Comparison of Dynamic Response in a 2MW Floating Offshore Wind Turbine During Typhoon Approaches

Koji Tanaka, I. Sato, T. Utsunomiya, H. Kakuya
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引用次数: 1

Abstract

In this paper, we describe the analysis of the dynamic response of a 2 MW floating offshore wind turbine (FOWT) at the time of typhoon attack in the actual sea area. In order to introduce floating offshore wind turbine in Asia, it is essential to evaluate the influence of typhoon attack accurately. This FOWT, named HAENKAZE is the only FOWT to operate commercially in areas where typhoons occur. On July 3rd, 2018, the strongest typhoon (Prapiroon) at the installed area of the FOWT since its installation approached the HAENKAZE. The central atmospheric pressure of the typhoon at the closest time was 965 hPa, the maximum instantaneous wind speed at the hub height was 52.2 m/s, and the maximum wave height was 7.1 m. In this paper, the dynamic response of the floating body at the time of typhoon attack is compared for the measured and the simulated values. As a result of the comparison, basically a good agreement has been obtained between the measured and the simulated values except for yaw response, for which the simulated values considerably overestimate the measured values.
台风逼近时2MW浮式海上风电机组动力响应比较
本文对实际海域一台2mw浮式海上风电机组在台风来袭时的动力响应进行了分析。为了在亚洲引进浮式海上风力发电机组,准确评估台风袭击的影响至关重要。这个名为HAENKAZE的风力机是唯一在台风发生地区进行商业运营的风力机。2018年7月3日,自安装以来,FOWT安装区域最强台风(“普拉皮龙”)逼近HAENKAZE。台风最近时刻中心气压为965 hPa,轮毂高度最大瞬时风速为52.2 m/s,最大波高为7.1 m。本文对台风来袭时浮体的动力响应进行了实测值与模拟值的比较。通过比较,除了偏航响应的模拟值明显高估了实测值外,实测值与模拟值基本吻合。
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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