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首页> 外文期刊>Climate dynamics >Dynamical downscaling of unforced interannua! sea-level variability in the North-West European shelf seas
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Dynamical downscaling of unforced interannua! sea-level variability in the North-West European shelf seas

机译:揭露uncerannua的动态俯卧撑!西北欧洲货物海洋的海平变异性

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摘要

Variability of Sea-Surface Height (SSH) from ocean dynamic processes is an important component of sea-level change. In this study we dynamically downscale a present-day control simulation of a climate model to replicate sea-level variability in the Northwest European shelf seas. The simulation can reproduce many characteristics of sea-level variability exhibited in tide gauge and satellite altimeter observations. We examine the roles of lateral ocean boundary conditions and surface atmospheric forcings in determining the sea-level variability in the model interior using sensitivity experiments. Variability in the oceanic boundary conditions leads to uniform sea-level variations across the shelf. Atmospheric variability leads to spatial SSH variability with a greater mean amplitude. We separate the SSH variability into a uniform loading term (change in shelf volume with no change in distribution), and a spatial redistribution term (with no volume change). The shelf loading variance accounted for 80% of the shelf mean total variance, but this drops to similar to 60% around Scotland and in the southeast North Sea. We analyse our modelled variability to provide a useful context to coastal planners and managers. Our 200-year simulation allows the distribution of the unforced trends (over 4-21 year) of sea-level changes to be quantified. We found that the 95th percentile change over a 4-year period can lead to coastal sea-level changes of similar to 58 mm, which must be considered when using smooth sea level projections. We also found that simulated coastal SSH variations have long correlation length-scales, suggesting that observations of interannual sea-level variability from tide gauges are typically representative of 200 km of the adjacent coast. This helps guide the use of tide gauge variability estimates.
机译:海洋动态过程的海面高度(SSH)的可变性是海平变化的重要组成部分。在这项研究中,我们动态地降低了气候模型的当今控制模拟,以复制西北欧洲货物海洋的海平变异性。模拟可以再现潮汐计和卫星高度计观测中展出的海平变异性的许多特征。我们研究横向海域边界条件和表面大气强调在使用敏感性实验中确定模型内部的海平变异性的作用。海洋边界条件的可变性导致架子上的均匀海平变化。大气变异性导致空间SSH变异性,具有更大的平均幅度。我们将SSH可变性分成均匀的加载项(在没有变化的架子卷的变化)和空间再分配项(没有体积变化)。货架加载方差占架子的80%均值总方差,但这种落后于苏格兰和东南北海的60%。我们分析了我们建模的可变性,为沿海规划者和经理提供了一个有用的背景。我们的200年模拟允许量化的海平趋势(超过4-21岁)的海平趋势分配。我们发现,在4年期间的第95百分位数可能导致沿海海平面变化与58毫米相似,必须在使用平滑的海平面预测时考虑。我们还发现,模拟沿海SSH变化具有长的相关长度尺度,表明从潮汐仪表的际海平变异性的观察通常代表邻近海岸的200公里。这有助于指导使用潮汐仪表变异性估计。

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