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Non-linear channel–shoal dynamics in long tidal embayments

机译:长潮潮中的非线性通道-浅滩动力学

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The dynamics of finite-amplitude bed forms in a tidal channel is studied with the use of an idealized morphodynamic model. The latter is based on depth-averaged equations for the tidal flow over a sandy bottom. The model considers phenomena on spatial scales of the order of the tidal excursion length. Transport of sediment mainly takes place as suspended load. The reference state of this model is characterized by a spatially uniform M_2 tidal current over a fixed horizontal bed. The temporal evolution of deviations from this reference state is governed by amplitude equations: these are a set of non-linear equations that describe the temporal evolution of bed forms. These equations are used to obtain new morphodynamic equilibria which may be either static or time-periodic. Several of these bottom profiles show strong similarity with the tidal bars that are observed in natural estuaries. The dependence of the equilibrium solutions on the value of bottom friction and channel width is investigated systematically. For narrow channels (width small compared to the tidal excursion length) stable static equilibria exist if bottom friction is slightly larger than r_(cr). For channel widths more comparable to the tidal excursion length, multiple stable steady states may exist for bottom friction parameter values below r_(cr). Regardless of channel width, stable time-periodic equilibria seem to emerge as the bottom friction is increased.
机译:使用理想的形态动力学模型研究了潮汐通道中有限幅床形式的动力学。后者基于深度平均方程,用于沙底上的潮流。该模型考虑了潮汐偏移量级的空间尺度上的现象。沉积物的运输主要以悬浮物的形式发生。该模型的参考状态的特征是固定水平床上的空间均匀M_2潮流。偏离此参考状态的时间演变由振幅方程式控制:这是一组非线性方程式,描述了床形的时间演变。这些方程式用于获得新的态动力平衡,该态可以是静态的也可以是时间周期性的。这些底部轮廓中的一些显示出与在自然河口中观察到的潮汐条非常相似。系统地研究了平衡解对底部摩擦力值和通道宽度的依赖性。对于窄通道(宽度小于潮汐偏移长度),如果底部摩擦力稍大于r_(cr),则存在稳定的静态平衡。对于更接近潮汐偏移长度的通道宽度,对于底部摩擦参数值低于r_(cr)的情况,可能存在多个稳定稳态。无论通道宽度如何,随着底部摩擦的增加,似乎会出现稳定的时间周期平衡。

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