| 10MW浮式风机平台系泊系统优化设计 |
| Optimal design of the mooring system for a 10MW floating wind turbine platform |
| 投稿时间:2025-06-01 修订日期:2025-11-19 |
| DOI: |
| 中文关键词: 浮式风机平台 系泊系统 运动响应 优化设计 |
| 英文关键词:Floating Wind Turbine Platform Mooring System Motion Response Optimal Design |
| 基金项目: |
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| 中文摘要: |
| 本文针对中国石油管道局自主设计研发的适用于10MW风机的浮式平台,利用势流软件ANSYS-AQWA的时域分析方法,研究不同浪向下平台的运动响应、系泊张力和预张力特性。并通过定量研究对不同导缆孔位置、不同系泊线夹角以及不同系泊线长度分析,探究其影响系泊系统的一般规律,最终提供一套满足API规范要求的10MW浮式风机平台系泊系统的优化方案。结果表明,不同系泊系统参数对平台的响应有显著的影响,合理选择系泊系统的参数可以大幅度改善平台的运动响应和系泊张力特性,从而有效增加平台的稳定性和安全性。 |
| 英文摘要: |
| This paper focuses on the floating platform designed and developed independently by China Petroleum Pipeline Engineering CO.,LTD for 10MW wind turbines. Using the time-domain analysis method of the potential flow software ANSYS-AQWA, the motion response, mooring tension, and pre tension characteristics of the platform under different waves are studied. Through quantitative research on different positions of cable guide holes, different angles of mooring lines, and different lengths of mooring lines, explore the general laws affecting the mooring system, and ultimately provide an optimized solution for the mooring system of a 10MW floating wind turbine platform that meets API specifications. The results indicate that different mooring system parameters have a significant impact on the response of the platform. Appropriate configuration of these parameters can significantly optimize the platform's motion response and enhance its mooring tension performance, thereby substantially increasing the platform's stability and safety. |
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