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首页> 外文期刊>Continental Shelf Research: A Companion Journal to Deep-Sea Research and Progress in Oceanography >Evaluation of different wind resources in simulating wave height for the Bohai, Yellow, and East China Seas (BYES) with SWAN model
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Evaluation of different wind resources in simulating wave height for the Bohai, Yellow, and East China Seas (BYES) with SWAN model

机译:渤海,黄色和华东(BYES)模拟渤海(BYES)对不同风力资源的评价

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摘要

The performance of seven wind resources in simulating the significant wave height (H-s) for the Bohai, Yellow, and East China Seas (BYES) was evaluated with a numerical wave model (Simulating WAves Nearshore, SWAN) for the year 2016. The model outputs were carefully compared with coastal oceanic station data and altimeter observations. Most wind fields can deliver good wave simulations in our study area. The fifth generation atmospheric reanalysis of the European Centre for Medium-Range Weather Forecasts (ERA5) performs the best in the coastal region, while Cross-Calibrated Multi-Platform version 2 (CCMPv2) performs the best in the inner region. Through presenting the wave model performance/wind field quality as a function of sea state/wind condition, we revealed that the positive/negative bias of lower/higher wind speed in the forcing wind field is highly correlated to the overestimation/underestimation of lower/higher H-s in the simulation results. In addition, the SWAN model with default settings tends to increase the negative biases in the resulting H-s. A conclusion related to all wind fields is that the wave model performance is generally better in the south than in the north, reaching the best in the South Yellow Sea, followed by the East China Sea, North Yellow Sea, and Bohai Sea. Further analysis indicated that the relatively poor wind field quality of low wind speeds directly results in larger simulation errors for lower wave heights. Meanwhile, the northern sea areas are dominated by lower wave heights, thereby leading to the poorer wave simulations here.
机译:在2016年的数值波模型(模拟波浪近岸,天鹅)评估了七种风资源在模拟渤海,黄色和东海(BYES)的显着波浪高度(HS)。模型输出与沿海海洋站数据和高度计观察进行了仔细比较。大多数风场都可以在我们的研究区提供良好的波浪模拟。欧洲中距离预测中心(ERA5)的第五代大气分析(ERA5)在沿海地区执行了最佳,而交叉校准的多平台版本2(CCMPv2)在内部区域执行最佳。通过呈现波模型性能/风场质量作为海态/风条件的函数,我们透露,迫使风场中较低/较高风速的正/负偏差与低估/低估的尺度/低估仿真结果中的较高HS。此外,具有默认设置的SWAN模型倾向于增加所得H-S中的负偏差。与所有风领域相关的结论是,波浪模型的性能在南方比北方往往更好,达到南黄海中最好的,其次是东海,北黄海和渤海。进一步的分析表明,低风速的风场质量相对较差直接导致较大的较低波浪高的模拟误差。同时,北海地区以较低波浪高度为主导,从而导致这里的较差的波模拟。

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