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Predicting Large Ocean Wave Events Characterized by Bimodal Energy Spectra in the Presence of a Low-Level Southerly Wind Feature

机译:在低水平南风风调特征存在下预测具有双峰能谱的大海浪事件

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Three large wave events are simulated with Wave Watch III using different wind inputs and physics packages. The modeled output, including spectral shape and bulk parameter time series, are compared with National Data Buoy Center buoy observations offshore of Newport, Oregon. The atmospheric conditions that generate these large waves include a strong southerly wind along with a distant cyclone. The energetic contributions of these simultaneously occurring atmospheric features result in a wave field characterized by bimodal energy spectra for two events and unimodal energy spectra for the third event. The analysis of model output evaluates bulk parameter time series of significant wave height, mean period, and mean wave direction derived from partitioned energy spectra. A consistent underestimation in wave energy approaching from the southwestern direction is found for the output associated with all model configurations. This wave energy is generated by the southerly wind. An overestimation in swell energy approaching from the northwest is also found for all model configurations. The model configuration that most accurately reproduces the southerly wave energy results in the best performance for the overall bulk parameters.
机译:使用不同的风输入和物理包使用Wave Watch III模拟了三个大波事件。与俄勒冈州纽波特海上的国家数据浮标中心浮标观测进行比较,包括光谱形状和散装参数时间序列。产生这些大浪的大气条件包括强大的横向风,以及远处的旋风。这些同时出现的大气特征的能量贡献导致具有双峰能谱的波场,用于三个事件的两个事件和单峰能谱。模型输出分析评估了从分区能谱导出的显着波高,平均波浪方向的体积参数时间序列。找到了从西南方向接近的波能量的一致低估,用于与所有模型配置相关联的输出。这种波能量由南风风产生。对于所有模型配置,也发现了从西北部接近的膨胀能量的高估。最精确地再现窗口波能量的模型配置导致整个批量参数的最佳性能。

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