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FOW CoE:2024漂浮式海上风电产业动态电缆连接与拓扑结构比较分析报告(英文版)(37页).pdf

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1、 Author:Emily Sarveswaran Date:27/11/2024 Status:Public FLOATING OFFSHORE WIND CENTRE OF EXCELLENCE DYNAMIC CABLE CONNECTION AND TOPOLOGY COMPARISON Public Summary Report Public Summary Report 27-Nov-2024 ORE Catapult Public i PN000582-RPT-006 Rev 1 DISCLAIMER While the information contained in this

2、 report has been prepared and collated in good faith,ORE Catapult makes no representation or warranty(express or implied)as to the accuracy or completeness of the information contained herein,nor shall we be liable for any loss or damage,resultant from reliance on same.DOCUMENT HISTORY Revision Date

3、 Prepared by Checked by Approved by Revision History Rev 1 25/10 Emily Sarveswaran Charlotte Strang-Moran Jack Paterson First draft for Partner review Public Summary Report 27-Nov-2024 ORE Catapult Public ii PN000582-RPT-006 Rev 1 EXECUTIVE SUMMARY The Floating Offshore Wind(FOW)industry is explorin

4、g innovative cable topology and connection designs that diverge from traditional fixed-bottom offshore wind systems.The variety in cable array configurations,connector types,and subsea hub designs introduces new risks and opportunities.The FOW Centre of Excellence(CoE)project Cable Topology Comparis

5、on undertakes a high-level techno-economic study to evaluate the costs,risks,and opportunities associated with different cable topologies and connection methods.The project included failure mode,effects,criticality analysis(FMECA),and reliability,availability,and maintainability(RAM)methods to compa

6、re cable ancillary technologies and topologies.The study used assumptions identified through industry engagement and focused on 900 MW commercial-scale reference arrays for 66 kV and 132 kV cable designs at a water depth of 100 m.The estimated supply costs of traditional and emerging technologies ov

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本文是关于浮动式海上风电中心卓越项目(FOW CoE)的动态电缆连接和拓扑比较的公开摘要报告。报告主要内容包括: 1. 浮动式海上风电(FOW)行业正在探索创新的电缆拓扑和连接设计,以区别于传统的固定底座海上风电系统。 2. 项目对不同的电缆拓扑和连接方法进行了技术经济研究,评估了成本、风险和机会。 3. 研究包括故障模式、影响、严重性分析(FMECA)和可靠性、可用性和可维护性(RAM)方法,以比较电缆辅助技术和拓扑。 4. 研究使用行业参与确定的假设,专注于900MW商业规模参考阵列,用于66kV和132kV电缆设计,水深100米。 5. 研究结果以基线情景(66kV径向拓扑,常规连接,预端接设计)的百分比差异表示,未计算资本支出(CAPEX)、运营支出(OPEX)和能源平准化成本(LCoE)。 6. 研究识别了不同拓扑和技术的LCoE的关键发现,包括径向、环形、星形和鱼骨形拓扑,以及断开式I管和快速连接设计。 7. 研究强调了新兴技术采用和风险管理之间的关键平衡,突出了FOW系统的成本节约和可靠性提升潜力。
动态电缆连接技术如何影响浮式离岸风电场的成本和可靠性? 不同电缆拓扑结构对浮式离岸风电场的运营支出有何影响? 未来浮式离岸风电场电缆连接技术的发展趋势是什么?
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