Y, ZHAI G J, OU J P. Timedomain numerical and experimental analysis of hydroelastic response of a very large floating structure edged with a pair of submerged horizontal plates[J]. Marine Struct, 2014, 39: 198224. [5]LIU X D, SAKAI S. Time domain analysis on the dynamic response of a flexible floating structure to waves[J]. J Eng Mech, 2002, 128(1): 4856. [6]KYOUNG J H, HONG S Y, KIM B W. FEM for time domain analysis of hydroelastic response of VLFS with fully nonlinear freesurface conditions[J]. Int J Offshore Polar, 2006,16(3): 168174. [7]MOOLLAZADEH M, KHANJANI M J, TAVAKOLI A. Applicability of the method of fundamental solutions to interaction of fully nonlinear water waves with a semiinfinite floating ice plate[J]. Cold Reg Sci Technol, 2011, 69(1): 5258. [8]MIRAFZALI F, TAVAKOLI A, MOLLAZADEH M. Hydroelastic analysis of fully nonlinear water waves with floating elastic plate via multiple knot Bsplines[J]. Appl Ocean Res, 2015, 51: 171180. [9]BALDOCK T E, SWAN C, TAYLOR P H. A laboratory study of nonlinear surface waves on water[J]. Phil Trans R Sco Lond A, 1996, 354(1707): 649676. [10]SHE K, GREATED C A, EASSIB W J. Experimental study of threedimensional wave kinematics[J]. Appl Ocean Res, 1997, 19: 329343. [11]李俊, 陈刚, 杨建民. 深水畸形波的实验室物理模拟[J]. 中国海洋平台, 2009, 24(3): 2225. LI Jun, CHEN Gang, YANG Jianmin. Simulation of deep water freak wave in laboratory[J]. China Offshore Platform, 2009, 24(3): 2225. [12]YONG C C, WU C H, KUO J T, et al. A higherorder σcoordinate nonhydrostatic model for nonlinear surface waves[J]. Ocean Eng, 2007, 34(10): 13571370. [13]TURNBULL M S, BORTHWICK A G L, EATOCK T R. Numerical wave tank based on a σtransformed finite element inviscid flow solver[J]. International Journal for Numerical Methods in Fluids, 2003, 42(6): 641663. [14]宁德志, 滕斌, 谭丽, 等. 完全非线性聚焦波浪的数值模拟[J].水科学进展, 2008, 19(6): 875881. NING Dezhi, TENG Bin, TAN Li et al. Numerical simulation of fully nonlinear focused wave groups[J]. Advances In Water Science, 2008, 19(6): 875881. [15]NING D Z, TENG B, EATOCK T R, et al. Numerical simulation of nonlinear regular and focused waves in an infinite waterdepth[J]. Ocean Eng, 2008, 35: 887899. [16]BAI W, TAYLOR R E. Fully nonlinear simulation of wave interaction with fixed and floating flared structures[J]. Ocean Eng, 2009, 36: 223236. [17]WALKER D A G, TAYLOR R E, TAYLOR P H, et al. Wave diffraction and neartrapping by a multicolumn gravitybased structure[J]. Ocean Eng, 2008, 35(2): 201229. [18]李金宣, 王占行, 柳淑学. 多向聚焦波浪作用下直立圆柱受力的试验研究[J]. 水动力学研究与进展, 2012, 27(4): 409416. LI Jinxuan, WANG Zhanhang, LIU Shuxue. Experimental study of impact force on a vertical cylinder in multidirectional focused wave[J]. Chinese Journal of Hydrodynamics, 2012, 27(4): 409416. [19]REDDY J N. An introduction to the finite element method[M]. 3rd ed. New York: McGrawHill; 2005. [20]SCHAFFER H A. Secondorder wavemaker theory for irregular waves[J]. Ocean Eng, 1996, 23(1): 4788. [21]NEWMAN J N. Wave effects on deformable bodies[J]. Appl Ocean Res, 1994, 16: 4759. |
[1] |
YANG Zhen,FU Zhuang,GUAN Enguang,XU Jiannan,TIAN Shihe,ZHENG Hui.
The Kinematic Analysis and Structure Optimization of MLattice Modular Robot [J]. Journal of Shanghai Jiaotong University, 2017, 51(10): 1153-1159. |
[2] |
ZHAO Jun1,YU Haidong2.
Dynamic Analysis of TwoLink Flexible Manipulators Based on the Absolute Nodal Coordinate Formulation [J]. Journal of Shanghai Jiaotong University, 2017, 51(10): 1160-1165. |
[3] |
ZHAO Ziren1,DU Shichang1,HUANG Delin1,REN Fei2,LIANG Xinguang2.
Modelling and Bottleneck Analysis of Product Quality in Transient Phase of MultiStage Manufacturing Systems Based on Markovian Chains [J]. Journal of Shanghai Jiaotong University, 2017, 51(10): 1166-1173. |
[4] |
HUANG Xuangui.
Algorithm for Relatively Small Planted Clique with Small Edge Probability [J]. Journal of Shanghai Jiaotong University, 2017, 51(10): 1202-1206. |
[5] |
LUO Jingjinga,YU Haidonga,ZHAO Chunzhanga,b,WANG Haoa,b.
Study on Motion Stability of Variable CrossSection Flexible Beams Based on the Absolute Nodal Coordinate Formulation [J]. Journal of Shanghai Jiaotong University, 2017, 51(10): 1174-1180. |
[6] |
WANG Yibo1,HUANG Yixiang1,LI Bingchu1,LING Xiao1 ZHAO Shuai1,LIU Chengliang1,ZHANG Daqing2.
An Improved Modal Simulation Method for Switched Reluctance Motor Based on Static PreComputation [J]. Journal of Shanghai Jiaotong University, 2017, 51(10): 1181-1188. |
[7] |
ZHOU Binghai,LI Ming.
Scheduling Method of Manufacturing Cells with Robot Restricted Processing [J]. Journal of Shanghai Jiaotong University, 2017, 51(10): 1214-1219. |
[8] |
CHEN Jinping1,ZHANG Shusheng1,HE Weiping1,WANG Mingwei1,HUANG Hui2.
Feasible Change Path Search and Optimization Method Based on Driving Parameter Modeling [J]. Journal of Shanghai Jiaotong University, 2017, 51(10): 1220-1227. |
[9] |
ZHOU Penghui,MA Hongzhan,CHEN Dongping,CHEN Mengyue,CHU Xuening.
Identification of Product Redesign Modules Based on Fuzzy Random Failure Mode and Effects Analysis [J]. Journal of Shanghai Jiaotong University, 2017, 51(10): 1189-1195. |
[10] |
PENG Cheng,ZHU Jianyun,CHEN Li.
Mode Transition for a Hybrid Electric Vehicle Based on Model Reference Control [J]. Journal of Shanghai Jiaotong University, 2017, 51(10): 1196-1201. |
[11] |
LIU Wei,YANG Chao .
A Study on Injection Mould Part Quotation Model Based on Back Propagation Neural Network [J]. Journal of Shanghai Jiaotong University, 2017, 51(10): 1207-1213. |
[12] | CHEN Suting,WANG Zhuo,WANG Qi. Aerial Scene Classification Based on Nonlinear Scale Space [J]. Journal of Shanghai Jiaotong University, 2017, 51(10): 1228-1234. |
[13] |
CHEN Ning,HE Xiaobin,GUI Weihua,YANG Chunhua.
Research on Image Encryption System Based on Chaotic Discrete Sequence [J]. Journal of Shanghai Jiaotong University, 2017, 51(10): 1273-1280. |
[14] | LIU Kaia,ZHANG Liminb,ZHOU Lijuna. Design of Random Restricted Boltzmann Machine Group [J]. Journal of Shanghai Jiaotong University, 2017, 51(10): 1235-1240. |
[15] |
ZHU Xinyao1,SONG Baowei2,XU Gang1,YANG Songlin1.
Research on Landing Strategy and Influencing Factors of an Autonomous Underwater Vehicle with Supporting Mechanism [J]. Journal of Shanghai Jiaotong University, 2017, 51(10): 1241-1251. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||