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Morphological coupling in multiple sandbar systems – a review

机译:多个沙洲系统中的形态耦合-回顾

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Subtidal sandbars often exhibit alongshore variable patterns, such as crescentic plan shapes and rip channels. While the initial formation of these patterns is reasonably well understood, the morphodynamic mechanisms underlying their subsequent finite-amplitude behaviour have been examined far less extensively. This behaviour concerns, among other aspects, the coupling of alongshore variable patterns in an inner bar to similar patterns in a more seaward bar, and the destruction of crescentic patterns. This review aims to present the current state of knowledge on the finite-amplitude behaviour of crescentic sandbars, with a focus on morphological coupling in double sandbar systems. In this context we include results from our recent study, based on a combination of remote-sensing observations, numerical modelling and data–model integration. Morphological coupling is an inherent property of double sandbar systems, where the inner bar may attain a type of morphology not found in single bar systems. Coupling is governed by water depth variability along the outer-bar crest and by various wave characteristics, including the offshore wave height and angle of incidence. In recent research, the role of the angle of wave incidence for sandbar morphodynamics has received more attention. Numerical modelling results have demonstrated that the angle of wave incidence is crucial to the flow pattern, sediment transport, and thus the emerging morphology of the coupled inner bar. Moreover, crescentic patterns predominantly vanish under high-angle wave conditions, highlighting the role of alongshore currents in straightening sandbars and challenging the traditional conception that crescentic patterns vanish under high-energy, erosive wave conditions only.
机译:潮下带沙洲经常表现出沿岸变化的格局,例如新月形的平面形状和河道。虽然这些模式的初始形成已得到相当充分的理解,但其后续有限振幅行为所基于的形态动力学机制却没有得到广泛研究。除其他方面外,这种行为还涉及到内条中的沿海可变模式与更靠海的条中的相似模式的耦合以及新月形模式的破坏。本文旨在介绍月牙形沙洲有限振幅行为的当前知识状态,重点是双沙洲系统中的形态耦合。在这种情况下,我们结合了基于遥感观测,数值模拟和数据模型集成的最新研究结果。形态耦合是双沙洲系统的固有属性,其中内部沙洲可能会达到单沙洲系统中未发现的形态。耦合受沿外顶峰的水深变化以及各种波浪特征(包括离岸波浪高度和入射角)的控制。在最近的研究中,波入射角对沙洲形态动力学的作用已受到越来越多的关注。数值模拟结果表明,波入射角对于流型,沉积物传输以及耦合的内杆的新兴形态至关重要。此外,新月形模式在高角度波浪条件下主要消失,突出了沿岸水流在拉直沙洲中的作用,并挑战了仅在高能侵蚀波条件下新月形模式消失的传统观念。

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