首页> 外文会议>OCEANS 2009, MTS/IEEE Biloxi - Marine Technology for Our Future: Global and Local Challenges >Improved mooring line technology for tankers and gas carriers at exposed berths
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Improved mooring line technology for tankers and gas carriers at exposed berths

机译:改进了裸露泊位的油轮和气体运输船的系泊缆技术

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Fixed-pier berths for tankers and gas carriers are now sometimes installed and operated in locations exposed to waves and swell. In these conditions, the moored vessel can experience large motions which overload and fatigue mooring lines. Tails are short lengths of synthetic fiber rope which are placed in series with the vessel's winch-mounted wires to decrease mooring line stiffness and thus to reduce peak line loads and fatigue due to vessel motions. Past guidelines for conventional tankers and berths recommended the use of 1 lm long nylon tails on mooring lines. Those guidelines were developed many years ago when tankers were relatively small and when fixed-pier berths were located in protected harbors. But when such short nylon tails are used on large vessels at exposed berths, the mooring loads are high and the nylon tails tend to fatigue quickly and fail. Tension Technology International (TTI) recently conduced a study to investigate these problems and make recommendations for mooring lines and tails for use on modern large tankers and gas carriers, especially at exposed locations. The study assessed how waves influence vessel motions and line tensions and how tail length and material influence mooring line loads and fatigue. New recommendations were prepared for tail length and material for use at berths where vessel motions are significant. Large vessels can accommodate longer tail, and longer tail length decreases mooring line stiffness thus and reduces peak mooring line loads. Polyester rope is suffer than nylon, but longer polyester tails can achieve loads similar to short nylon tails. In some situations, polyester tails should be preferred, as that material has much better fatigue performance than nylon, especially in wet condition. Many vessels now use HMPE fiber rope mooring lines instead of wires. These HMPE mooring lines are essentially the same size and as strong as the wires they replace. They are much lighter and easier to handle and thus help cr-ew safety. They are not as stiff as wire rope and thus reduce peak mooring line loads. The recommendations of this study are now published in mooring guidelines and used by tanker and gas-carrier operators.
机译:现在,有时在波涛汹涌的地方安装和操作油轮和气体运输船的固定码头泊位。在这种情况下,停泊的船只可能会经历较大的运动,从而使系泊缆绳过载和疲劳。尾巴是短长度的合成纤维绳,与船用绞盘安装的钢丝串联放置,以减少系泊缆绳的刚度,从而减少峰值缆绳载荷和由于船舰运动而造成的疲劳。过去的常规油轮和泊位指南建议在系泊缆绳上使用1 lm长的尼龙尾巴。这些准则是多年前制定的,当时油轮相对较小,固定码头泊位位于受保护的港口。但是,当将这样短的尼龙尾巴用于裸露泊位的大型船舶上时,系泊负载很高,并且尼龙尾巴往往会迅速疲劳而失效。 Tension Technology International(TTI)最近进行了一项研究,以调查这些问题,并为在大型大型油轮和气体运输船上使用的系泊缆绳和尾部提出建议,尤其是在裸露的位置。这项研究评估了波浪如何影响船只的运动和绳索张力,以及尾部的长度和材料如何影响系泊绳索的负载和疲劳。为船尾的长度和材料准备了新的建议,以用于船只运动明显的泊位。大型船只可以容纳更长的尾巴,更长的尾巴长度会降低系泊绳的刚度,从而降低系泊绳的峰值载荷。涤纶绳比尼龙绳受苦,但较长的涤纶绳可以达到与尼龙绳短绳相似的载荷。在某些情况下,应首选聚酯尾翼,因为这种材料的疲劳性能比尼龙好得多,尤其是在潮湿条件下。现在,许多船只使用HMPE纤维绳系泊缆代替缆索。这些HMPE系泊缆的尺寸基本相同,强度与它们所替代的缆线一样强。它们更轻巧,更易于操作,因此有助于 安全。它们不如钢丝绳那么坚硬,因此可以减少系泊缆的峰值载荷。该研究的建议现已发布在系泊指南中,并已由油轮和气体运输船运营商使用。

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