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Quantification of Climate Change Impact on Regional Agricultural Irrigation and Groundwater Demand

机译:气候变化对区域农业灌溉和地下水需求影响的量化

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摘要

Climate change is expected to impact agricultural production conditions and groundwater resources. The climate change impacts are expected to be of particular importance for the German region North Rhine-Westphalia. Due to a high population density and intensive partial irrigation of agricultural production, future resource conflicts for groundwater are expected. An integrated model framework consisting of climate, crop-soils and groundwater models represents the regional heterogeneous climatic, geographic and agronomic conditions. The integrated model framework simulates the irrigation demand and groundwater recharge. An ex-post comparison between the simulated reference period (1961 to 1990) and statistical data prove a good model validity. The climate change scenario for the future period 2051 to 2080 assumes decreasing precipitation and increasing transpiration. The simulated total irrigation demand increases by nearly 20 times compared to the reference period (1961 to 1990) and increases regionally to more than 40 mm/ha. Decreasing groundwater recharge results in a tenfold increased share of irrigation water from groundwater. This share accounts regionally for more than 30 %. The results indicate important impacts for both agricultural production and other groundwater users.
机译:预计气候变化将影响农业生产条件和地下水资源。预计气候变化影响对德国地区北莱茵-威斯特法伦州尤为重要。由于人口密度高和农业生产的部分灌溉密集化,预计未来的地下水资源冲突。由气候,作物土壤和地下水模型组成的综合模型框架代表了区域的非均质气候,地理和农艺条件。集成模型框架模拟了灌溉需求和地下水补给。模拟参考期(1961年至1990年)与统计数据之间的事后比较证明了良好的模型有效性。未来2051年至2080年的气候变化情景假设降水量减少而蒸腾作用增加。与参考时期(1961年至1990年)相比,模拟的总灌溉需求增加了近20倍,并且区域性增加到40毫米/公顷以上。地下水补给的减少导致来自地下水的灌溉水份额增加了十倍。该份额在区域内占30%以上。结果表明对农业生产和其他地下水使用者都具有重要影响。

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