岸端船对船LNG加注的系泊布置及数值分析
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Mooring layout and numerical analysis for STS LNG bukering at berth
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    摘要:

    为研究液化天然气(LNG)加注船在非专用码头极限工况下旁靠装卸货船舶加注时的系泊稳定性问题,以3万m3?LNG加注船在集装箱码头加注1.4万TEU LNG双燃料集装箱船的船对船(STS)系泊系统为研究对象,提出一种岸端STS系泊解决方案,采用数值分析软件建立岸端STS耦合系泊模型对风、浪、流复合环境荷载作用下的船舶位移、系缆张力及碰垫受力进行数值仿真,预报全方向极限环境承载能力(临界风速/流速),并结合多种船型组合拓展分析,系统量化系缆预紧力对系泊性能的影响。结果表明,在标准集装箱码头环境条件下,该方案满足规范对LNG加注作业时的系泊稳定性要求;当预张力优化至系缆最小破断力的13%附近时,系缆峰值张力最低且船舶运动位移可衰减至无预张力工况的35%以下。

    Abstract:

    In view of the mooring stability of liquefied natural gas(LNG) bunkering vessels during alongside bukering of cargo ships at non-dedicated terminals under extreme conditions,the ship-to-ship (STS) mooring system for a 30,000 m3?LNG bunkering vessel and a 14,000 TEU LNG dual-fuel container ship at a container terminal is focused on.A shore-side STS mooring solution is proposed.A coupled shore-side STS mooring model is established by numerical analysis software to simulate vessel displacements,mooring line tensions,and fender forces under combined environmental loads (wind,waves,and current).The omnidirectional ultimate environmental load-bearing capacity (critical wind speed/current speed) is forecasted.Furthermore,the impact of mooring line pre-tension on mooring performance is systematically quantified through extended analyses involving various ship type combinations.The results demonstrate that under standard container terminal environmental conditions,this solution meets regulatory requirements for mooring stability during LNG bunkering operations.When the pre-tension is optimized to approximately 13% of the minimum breaking load of the mooring lines,the peak line tension is minimized,and vessel motion displacements can be reduced to below 35% of those observed in scenarios without pre-tension.

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胡士博.岸端船对船LNG加注的系泊布置及数值分析[J].水运工程,2025(12):81-87.

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  • 在线发布日期: 2025-12-19
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