国家高新技术企业
杭州市西湖区优秀创新人才“325”计划入选单位
杭州市高层次人才项目

18668047932    pg2020365

chinasupport@papergoing.com

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China Ocean Engineering

ISSN: 0890-5487

官网: http://link.springer.com/journal/13344

出版商: Springer

Description:

China Ocean Engineering integrates new research concepts, equipment, technology, materials and structures and other scientific advances within the field of estuarial, coastal, offshore, and deep water engineering with particular reference to developments. The Journal is concerned with all engineering aspects involved in the exploration and utilization of ocean resources. Topics regularly covered include research, design and construction of structures (including wharfs, dikes, breakwaters, platforms, mooring systems, etc.), instrumentation/testing (physical model and numerical model), wave dynamics, sedimentation, structural/stress analysis, soil mechanics, and material research. China Ocean Engineering is a publication of Chinese Ocean Engineering Society.

Title Scholar cited Year Review Cycle Accept Cycle
Development of a depth-integrated longshore current model with unstructured grids

Authors:Chao Chen (陈 超),Qing-he Zhang (张庆河)

Keywords:longshore current,numerical model,unstructured grids,surface roller,horizontal mixing

DOI:10.1007/s13344-016-0046-2

Received:2014-07-18 ; Revised:2015-05-08 ; Accepted:2015-06-20 ; Online:2016-10-09

- 2016 9.3 11.2
Prediction of short-term distributions of load extremes of offshore wind turbines

Authors:Ying-guang Wang (王迎光)

Keywords:extreme responses,monopile-supported,offshore wind turbine,peak over threshold method,optimal threshold level,variance-to-mean ratio,generalized Pareto distribution,maximum spacing estimation

DOI:10.1007/s13344-016-0055-1

Received:2014-12-24 ; Revised:2015-08-10 ; Accepted:2015-10-26 ; Online:2016-09-29

- 2016 7.2 10.2
Model of shipping noise in the deep water: Directional density and spatial coherence functions

Authors:Peng Xiao (肖 鹏),Kun-de Yang (杨坤德),Bo Lei (雷 波)

Keywords:shipping noise,dual-horned structure,Von Mises distribution,directional density,spatial coherence

DOI:10.1007/s13344-016-0037-3

Received:2014-07-11 ; Revised:2015-03-12 ; Accepted:2015-05-18 ; Online:2016-08-13

- 2016 7.7 10.4
Dynamic analysis of turret-moored FPSO system in freak wave

Authors:You-gang Tang (唐友刚),Yan Li (李 焱),Bin Wang (王 宾),Shu-xiao Liu (刘树晓),Long-huan Zhu (朱龙欢)

Keywords:turret-moored FPSO,freak wave,phase modulation,internal turret,couple dynamic analysis

DOI:10.1007/s13344-016-0032-8

Received:2015-01-30 ; Revised:2015-03-31 ; Accepted:2015-06-12 ; Online:2016-08-13

- 2016 1.5 4.4
An oscillating wave energy converter with nonlinear snap-through Power-Take-Off systems in regular waves

Authors:Xian-tao Zhang (张显涛),Jian-min Yang (杨建民),Long-fei Xiao (肖龙飞)

Keywords:wave energy,power-take-off,snap-through,time domain equation,state space,dynamic response

DOI:10.1007/s13344-016-0035-5

Received:2014-02-17 ; Revised:2015-02-06 ; Accepted:2015-04-18 ; Online:2016-08-13

- 2016 11.3 14.2
Response analysis of tension-based tension leg platform under irregular waves

Authors:D. S. Bhaskara Rao,R. Panneer Selvam

Keywords:Tension-Based Tension Leg Platform,irregular waves,time domain response,response amplitude operators,spectrum,statistics,coupled analysis

DOI:10.1007/s13344-016-0038-2

Received:2013-11-28 ; Revised:2014-12-27 ; Accepted:2015-02-20 ; Online:2016-08-13

- 2016 12.7 15
Sensitivity analysis of air gap motion with respect to wind load and mooring system for semi-submersible platform design

Authors:Fa-li Huo (霍发力),Yan Nie (聂 焱),De-qing Yang (杨德庆),Gang Dong (董 刚),Jin Cui (崔 锦)

Keywords:mooring system,air gap,semi-submersible platform,radiation damping,viscous drag

DOI:10.1007/s13344-016-0033-7

Received:2014-05-12 ; Revised:2014-11-25 ; Accepted:2015-02-05 ; Online:2016-08-13

- 2016 6.1 9
Numerical and experimental studies on the effect of axial spacing on hydrodynamic performance of the hybrid CRP pod propulsion system

Authors:Ying Xiong (熊 鹰),Ke Zhang (张 可),Zhan-zhi Wang (王展智),Wan-jiang Qi (齐万江)

Keywords:hybrid CRP pod propulsion system,axial spacing,hydrodynamic performance,numerical simulation,experimental study

DOI:10.1007/s13344-016-0040-8

Received:2014-10-13 ; Revised:2015-02-11 ; Accepted:2015-04-18 ; Online:2016-08-13

- 2016 3.6 6.2
Connection technology of HPTO type WECs and DC nano grid in island

Authors:Kun-lin Wang (王坤林),Lian-fang Tian (田联房),Ya-ge You (游亚戈),Xiao-hong Wang (王孝洪),Song-wei Sheng (盛松伟),Ya-qun Zhang (张亚群),Yin Ye (叶 寅)

Keywords:wave energy converter,hydraulic power take-off,hydraulic power generation system,interleaved boost converter,nano grid

DOI:10.1007/s13344-016-0036-4

Received:2015-02-03 ; Accepted:2015-05-12 ; Online:2016-08-13

- 2016 2.6 3.3
Comparison and modification: TVD schemes for scalar transport on an unstructured grid

Authors:Zhuo Zhang (张 卓),Zhi-yao Song (宋志尧),Fei Guo (郭 飞),Dong Zhang (张 东),Yong-ning Wen (温永宁),Di Hu (胡 迪)

Keywords:TVD scheme,unstructured grid,vertex-centered FVM,flux limiter,r-factor

DOI:10.1007/s13344-016-0039-1

Received:2014-04-15 ; Revised:2015-03-13 ; Accepted:2015-05-18 ; Online:2016-08-13

- 2016 10.6 13.3