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Field data-based evaluation of methods for recovering surface wave elevation from pressure measurements

机译:基于现场数据的压力测量方法恢复表面波高程的方法评估

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摘要

We compare different methods to reconstruct the surface elevation of irregular waves propagating outside the surf zone from pressure measurements at the bottom. The traditional transfer function method (TFM), based on the linear wave theory, predicts reasonably well the significant wave height but cannot describe the highest frequencies of the wave spectrum. This is why the TFM cannot reproduce the skewed shape of nonlinear waves and strongly underestimates their crest elevation. The surface elevation reconstructed from the TFM is very sensitive to the value of the cutoff frequency. At the individual wave scale, high-frequency tail correction strategies associated with this method do not significantly improve the prediction of the highest waves. Unlike the TFM, the recently developed weakly-dispersive nonlinear reconstruction method correctly reproduces the wave energy over a large number of harmonics leading to an accurate estimation of the peaked and skewed shape of the highest waves. This method is able to recover the most nonlinear waves within wave groups which some can be characterized as extreme waves. It is anticipated that using relevant reconstruction method will improve the description of individual wave transformation close to breaking.
机译:我们比较了不同的方法,以根据底部的压力测量值来重建在海浪区域外传播的不规则波的表面高度。基于线性波理论的传统传递函数方法(TFM)可以很好地预测有效波高,但无法描述波谱的最高频率。这就是为什么TFM无法再现非线性波的偏斜形状并强烈低估其波峰高度的原因。从TFM重构的表面高度对截止频率的值非常敏感。在单个波浪尺度上,与此方法关联的高频尾部校正策略不能显着改善最高波浪的预测。与TFM不同,最近开发的弱分散非线性重建方法可以在大量谐波上正确地重现波能量,从而可以准确估计最高波的峰形和偏斜形状。这种方法能够恢复波群中最非线性的波,其中一些可以被描述为极端波。可以预期,使用相关的重建方法将改善对接近破碎的单个波变换的描述。

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