基于全设计船型的LNG码头设计技术
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LNG terminal design technology based on full design ship types
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    摘要:

    国内已建大型LNG码头设计船型舱容量大多在8万m3及以上,为满足装船需求,往往是在建设大型卸船泊位之外,另行建设小型装船泊位,或对现有大型卸船泊位进行改造以满足装船需求。针对建设现状,提出一种基于全船型的设计理念,使得码头能满足各等级LNG船的靠泊和作业要求,避免后期改造,同时可提高岸线资源利用率。通过对靠泊船型、平面布局、水工结构等方面的分析及研究,提出符合该理念的一种码头布置模式,工作平台采用梁板结构,其下方设置2座辅助靠船墩,并对靠船墩局部落低处理、新增系缆平台等,满足多种船型船岸匹配的要求。水工结构创新性地采用工作平台与辅助靠船墩脱离的形式,并在辅助靠船墩侧面设置辅助靠泊激光传感器及安装平台,解决了小型LNG船的靠泊问题。采用物理模型试验进行船舶稳泊安全专题论证,明确全船型的作业标准。

    Abstract:

    Domestic large-scale LNG terminal designs typically feature ship-type tank capacities of 80,000 m3 or more.To satisfy the loading requirements,it is common to construct small loading berths in addition to large unloading berths,or to retrofit existing large unloading berths to accommodate the loading needs.In response to this situation,a design concept based on all types of ships is proposed.The terminal can meet the berthing and operation requirements of LNG ships of all grades,avoid retrofitting in the later stage,and at the same time,improve the utilization rate of shore resources.Through analysis and research on aspects such as the types of berthed vessels,plan layout,and hydraulic structures,a terminal layout mode that conforms to this concept is proposed.The working platform adopts a beam-slab structure,with two auxiliary berthing dolphins set underneath.Partial lowering of the berthing dolphins is also carried out to add new mooring platforms,thus meeting the requirements for matching various types of vessels with the shore.The hydraulic structure innovatively adopts a form where the working platform is separated from the auxiliary ship berthing piers,and auxiliary berthing laser sensors and installation platforms are set on the side of the auxiliary ship berthing piers,solving the berthing problem of small LNG ships.Physical model tests are used to conduct a special argument on the safety of ship mooring,and the operation standards for all types of ships are clarified.

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叶小红,沈 瑜,周 娜.基于全设计船型的LNG码头设计技术[J].水运工程,2025(9):84-91.

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  • 在线发布日期: 2025-09-16
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