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首页> 外文期刊>Journal of Physical Oceanography >Numerical Simulation of Sea Surface Directional Wave Spectra under Hurricane Wind Forcing
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Numerical Simulation of Sea Surface Directional Wave Spectra under Hurricane Wind Forcing

机译:飓风强迫作用下海面方向波谱的数值模拟

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Numerical simulation of sea surface directional wave spectra under hurricane wind forcing was carried out using a high-resolution wave model. The simulation was run for four days as Hurricane Bonnie (1998) approached the U.S. East Coast. The results are compared with buoy observations and NASA Scanning Radar Altimeter (SRA) data, which were obtained on 24 August 1998 in the open ocean and on 26 August when the storm was approaching the shore. The simulated significant wave height in the open ocean reached 14 m, agreeing well with the SRA and buoy observations. It gradually decreased as the hurricane approached the shore. In the open ocean, the dominant wavelength and wave direction in all four quadrants relative to the storm center were simulated very accurately. For the landfall case, however, the simulated dominant wavelength displays noticeable overestimation because the wave model cannot properly simulate shoaling processes. Direct comparison of the model and SRA directional spectra in all four quadrants of the hurricane shows excellent agreement in general. In some cases, the model produces smoother spectra with narrower directional spreading than do the observations. The spatial characteristics of the spectra depend on the relative position from the hurricane center, the hurricane translation speed, and bathymetry. Attempts are made to provide simple explanations for the misalignment between local wind and wave directions and for the effect of hurricane translation speed on wave spectra.
机译:利用高分辨率波模型对飓风强迫作用下的海面定向波谱进行了数值模拟。当邦妮飓风(1998)接近美国东海岸时,模拟进行了四天。将结果与浮标观测值和NASA扫描雷达高度计(SRA)数据进行了比较,这些数据是在1998年8月24日在公海和8月26日风暴接近海岸时获得的。在公海中模拟的有效波高达到14 m,与SRA和浮标观测值非常吻合。随着飓风接近海岸,它逐渐减少。在公海中,非常精确地模拟了相对于风暴中心的所有四个象限中的主波长和波方向。但是,对于着陆情况,模拟的主波长显示出明显的高估,因为波动模型不能正确地模拟浅滩过程。直接比较飓风的所有四个象限中的模型和SRA方向光谱,通常显示出极好的一致性。在某些情况下,与观测值相比,该模型生成的频谱更平滑且方向扩展范围更窄。光谱的空间特征取决于距飓风中心的相对位置,飓风平移速度和测深法。试图为局部风向和波向之间的不对准以及飓风平移速度对波谱的影响提供简单的解释。

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