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Alpine foreland running drier? Sensitivity of a drought vulnerable catchment to changes in climate, land use, and water management

机译:阿尔卑斯岛前陆跑步干燥机? 干旱脆弱集水区对气候,土地利用和水管理变化的敏感性

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Southeastern Austria as part of the southeastern Alpine forelands experiences an increase of temperature and a tendency of decreasing precipitation. Especially in summer, the temperature strongly increased by about 0.7 A degrees C per decade since the 1970s. Drought vulnerability under climate change is therefore a key question in this region. Here, we address this question by exploring the hydrological sensitivity of the Raab catchment in Austria (area 987 km(2)), a typical catchment in these Alpine forelands. Using the process-oriented Water Flow and Balance Simulation Model (WaSiM) over 1982-2011, we focus on low-flow conditions during extended summer (May-September) and analyze the catchment's runoff sensitivity to climate change, but also land use and water management change. We find that climate change drivers dominate the summertime runoff response (decrease & 40/& 70%), based on moderate and strong climate change cases in the region (temperature + 2/+ 4 K, precipitation - 15/- 30%). Land use changes towards more dry and sealed areas enhance surface runoff and thus may lead to somewhat increased flood peaks. In contrast, water withdrawal for irrigation reduces runoff during low-flow periods in the summer when the irrigation demand is high. Although the impact of these non-climatic drivers on runoff generally is lower than that of the climate change considered, their interactive effects may reinforce the catchment's tendency of running drier during summer. While more detailed scenario-based assessments are needed to further assess drought risks, this initial study provides clear evidence for the vulnerability of Alpine foreland catchments to increasing summer dryness under climate change.
机译:奥地利东南部作为东南阿尔卑斯岛前陆的一部分,经历了温度的提高和降水降低的趋势。特别是在夏季,自20世纪70年代以来,温度强烈增加了大约0.7度的0.7度。因此,气候变化下的干旱脆弱性是该地区的关键问题。在这里,我们通过探索奥地利莱布集水区的水文敏感度(987公里(2)区域),这是这些高山前陆的典型集水区来解决这个问题。在1982 - 2011年使用过程导向水流和平衡仿真模型(WASIM),我们在延长夏季(5月至9月)期间专注于低流量条件,并分析集水区的径流敏感性对气候变化,也是土地利用和水管理变革。我们发现气候变化司机基于该地区的中度和强烈的气候变化案例(温度+ 2 / + 4 k,降水 - 15 / - 30%)。土地利用变化更干燥和密封区域增强了表面径流,因此可能导致洪水峰值有所增加。相比之下,灌溉期间灌溉的措施减少了夏季灌溉需求高的低流量时期径流。虽然这些非气候司机对径流的影响一般低于所考虑的气候变化的影响,但它们的互动效果可能会加强在夏季期间跑步的流浪者的趋势。虽然需要更详细的基于情景的评估来进一步评估干旱风险,但这项初步研究提供了明确的证据,即高山前​​陆集团对气候变化增加夏季干燥的脆弱性。

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