首页> 外文期刊>Hydrology and Earth System Sciences >Evaluating seasonal hydrological extremes in mesoscale (pre-)Alpine basins at coarse 0.5 degrees and fine hyperresolution
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Evaluating seasonal hydrological extremes in mesoscale (pre-)Alpine basins at coarse 0.5 degrees and fine hyperresolution

机译:在粗略0.5度和精细的高级别均匀的中尺度(Pre-)高山盆地中的季节性水文极端评估季节性水文极端

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摘要

Hydrological models are being applied for impact assessment across a wide range of resolutions. In this study, we quantify the effect of model resolution on the simulated hydrological response in five mesoscale basins in the Swiss Alps using the distributed hydrological model Spatial Processes in Hydrology (SPHY). We introduce a new metric to compare a range of values resulting from a distributed model with a single value: the density-weighted distance (DWD). Model simulations are performed at two different spatial resolutions, matching common practices in hydrology: 500 m x 500 m matching regional-scale models, and 40 km x 40 km matching global-scale modeling. We investigate both the intra-basin response in seasonal stream-flow and evapotranspiration from the high-resolution model and the difference induced by the two different spatial resolutions, with a focus on four seasonal extremes, selected based on temperature and precipitation. Results from the high-resolution model show that the intra-basin response covers a surprisingly large range of anomalies and show that it is not uncommon to have both extreme positive and negative flux anomalies occurring simultaneously within a catchment. The intra-basin response was grouped by land cover, where different dominant runoff-generating processes are driving the differences between these groups. The low-resolution model failed to capture the diverse and contrasting response from the high-resolution model, since neither the complex topography nor land cover classes were properly represented. DWD values show that, locally, the hydrological response simulated with a high-resolution model can be a lot more extreme than a low-resolution model might indicate, which has important implications for global or continental scale assessments carried out at coarse grids of 0.5 degrees x 0.5 degrees or 0.25 degrees x 0.25 degrees resolution.
机译:水文模型正在应用于各种分辨率方面的影响评估。在本研究中,我们使用水文(SPHY)中的分布水文模型空间过程量化模型分辨率对模型解决的影响。我们介绍了一个新的指标,可以比较由单个值的分布式模型产生的一系列值:密度加权距离(DWD)。模型模拟在两种不同的空间分辨率下进行,匹配水文中的常见实践:500 M x 500米匹配区域规模模型,40公里×40公里匹配全球规模建模。我们研究了季节性流式流动的盆地内部响应,以及从高分辨率模型和两种不同的空间分辨率引起的差异,重点放在四个季节极端,根据温度和降水选择。高分辨率模型的结果表明,盆地内响应涵盖了令人惊讶的大范围的异常,并且表明在集水区内同时出现极端正和负助焊剂异常并不罕见。盆地内响应由陆地覆盖分组,其中不同的主要径流产生过程正在推动这些组之间的差异。低分辨率模型未能捕获高分辨率模型的多样化和对比响应,因为复杂地形和陆地覆盖类都没有正确地代表。 DWD值表明,本地,用高分辨率模型模拟的水文响应可能比低分辨率模型更为极端,这可能表明,这对全局或大陆尺度评估具有重要意义,在0.5度为0.5度的粗网格中进行x 0.5度或0.25度x 0.25度分辨率。

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