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首页> 外文期刊>Hydrology and Earth System Sciences >Surface seiches in Flathead Lake
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Surface seiches in Flathead Lake

机译:弗拉特黑德湖的地表景观

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Standing surface waves or seiches are inherent hydrodynamic features of enclosed water bodies. Their two-dimensional structure is important for estimating flood risk, coastal erosion, and bottom sediment transport, and for understanding shoreline habitats and lake ecology in general. In this work, we present analysis of two-dimensional seiche characteristics in Flathead Lake, Montana, USA, a large intermountain lake known to have high seiche amplitudes. To examine spatial characteristics of different seiche modes, we used the original procedure of determining the seiche frequencies from the primitive equation model output with subsequent derivation of the spatial seiche structure at fixed frequencies akin to the tidal harmonic analysis. The proposed procedure revealed specific seiche oscillation features in Flathead Lake, including maximum surface level amplitudes of the first fundamental mode in straights around the largest island; several higher modes appearing locally in the vicinity of the river inflow; the 'Helmholtz' open harbor mode, with the period approximately twice that of the longest seiche mode, generated by a large shallow bay connected to the main lake basin; and several rotating seiche modes potentially affecting the lake-wide circulation. We discuss lake management problems related to the spatial seiche distribution, such as shoreline erosion, floods, and transport of sediments and invasive species in Flathead Lake.
机译:驻波或围堤是封闭水体固有的水动力特征。它们的二维结构对于估计洪水风险,海岸侵蚀和底部沉积物的运输,以及总体上了解海岸线生境和湖泊生态非常重要。在这项工作中,我们目前对美国蒙大纳州弗拉特黑德湖的二维湿地特征进行分析,这是一个大型山间湖,已知具有很高的湿地振幅。为了检查不同Seiche模式的空间特征,我们使用了从原始方程模型输出确定Seiche频率的原始程序,随后推导了固定潮汐结构,即潮汐谐波分析法,确定了空间Seiche结构。拟议的程序揭示了弗拉特黑德湖的特定的seiche振荡特征,包括最大岛屿周围的笔直处的第一基本模式的最大水平面振幅;在河流入水口附近局部出现了几种更高的模式; “ Helmholtz”开放式港口模式,其周期约为最长的seiche模式的两倍,该周期是由连接至主要湖盆的大型浅湾产生的;以及几种旋转的seiche模式可能会影响整个湖泊的环流。我们讨论与空间seiche分布相关的湖泊管理问题,例如海岸线侵蚀,洪水以及Flathead湖中沉积物和入侵物种的运输。

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