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首页> 外文期刊>Journal of Geophysical Research, C. Oceans: JGR >Coupled dynamics of interfacial waves and bed forms in fluid muds over erodible seabeds in oscillatory flows
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Coupled dynamics of interfacial waves and bed forms in fluid muds over erodible seabeds in oscillatory flows

机译:振荡流中易蚀海床上流体泥浆中界面波和床形的耦合动力学

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摘要

Recent field investigations of the damping of ocean surface waves over fluid muds have revealed waves on the interface between the thin layer of fluid mud and the overlying much thicker column of clear water, accompanied by bed forms on the erodible seabed beneath the fluid mud. The frequencies and wavelengths of the observed interfacial waves are qualitatively consistent with the linear dispersion relationship for long interfacial waves, but the forcing mechanism is not known. To understand the forcing, a linear model is proposed, based on the layer-averaged hydrostatic equations for the fluid mud, together with the Meyer-Peter-Mueller equation for the sediment transport within the underlying seabed, both subject to oscillatory forcing by the surface waves. If the underlying seabed is nonerodible and flat, the model indicates parametric instability to interfacial waves, but the threshold for instability is not met by the observations. If the underlying seabed is erodible, the model indicates that perturbations to the seabed elevation in the presence of the oscillatory forcing create interfacial waves, which in turn produce stresses within the fluid mud that force a net transport of sediment within the seabed toward the bed form crests, thus causing growth of both bed forms and interfacial waves. The frequencies, wavelengths, and growth rates are in qualitative agreement with the observations. A competition between mixing created by the interfacial waves and gravitational settling might control the thickness, density, and viscosity of the fluid muds during periods of strong forcing.
机译:最近对流体泥浆上的海洋表面波的阻尼进行的野外研究表明,在流体泥浆薄层与上层较厚的清水柱之间的界面上存在波,并伴有在流体泥浆下易蚀海床上的床层。观察到的界面波的频率和波长在质量上与长界面波的线性色散关系一致,但是强迫机制尚不清楚。为了理解强迫,提出了一个线性模型,该模型基于流体泥浆的平均层静水力方程,以及底层海床内泥沙运移的Meyer-Peter-Mueller方程,均受到地表的振荡强迫波浪。如果下面的海床不可侵蚀且平坦,则该模型表明界面波的参数不稳定性,但观测值不能满足不稳定性的阈值。如果下面的海床是易蚀的,则该模型表明,在存在振荡强迫的情况下,对海床标高的扰动会产生界面波,从而在流体泥浆中产生应力,迫使海床内的沉积物向床层净迁移。波峰,从而导致床层和界面波的增长。频率,波长和增长率与观测结果在质量上一致。由界面波产生的混合与重力沉降之间的竞争可能会在强力作用期间控制泥浆的厚度,密度和粘度。

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