Experimental Study on Coordinated Heading Control of Four Vessels Moored Side by Side

IF 1.4 4区 工程技术 Q3 ENGINEERING, MECHANICAL Transactions of FAMENA Pub Date : 2021-05-19 DOI:10.21278/TOF.451013720
Yun-Ho Kim, D. Jung, H. Song, Y. Won, D. Jung
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Abstract

A floating type liquefied natural gas (LNG) bunkering terminal has been under development in Korea since 2014; the terminal is designed to receive LNG from an LNG carrier (LNGC) and transfer it to two other LNG bunkering shuttles (LNGBS) simultaneously. The operational feasibility of the LNG loading and unloading processes has been confirmed. When four vessels are moored side by side with mooring ropes and fenders, their positions must be maintained within the designed allowable criteria. In addition, the floating bunkering terminal (FLBT) has its own mooring system, an internal turret with catenary mooring lines and stern tunnel thrusters to maintain its own position and control the vessel heading. In this study, we investigated the operational feasibility of the FLBT during the LNG loading and unloading operations with four vessel mooring configurations and heading controls. A series of model tests was done in the ocean engineering basin of the Korea Research Institute of Ships and Ocean engineering. The motion responses of the four vessels were determined using an optical measurement system, and the tensile loads on shipto-ship mooring ropes and the compressive loads on ship-to-ship fenders were measured using one-axis load cells. A white noise test was done and the results were compared with the numerical results for the purpose of validation. Then, four combined environmental conditions were presented both without heading control and with several heading control cases. Finally, we determined the available safe bunkering heading ranges taking into account the tensile loads on the mooring ropes.
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四船并排停泊协调航向控制实验研究
自2014年以来,韩国一直在开发浮动式液化天然气(LNG)加油站;该接收站被设计为接收来自液化天然气运输船(LNGC)的液化天然气,并将其同时转移到另外两个液化天然气加注穿梭机(LNGBS)。液化天然气装卸工艺的操作可行性已得到证实。当四艘船用系泊绳索和挡泥板并排系泊时,它们的位置必须保持在设计允许标准范围内。此外,浮动加油码头(FLBT)有自己的系泊系统、带悬链线系泊缆的内部炮塔和船尾通道推进器,以保持自己的位置并控制船只航向。在本研究中,我们调查了FLBT在液化天然气装卸操作期间的操作可行性,该操作具有四种船舶系泊配置和航向控制。在韩国船舶和海洋工程研究所的海洋工程盆地进行了一系列模型试验。使用光学测量系统确定了四艘船的运动响应,并使用单轴称重传感器测量了船对船系泊绳索上的拉伸载荷和船对船挡泥板上的压缩载荷。为了验证,进行了白噪声测试,并将结果与数值结果进行了比较。然后,提出了四种没有航向控制和有几种航向控制情况的组合环境条件。最后,我们确定了可用的安全加油航向范围,考虑到系泊缆上的拉伸载荷。
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来源期刊
Transactions of FAMENA
Transactions of FAMENA 工程技术-材料科学:综合
CiteScore
2.20
自引率
30.80%
发文量
15
审稿时长
>12 weeks
期刊介绍: The journal publishes research and professional papers in the following fields: Aerospace Engineering; Automotive Engineering; Biomechanics; Energetics; Engineering Design; Experimental Methods; Industrial Engineering; Machine Tools and Machining; Materials Science; Mathematical Modelling and Simulation; Mechanical Design; Mechanics & Fluid Mechanics; Nanotechnology; Naval Architecture; Numerical Methods; Process Planning; Quality Assurance; Robotics & Mechatronics; Thermodynamics.
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