船舶与海洋工程

液压吊力缓冲系统在“世越号”打捞工程中的作用评估

  • 姚宗 ,
  • 王伟平 ,
  • 蒋岩 ,
  • 陈世海
展开
  • (交通运输部 上海打捞局,上海 200090)
姚宗*(1982 – ),男,高级工程师,E-mail:yz@coes.cn.

收稿日期: 2017-08-09

  修回日期: 2017-09-29

  网络出版日期: 2017-09-29

基金资助

上海打捞局韩国“世越号”打捞工程(R023).

Functional verification of hydraulic tension buffer system in SEWOL salvage project

  • YAO Zong ,
  • WANG Wei-ping ,
  • JIANG Yan ,
  • CHEN Shi-hai
Expand
  • (Shanghai Salvage Company, Ministry of Transport of the People's Republic of China, Shanghai 200090,China)

Received date: 2017-08-09

  Revised date: 2017-09-29

  Online published: 2017-09-29

摘要

为降低起吊钢丝绳内峰值拉力,实现复杂海况下利用双驳船抬吊打捞“世越号”,设计液压吊力缓冲系统,并评估其应用于双驳船打捞工程中的作用.以三个船体(双驳船、“世越号”)为研究对象,分别用模拟计算及模型试验方法研究其在不同提升高度及不同海况下的耦合运动特性.模拟计算采用边界元法,计算出多体水动力特性参数,并建立整体耦合响应计算模型.利用模型试验结果对水动力特性参数进行矫正,获得非常准确的整体耦合响应计算模型.基于该模型进行静态和动态时域的计算,并对比有、无液压吊力缓冲系统两种情况下的结果.比较结果表明:模拟计算结果与水池模型试验结果吻合度较高,该数值模型具有较高可靠性;液压吊力缓冲系统可使静态吊力分布更均匀,降低最大动态吊力,可达到在“世越号”打捞工程中的设计作用.

本文引用格式

姚宗 , 王伟平 , 蒋岩 , 陈世海 . 液压吊力缓冲系统在“世越号”打捞工程中的作用评估[J]. 大连海事大学学报, 2018 , 44(1) : 48 -58 . DOI: 10.16411/j.cnki.issn1006-7736.2018.01.008

Abstract

In order to reduce the peak tension in the hoisting steel rope and to salvage the SEWOL by using the double barges under the complicated sea conditions, the hydraulic tension buffer system was designed, and its function in salvage project of double barges was evaluated. The features of coupling motion with three hulls (double barges/SEWOL) were respectively studied by numerical simulation and experimental analysis under different lifting heights and different sea conditions. The multi-body hydrodynamic characteristic parameters were calculated by using boundary element method, and system coupled response simulation model was set up. The hydrodynamic characteristic parameters were calibrated by model test results to significantly increase the accuracy of the overall coupled response simulation model. Based on that model, both static and dynamic time domain simulation were conducted, and simulation results of two conditions (with or without hydraulic tension buffer system) were compared. Results show that numerical simulation analysis results coincide with model test well, which indicate that the numerical model has higher reliability. The hydraulic tension buffer system can improve evenness of static sling tension distribution effectively, and reduce maximum dynamic lifting force, which achieve the design function in SEWOL salvage project.

参考文献

[1]张伟,蔄耀辉.高效的沉船打捞技术分析[J].液压气动与密封,2014(10):56 – 59.
ZHANG Wei,MAN Yao-hui.Analysis of efficient wreck salvage technology[J].Hydraulics Pneumatics & Seals,2014(10):56 – 59.(in Chinese)
[2]ALBERS P.Motion control in offshore and dredging[M].Netherlands:Springer Netherlands,2010:278 – 281.
[3]CHEN X B.Hydrodynamic analysis for offshore LNG terminals[C]//Proceedings of the 2nd Offshore Hydrodynamics Symposium.Rio de Janeiro,Brazil:[s.n.],2005.
[4]WAMIT Inc.Version 7.1 Wamit user manual.USA:WAMIT Inc.,2015.
[5]Bureau Veritas.Hydrostar for experts user manual[S].France:Research Department Bureau Veritas Press,2016.
[6]孙明,刘培林,孙丽萍,等.深海安装中多浮体作业的水动力分析[J].水动力学研究与进展A辑,2011,26(3):351 – 358.
SUN Ming,LIU Pei-lin,SUN Li-ping,et al.Hydrodynamic analyzing of multi-body operation in deepwater installation[J].Chinese Journal of Hydrodynamics,2011,26(3):351 – 358.(in Chinese)
[7]LEE C H,NEWMAN J N.Computation of wave effects using the panel method[M]//Numerical models in fluid-structure interaction.Southhampton:WIT Press,2004.
[8]Bentley Systems,Inc.Reference manual for MOSES[R/OL].2015.http://bentley.ultramarine.com/hdesk/document/ref_man.htm.
[9]赵文华,杨建民,胡志强,等.FLNG系统进行旁靠卸载作业时的水动力性能研究[J].船舶力学,2012,16(11):1248 – 1256.
ZHAO Wen-hua,YANG Jian-min,HU Zhi-qiang,et al.Research on hydrodynamics of an FLNG system in side-by-side operation[J].Journal of Ship Mechanics,2012,16(11):1248 – 1256.(in Chinese)
[10]许鑫,李欣,杨建民.半潜式起重船浮吊作业的数值模拟与模型试验[J].船舶力学,2014,18(7):799 – 808.
XU Xin,LI Xin,YANG Jian-min.Numerical and experimental analysis for lifting of a semi-submersible crane vessel[J].Journal of Ship Mechanics,2014,18(7):799 – 808.(in Chinese)
[11]肖龙飞,杨建民,姚美旺.浮式生产储油轮诱导软刚臂系泊系统的动力响应[J].上海交通大学学报,2007,41(2):162 – 167.
XIAO Long-fei,YANG Jian-min,YAO Mei-wang.The numerical simulation on dynamic response of soft yoke mooring system due to FPSO motions[J].Journal of Shanghai Jiao Tong University,2007,41(2):162 – 167.(in Chinese)

文章导航

/