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Effects of self-attraction and loading at a regional scale: a test case for the Northwest European Shelf

机译:区域规模的自吸引和负荷效应:西北欧洲大陆架的一个测试案例

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The impact of the self-attraction and loading effect (SAL) in a regional 2D barotropic tidal model has been assessed, a term with acknowledged and well-understood importance for global models but omitted for boundary-forced, regional models, for which the implementation of SAL is non-trivial due to its non-local nature. In order to understand the impact of the lack of SAL effects in a regional scale, we have forced a regional model of the Northwest European Continental Shelf and the North Sea (continental shelf model (CSM)) with the SAL potential field derived from a global model (GTSM), in the form of a pressure field. Impacts have been studied in an uncalibrated setup and with only tidal forcing activated, in order to isolate effects. Additionally, the usually adopted simple SAL parameterization, in which the SAL contribution to the total tide is parameterized as a percentage of the barotropic pressure gradient (typically chosen 10%), is also implemented and compared to the results obtained with a full SAL computation. A significant impact on M2 representation is observed in the English Channel, Irish Sea and the west (UK East coast) and south (Belgian and Dutch Coast) of the North Sea, with an impact of up to 20 cm in vector difference terms. The impact of SAL translates into a consistent M2 amplitude and propagation speeds reduction throughout the domain. Results using the beta approximation, with an optimal domain-wide constant value of 1.5%, show a somewhat comparable impact in phase but opposite direction of the impact in amplitude, increasing amplitudes everywhere. In relative terms, both implementations lead to a reduction of the tidal representation error in comparison with the reference run without SAL, with the full SAL approach showing further impacted, improved results. Although the overprediction of tidal amplitudes and propagation speeds in the reference run might have additional sources like the lack of additional dissipative processes and non-considered bottom friction settings, results show an overall significant impact, most remarkable in tidal phases. After showing evidence of the SAL impact in regional models, the question of how to include this physical process in them in an efficient way arises, since SAL is a non-local effect and depends on the instantaneous water levels over the whole ocean, which is non-trivial to implement.
机译:已经评估了自我吸引和负荷效应(SAL)在区域2D正压潮汐模型中的影响,该术语对全球模型具有公认的且很容易理解的重要性,但对于边界强迫性区域模型则省略了该术语,由于SAL具有非本地性,因此它的重要性不小。为了了解缺乏SAL效应在区域范围内的影响,我们已将西北欧洲大陆架和北海的区域模型(大陆架模型(CSM))与来自全球压力场形式的模型(GTSM)。为了隔离影响,已经在未经校准的环境中研究了影响,并且仅激活了潮汐强迫。此外,还实现了通常采用的简单SAL参数化,其中将SAL对总潮汐的贡献参数化为正压梯度的百分比(通常选择10%),并将其与通过完整SAL计算获得的结果进行比较。在英吉利海峡,爱尔兰海和北海的西部(英国东海岸)和南海(比利时和荷兰海岸)中观察到了对M2表示的显着影响,矢量差值的影响最大为20 cm。 SAL的影响转化为在整个域中一致的M2幅度和传播速度降低。使用beta逼近的结果具有1.5%的最佳域范围内的恒定值,显示出相位上的影响有些可比,但幅度影响的方向相反,各处的幅度都增加了。相对而言,与没有SAL的参考运行相比,这两种实现方式都可以减少潮汐表示误差,而完整的SAL方法则显示出进一步的影响和改进的结果。尽管参考运行中对潮汐振幅和传播速度的高估可能会产生其他来源,例如缺乏额外的耗散过程和未考虑的底部摩擦设置,但结果显示出总体上显着的影响,在潮汐阶段最为显着。在显示出SAL对区域模型的影响的证据之后,出现了如何有效地将这种物理过程包括在其中的问题,因为SAL是一种非局部效应,取决于整个海洋的瞬时水位,这是实施起来很简单。

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