考虑二阶波浪力的风浪能张力腿平台运动分析

H. Kim, Eun-hong Min, Sanghwan Heo, W. Koo
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引用次数: 2

摘要

海上风能已经成为一种主要的能源,各种研究正在进行中,以提高浮动海上风力涡轮机(FOWT)的经济可行性。本文分析了组合风波能平台的波致运动特性,以减小能量提取的可变性。开发了用户子程序,并结合ANSYS-AQWA水动力程序进行了时域数值分析。提出了一种结合tlp型fot和wavestar型波能转换器(WEC)的平台。分析了平台在二阶波载荷作用下的各运动响应、WEC附着和PTO力的影响。并对不同安装位置的系缆张力进行了分析。由于二阶和频波载荷的作用,单个FOWT的垂直运动增加了约3倍。WEC的PTO力对组合平台起到垂直运动阻尼作用。入射波方向前方系泊线的张力主要受平台俯仰的影响,位于平台侧面的系泊线主要受平台起伏的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Motion Analysis of A Wind-Wave Energy TLP Platform Considering Second-order Wave Forces
: Offshore wind energy has become a major energy source, and various studies are underway to increase the economic feasibility of floating offshore wind turbines (FOWT). In this study, the characteristics of wave-induced motion of a combined wind-wave energy platform were analyzed to reduce the variability of energy extraction. A user subroutine was developed, and numerical analysis was performed in connection with the ANSYS-AQWA hydrodynamic program in the time domain. A platform combining the TLP-type FOWT and the Wavestar-type wave energy converter (WEC) was proposed. Each motion response of the platform on the second-order wave load, the effect of WEC attachment and Power take-off (PTO) force were analyzed. The mooring line tension according to the installation location was also analyzed. The vertical motion of a single FOWT was increased approximately three times due to the second-order sum-frequency wave load. The PTO force of the WEC played as a vertical motion damper for the combined platform. The tension of the mooring lines in front of the incident wave direction was dominantly affected by the pitch of the platform, and the mooring lines located at the side of the platform were mainly affected by the heave of the platform.
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