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首页> 外文期刊>Journal of Waterway, Port, Coastal and Ocean Engineering >Laboratory Study of Low-Frequency Waves Induced by Random Gravity Waves on Sloping Beaches
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Laboratory Study of Low-Frequency Waves Induced by Random Gravity Waves on Sloping Beaches

机译:倾斜海滩上随机重力波引起的低频波的室内研究

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摘要

Low-frequency waves induced by the shoaling of random gravity waves (the primary waves) on sloping beaches were studied experimentally. Incident primary waves with a Pierson-Moskowitz (PM) spectrum were mechanically generated at a water depth of 0.7 m and propagated toward beaches with three different slopes (1/20, 1/30, and 1/40) in separate experiments. Four wave conditions with significant wave heights ranging from 0.078 to 0.125 m were used. The time series of surface elevations were simultaneously recorded at various water depths along the beach. Low-frequency waves were obtained from the data with a low-pass filter. Our results show that the spectra of low-frequency waves on beaches are dramatically changed by the beach slope and the wave height of incident primary waves. The cross-correlation of low-frequency waves with the surface-elevation envelope of the primary waves shows that the incident bound long waves are dominant. Free low-frequency waves propagate in the offshore direction with very low amplitudes due to high energy dissipation on the beach. The energy ratio between the low-frequency and the primary waves in the shoaling region outside the surf zone strongly correlates to the local surface skewness. For a given water depth, the low-frequency wave energy is proportional to m_0~(3/2), where m_0 is the primary wave energy, in agreement with the field observations.
机译:实验研究了倾斜海滩上随机重力波(初级波)产生的低频波。在单独的实验中,在0.7 m的水深处机械地产生了具有Pierson-Moskowitz(PM)光谱的入射主波,并向具有三个不同坡度(1 / 20、1 / 30和1/40)的海滩传播。使用了四种波状条件,其波高范围在0.078至0.125 m之间。在沿海滩的不同水深处,同时记录了地面高程的时间序列。使用低通滤波器从数据中获得低频波。我们的结果表明,海滩上的低频波频谱会因海滩的坡度和入射初级波的波高而发生显着变化。低频波与初级波的表面高程包络线的互相关表明,入射束缚长波是主要的。由于海滩上的高能量耗散,自由的低频波以非常低的幅度沿近海方向传播。冲浪区外的浅滩区中低频和初级波之间的能量比与局部表面偏斜度密切相关。对于给定的水深,低频波能量与m_0〜(3/2)成正比,其中m_0是一次波能量,与野外观测一致。

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