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首页> 外文期刊>IEEE Journal of Oceanic Engineering >Kinematics and Statistics of Breaking Waves Observed Using SWIFT Buoys
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Kinematics and Statistics of Breaking Waves Observed Using SWIFT Buoys

机译:使用SWIFT浮标观测到的破碎波的运动学和统计数据

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Surface wave instrumentation floats with tracking were deployed by helicopter ahead of five large storms off the Oregon coast. The buoys drifted freely with the wave motions, surface currents, and wind. The buoys use a 9-DoF inertial measurement unit that fuses the measurements of accelerometers, magnetometers, and gyroscopes to measure acceleration in the global North-West-Up reference frame. Rapid sampling (25  Hz) allows for the observation of both propagating wave motions and wave breaking events. Bulk wave parameters and wave spectra are calculated from the motion of the buoys using conventional methods, and breaking wave impacts are identified in the raw acceleration data using a new algorithm based on a short-time Fourier transform. The number of breaking waves is used to infer breaker fraction, which is found to depend on bulk wave steepness as previously shown in the literature. The magnitude and duration of acceleration during breaking is used in a new quantification of breaker intensity, which increases with wave height, period, and steepness. There is significant variance of breaker intensity in a given wave field, such that intense breakers still occur in relatively mild wave fields. The buoy observations are compared to the output of the WaveWatch III forecast model, with evaluation of an empirical breaker prediction scheme applied to WaveWatch III output.
机译:在俄勒冈州沿海五场大风暴之前,直升飞机部署了具有跟踪功能的表面波仪表浮标。浮标随着波浪运动,地表电流和风的作用而自由漂移。浮标使用一个9自由度惯性测量单元,该单元将加速度计,磁力计和陀螺仪的测量结果融合在一起,以测量整体North-West-Up参考系中的加速度。快速采样(25 Hz)允许观察传播的波运动和破波事件。使用常规方法从浮标的运动中计算体波参数和波谱,并使用基于短时傅立叶变换的新算法在原始加速度数据中识别破波冲击。如先前文献中所示,使用破碎波的数量来推断破碎锤的分数,发现破碎锤的分数取决于体波陡度。破碎过程中加速度的大小和持续时间用于破碎强度的新量化中,该强度随波高,周期和陡度而增加。在给定的波场中,断路器的强度存在明显的差异,因此在相对温和的波场中仍会出现强烈的断路器。将浮标观测值与WaveWatch III预测模型的输出进行比较,并评估适用于WaveWatch III输出的经验性破碎锤预测方案。

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