首页> 外文会议>Offshore Technology Conference >The Single-Lift Vessel “Pieter Schelte”: Honoring the Past, Shaping the Future
【24h】

The Single-Lift Vessel “Pieter Schelte”: Honoring the Past, Shaping the Future

机译:单举船“ Pieter Schelte”:纪念过去,塑造未来

获取原文

摘要

This paper describes the building of a ship for single-lifting of very large topsides of offshore platforms.The ship’s layout and functioning was described in an earlier OTC paper (Heerema, E.P. 2012).The paper covered in detail the significance of a motion compensation system for rough seas, and thebenefits of single-lifting by removing the need to build up or remove topsides module by module. Thepaper also described the installation and removal methods for jackets, as well as the vessel’s pipelaysystem for application in the periods when there is insufficient heavy lifting work.This paper deals with the next step, the actual building of the vessel and her equipment, taking placelargely over the past two and a half years; the commissioning is planned to be completed by the end of2014.The concept behind Pieter Schelte is entirely novel, and such is the scale of the ship and her equipmentthat the building is a major challenge, but one that the shipyard and suppliers are presently coping withwell. Proven equipment is used in all elements, but the method of functioning is unprecedented.Pieter Schelte will have a topsides lifting capacity of 53,000 short tons (48,000 metric tons) and a jacketlifting capacity of 27,500 short tons (25,000 metric tons) (see figures 1 and 2).Her length will be 1253 feet (382 m) excluding lifting equipment protruding overboard, and her widthwill be 406 feet (124 m). For moving in around platform substructures, the width of the bow slot will be193 feet (59 m) (see figure 3).She will also be a pipelayer with a tensioner capacity of 2200 short tons (2000 metric tons), enablingher to lay heavy pipelines in shallow and deep water (see figure 4).
机译:本文介绍了用于单起重海上平台的巨大顶部的船舶建造。 该船的布局和功能已在较早的OTC论文(Heerema,E.P。2012)中进行了描述。 该文件详细介绍了运动补偿系统在波涛汹涌的大海中的重要性,以及 单举的好处是无需逐模块地堆积或移除顶部。这 论文还描述了夹套的安装和拆卸方法,以及船舶的管道铺设 在繁重的工作量不足的情况下使用该系统。 本文涉及下一步,即船舶及其设备的实际建造 在过去两年半的时间里;调试计划于年底完成 2014。 彼得·切尔特(Pieter Schelte)背后的概念完全是新颖的,这就是船舶的规模和她的设备 该建筑是一项重大挑战,但造船厂和供应商目前正在应对这一挑战 出色地。所有元件均使用经过验证的设备,但功能方法是空前的。 Pieter Schelte的顶部提升能力为53,000短吨(48,000公吨)和夹克 提升能力为27,500短吨(25,000公吨)(见图1和2)。 她的身高将为1253英尺(382 m)(不包括从舷外突出的起重设备),其宽度 将是406英尺(124 m)。为了在平台子结构中移动,弓形槽的宽度为 193英尺(59 m)(见图3)。 她还将是一名具有2200短吨(2000公吨)张紧器能力的吊管机, 她在浅水和深水中铺设沉重的管道(见图4)。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号