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Development of a Numerical Model for Simulating Morphodynamic Processes Driven by Tides and Waves at Coastal Inlets

机译:沿海地区潮汐和波浪模拟形态学过程的数值模型的开发

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This paper presents an integrated computational modeling system for simulating tide, storm waves, short wave-induced nearshore currents, wind effects, sediment transport, and morphodynamic processes in coastal zones including coastal inlets and structures (e.g., jetties). An advanced implicit solution scheme has been developed to solve the two-dimensional shallow water equations for simulating coastal hydrodynamics with multiple temporal and spatial scales driven by combined tide, short wave, and wind forcing. This new scheme was then integrated into the Surfacewater Modeling System (SMS). Preliminary numerical investigation of the morphological changes around the coastal inlet has shown that this coastal modeling system is efficient and robust, and can be generally applicable to simulate morphodynamic processes driven by tides and waves in coastal and estuarine zones with structures.
机译:本文介绍了用于模拟潮汐,风暴波,短波诱导的沿海电流,风效,沉积物运输和形态学过程的综合计算建模系统,包括沿海地区,包括沿海入口和结构(例如,码头)。已经开发出一种先进的隐式解决方案方案来解决模拟沿海流体动力学的二维浅水方程,其具有由组合潮汐,短波和风力强制驱动的多个时间和空间尺度。然后将该新方案集成到Supertupater建模系统(SMS)中。沿海入口周围的形态学变化的初步数值研究表明,这种沿海建模系统是高效且稳健的,并且通常适用于模拟由沿海和河口区域的潮汐和波浪在具有结构的潮汐和波浪驱动的形态学过程。

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