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Wind Profiles and Wave Spectra for Potential Wind Farms in South China Sea. Part II: Wave Spectrum Model

机译:南海潜在风电场的风廓线和波谱。第二部分:波谱模型

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摘要

Along with the commercialization of offshore wind energy in China, the South China Sea has been identified as ideal for constructing offshore wind farms, especially for farms consisting of floating wind turbines over deep waters. Since the wind profiles and wave spectra are somewhat primitive for the design of an offshore wind turbine, engineering models describing the wind and wave characteristics in the South China Sea area are necessary for the offshore wind energy exploitation given the meteorological, hydrological, and geographical differences between the South China Sea and the North/Norwegian Sea, where the commonly used wind profile and wave spectrum models were designated. In the present study; a series of numerical simulations were conducted to reveal the wave characteristics in the South China Sea under both typhoon and non-typhoon conditions. By analyzing the simulation results; the applicability of the Joint North Sea Wave Project (JONSWAP) spectrum model; in terms of characterizing the wind-induced wave fields in the South China Sea; was discussed. In detail; the key parameters of the JONSWAP spectrum model; such as the Phillips constant; spectral width parameter; peak-enhancement factor, and high frequency tail decay; were investigated in the context of finding suitable values.
机译:随着中国海上风力发电的商业化,南海被认为是建设海上风力发电场的理想选择,特别是对于由深水上的漂浮式风力涡轮机组成的风力发电场。由于风廓线和波谱对于海上风力涡轮机的设计有些原始,因此,鉴于气象,水文和地理差异,描述南海地区风浪特征的工程模型对于海上风能的开发是必要的位于南中国海和北/挪威海之间,指定了常用的风廓线和波谱模型。在目前的研究中;进行了一系列数值模拟,揭示了在台风和非台风条件下南中国海的波浪特征。通过分析仿真结果;联合北海浪计划(JONSWAP)频谱模型的适用性;在表征南中国海的风浪场方面;进行了讨论。详细; JONSWAP频谱模型的关键参数;例如菲利普斯常数;光谱宽度参数峰值增强因子和高频尾部衰减;在寻找合适的值的背景下进行了调查。

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