微潮河口的波浪强迫动力学

M. Brocchini, M. Postacchini, Lorenzo Melito, Eleonora Perugini, A. Manning, Joseph P. Smith, J. Calantoni
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引用次数: 0

摘要

微潮河口是动态环境,是许多强迫作用的结果。在水动力的观点下,河流、海浪和潮汐之间存在强烈的相互作用,它们之间的相互作用决定了特定的泥沙输运和形态模式。除了文献证据之外,信息还来自在米萨河研究地点进行的实地观测,米萨河是亚得里亚海(意大利)沿岸的一条微潮河,是长期监测的对象。黄河全长48公里,流域面积383平方公里,径流量约400立方米/秒,100年为一个周期。对河口的整体水动力、输沙和形态演化进行了分析,重点关注了河口涡流的产生、上游传播的各种波型(重力到潮汐)的影响、泥沙絮凝的作用、河床特征(河口坝和纵向近岸坝)的产生和演化等具体问题。数值模拟也用于阐明感兴趣的具体机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Wave-Forced Dynamics at Microtidal River Mouths
Microtidal river mouths are dynamic environments that evolve as a consequence of many forcing actions. Under the hydrodynamic viewpoint, river currents, sea waves and tides strongly interact, and their interplay determines specific sediment transport and morphological patterns. Beyond literature evidence, information comes from field observations made at the Misa River study site, a microtidal river along the Adriatic Sea (Italy), object of a long-going monitoring. The river runs for 48 km in a watershed of 383 km2, providing a discharge of about 400 m3/s for return periods of 100 years. The overall hydrodynamics, sediment transport and morphological evolution at the estuary are analyzed with particular attention to specific issues like: the generation of vortical flows at the river mouth, the influence of various wave modes (infragravity to tidal) propagating upriver, the role of sediment flocculation, the generation and evolution of bed features (river-mouth bars and longitudinal nearshore bars). Numerical simulations are also used to clarify specific mechanisms of interest.
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