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首页> 外文期刊>Open Journal of Marine Science >Validation and Coupling of the SWAN Wave Prediction Model by WRF for the Persian Gulf
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Validation and Coupling of the SWAN Wave Prediction Model by WRF for the Persian Gulf

机译:WRF对波斯湾SWAN波浪预报模型的验证和耦合

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Generation of waves is affected by forces that exerted constantly in the oceans. The most obvious reason for the appearance of surface-waves is a process of interaction between atmosphere and sea surface that results in wind generation. Wave predictions are usually issued for a maximum of a few days for using in different fields such as shipping, fishing, oil industry, tourism, and to increase the safety of seafarers and beach habitants, maintaining economic assets and optimal utilization of natural resources. In this study, SWAN model has been run for this research over the Oman sea and the Persian Gulf. For implementation of SWAN, another dynamic model with prediction ability of 99-hours also has been used. In this example, wind field is obtained from the outputs of the WRF model converted to the required format for SWAN model. The computational network of SWAN model has been set to spatial grid points of 6 minutes with 1-hour temporal scale. Standard validation ways, including experimental verification, Multiplicative Bias, Mean Error and Root Mean Square Error are used in this study by comparing together for evaluation of accuracy of the model outputs. The results show that the prediction of wave heights by the model for 9 to 24-hour prediction could be the most accurate.
机译:波浪的产生受到海洋中不断施加的力的影响。出现表面波的最明显原因是大气与海面之间相互作用的过程,这导致了风的产生。波浪预报通常最多发布几天,以用于船运,渔业,石油工业,旅游业等不同领域,并提高海员和海滩居民的安全性,维护经济资产和对自然资源的最佳利用。在这项研究中,已经针对阿曼海和波斯湾进行了这项研究的SWAN模型。为了实施SWAN,还使用了具有99小时预测能力的另一个动态模型。在此示例中,从WRF模型的输出获得风场,该输出转换为SWAN模型所需的格式。 SWAN模型的计算网络已设置为1分钟时间范围内6分钟的空间网格点。本研究通过比较标准验证方法,包括实验验证,乘法偏差,均值误差和均方根误差,以评估模型输出的准确性。结果表明,该模型对9至24小时预报的波高预测可能是最准确的。

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