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Wave hindcast in the North Pacific area considering the propagation of surface disturbances

机译:考虑表面扰动传播的北太平洋地区波后播

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Ocean surface waves in the North Pacific area are affected by storm winds. It is necessary to consider the movement of storms to predict waves. The impact of a time interpolation method for winds that considers the propagation of surface disturbances on ocean wave prediction from 2005 to 2006 in the North Pacific area is demonstrated. It is possible to interpolate surface winds, even when there are multiple cyclones and anticyclones moving in different directions at different distances. This method will be useful for wind fields with increasing amounts of spatial information. The predicted wave heights and periods from the linearly interpolated winds and the winds predicted using this new method are compared with in-situ observations from several moored buoys. The predicted wave heights are also compared with those from several drifting buoys in the northwestern Pacific. The improvement of the wave height and period prediction is evident in the case where the difference in the predicted wave parameters between the linear interpolation and the present method is large. The improvement of the wave height and period prediction is statistically significant at more than 95% in most cases. It is shown that the wave height and period prediction can be improved by improving the time interpolation method; however, the improvement of the wave direction prediction is not evident.
机译:北太平洋地区的海面波受到暴风的影响。必须考虑风暴的运动来预测波浪。证明了考虑到地面扰动传播的时间插值法对北太平洋地区2005年至2006年海浪预测的影响。即使有多个旋风和反旋风沿不同的方向以不同的距离移动,也可以对表面风进行插值。此方法对于具有越来越多的空间信息的风场很有用。将线性插值风的预测波高和周期以及使用此新方法预测的风与来自多个系泊浮标的原位观测值进行比较。还将预测的波高与西北太平洋几个浮标的波高进行了比较。在线性插值与本方法之间的预测波参数差异较大的情况下,波高和周期预测的改善是明显的。在大多数情况下,波高和周期预测的改善在统计上都显着高于95%。结果表明,通过改进时间插值方法可以提高波高和周期预测。但是,波方向预测的改进并不明显。

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