FLOATING OFFSHORE TURBINES - INSTALLATION METHODS

A. Crowle
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Abstract

Floating offshore wind turbines are a possible source of large scale electricity. Fabrication and offshore installation design of these large floating structures is required to provide confidence to developers and insurers that they are constructed in a safe and cost effective manner. The design methods developed in this paper cover the substructure types such as Spars, semi submersibles, barges and TLPs. The engineering of mooring types includes catenary, taut and tension, plus turret mooring.This paper details the preparation of engineering requirements for installation vessels and large onshore cranes used for the shipyard construction of substructures for floating wind. Each installation phase, for a floating offshore wind turbine, raises issues regarding existing construction methods and the need to develop revised installation works.The engineering processes include mooring installation and connection. In addition consideration of load-out analysis, ocean transportation analysis including sea-fastening, intact stability and tow motion response. Installation analysis is required for lifting, up-ending, afloat construction, and cable lay methods.Floating offshore wind turbines are offering a new approach to using marine resources and this paper will provide information on how naval engineering can be used to promote this development.
浮式海上涡轮机 - 安装方法
海上浮动风力涡轮机是一种可能的大规模电力来源。需要对这些大型浮动结构进行制造和海上安装设计,以便为开发商和保险公司提供信心,确保其建造安全且成本效益高。本文开发的设计方法涵盖下层结构类型,如 Spars、半潜式、驳船和 TLP。系泊类型的工程设计包括导管系泊、绷紧系泊和张力系泊,以及转塔系泊。本文详细介绍了用于浮式风电下部结构船厂建造的安装船和大型陆上起重机的工程设计要求。浮式海上风力涡轮机的每个安装阶段都会产生与现有施工方法有关的问题,并需要对安装工程进行修订。此外,还要考虑装载分析、海洋运输分析,包括海上固定、完好稳定性和拖曳运动响应。浮式海上风力涡轮机提供了一种利用海洋资源的新方法,本文将介绍如何利用海军工程来促进这一发展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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