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Results from a full coupling of the HIRHAM regional climate model and the MIKE SHE hydrological model for a Danish catchment

机译:HIRHam区域气候模型与丹麦流域mIKE sHE水文模型完全耦合的结果

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摘要

A major challenge in the emerging research field of coupling of existing regional climate models (RCMs) and hydrology/land-surface models is the computational interaction between the models. Here we present results from a full two-way coupling of the HIRHAM RCM over a 4000 km × 2800 km domain at 11 km resolution and the combined MIKE SHE-SWET hydrology and land-surface models over the 2500 km2 Skjern River catchment. A total of 26 one-year runs were performed to assess the influence of the data transfer interval (DTI) between the two models and the internal HIRHAM model variability of 10 variables. DTI frequencies between 12 and 120 min were assessed, where the computational overhead was found to increase substantially with increasing exchange frequency. In terms of hourly and daily performance statistics the coupled model simulations performed less accurately than the uncoupled simulations, whereas for longer-term cumulative precipitation the opposite was found, especially for more frequent DTI rates. Four of six output variables from HIRHAM, precipitation, relative humidity, wind speed and air temperature, showed statistically significant improvements in root-mean-square error (RMSE) by reducing the DTI. For these four variables, the HIRHAM RMSE variability corresponded to approximately half of the influence from the DTI frequency and the variability resulted in a large spread in simulated precipitation. Conversely, DTI was found to have only a limited impact on the energy fluxes and discharge simulated by MIKE SHE.
机译:现有区域气候模型(RCM)与水文/土地-地表模型耦合的新兴研究领域中的主要挑战是模型之间的计算相互作用。在这里,我们介绍了在11 km分辨率下4000 km×2800 km域内的HIRHAM RCM的完整双向耦合以及在2500 km2 Skjern河流域上的MIKE SHE-SWET水文模型和地表模型的完整双向耦合结果。总共进行了26次为期一年的运行,以评估两个模型之间的数据传输间隔(DTI)以及10个变量的内部HIRHAM模型变异性的影响。评估了12到120分钟之间的DTI频率,发现计算开销随着交换频率的增加而大大增加。就小时和每日性能统计而言,耦合模型模拟的效果不如非耦合模拟,而长期累积降水则相反,尤其是对于更频繁的DTI速率而言。来自HIRHAM的六个输出变量中的四个(降水,相对湿度,风速和气温)通过减小DTI,显示出均方根误差(RMSE)的统计显着改善。对于这四个变量,HIRHAM RMSE的变异性大约相当于DTI频率影响的一半,而变异性导致模拟降水的大范围扩散。相反,发现DTI对MIKE SHE模拟的能量通量和放电仅具有有限的影响。

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