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Which complexity of regional climate system models is essential for downscaling anthropogenic climate change in the Northwest European Shelf?

机译:对于缩小西北欧洲大陆架的人为气候变化规模而言,区域气候系统模型的哪种复杂性至关重要?

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Climate change impact studies for the Northwest European Shelf (NWES) make use of various dynamical downscaling strategies in the experimental setup of regional ocean circulation models. Projected change signals from coupled and uncoupled downscalings with different domain sizes and forcing global and regional models show substantial uncertainty. In this paper, we investigate influences of the downscaling strategy on projected changes in the physical and biogeochemical conditions of the NWES. Our results indicate that uncertainties due to different downscaling strategies are similar to uncertainties due to the choice of the parent global model and the downscaling regional model. Downscaled change signals reveal to depend stronger on the downscaling strategy than on the model skills in simulating present-day conditions. Uncoupled downscalings of sea surface temperature (SST) changes are found to be tightly constrained by the atmospheric forcing. The incorporation of coupled air-sea interaction, by contrast, allows the regional model system to develop independently. Changes in salinity show a higher sensitivity to open lateral boundary conditions and river runoff than to coupled or uncoupled atmospheric forcings. Dependencies on the downscaling strategy for changes in SST, salinity, stratification and circulation collectively affect changes in nutrient import and biological primary production.
机译:西北欧洲大陆架(NWES)的气候变化影响研究在区域海洋环流模型的实验设置中利用了各种动态降尺度策略。来自具有不同域大小的耦合和非耦合降尺度的预计变化信号,并迫使全球和区域模型显示出很大的不确定性。在本文中,我们研究了降尺度策略对西北西北地区的物理和生物地球化学条件预计变化的影响。我们的结果表明,由于不同的降尺度策略而导致的不确定性与由于选择母公司全局模型和降尺度区域模型而引起的不确定性相似。在模拟当前情况时,缩减的变化信号显示出更依赖于缩减策略,而不是模型技能。发现海面温度(SST)变化的不成比例的缩减受到大气强迫的严格限制。相比之下,结合海-海相互作用,可以使区域模型系统独立发展。盐度的变化显示出对开放的侧向边界条件和河流径流的敏感性高于对耦合或不耦合的大气强迫的敏感性。对SST,盐度,分层和环流变化的降尺度策略的依赖共同影响养分进口和生物初级生产的变化。

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