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Climate Evaluation of a High-Resolution Regional Model over the Canary Current Upwelling System

机译:金丝雀流上升系统高分辨率区域模型的气候评估

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Coastal upwelling systems are very important from the socioeconomic point of view due to their high productivity, but they are also vulnerable under changing climate. The impact of climate change on the Canary Current Upwelling System (CCUS) has been studied in recent years by different authors. However, these studies show contradictory results on the question whether coastal upwelling will be more intense or weak in the next decades. One of the reasons for this uncertainty is the low resolution of climate models, making it difficult to properly resolve coastal zone processes. To solve this issue, we propose the use of a high-resolution regional climate coupled model. In this work we evaluate the performance of the regional climate coupled model ROM (REMO-OASIS-MPIOM) in the influence zone of the CCUS as a first step towards a regional climate change scenario downscaling. The results were compared to the output of the global Max Planck Institute Earth System Model (MP1-ESM) showing a significant improvement.
机译:从社会经济的角度来看,沿海上升流系统由于其高生产率而非常重要,但在气候变化的情况下也很脆弱。近年来,不同的作者研究了气候变化对金丝雀流上升系统(CCUS)的影响。但是,这些研究在接下来的几十年中海岸上升趋势会更强还是更弱的问题上显示出矛盾的结果。这种不确定性的原因之一是气候模型的分辨率低,使得难以正确解决沿海地区的过程。为了解决这个问题,我们建议使用高分辨率的区域气候耦合模型。在这项工作中,我们评估了CCUS影响区的区域气候耦合模型ROM(REMO-OASIS-MPIOM)的性能,这是朝着缩小区域气候变化情景规模迈出的第一步。将结果与全球最大的普朗克研究所地球系统模型(MP1-ESM)的输出进行了比较,显示出明显的改进。

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