首页> 外文期刊>Acta Agriculturae Scandinavica. Section B, Soil and Plant Science >Climate change and subsurface drainage design: results from a small field-scale catchment in south-western Norway
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Climate change and subsurface drainage design: results from a small field-scale catchment in south-western Norway

机译:气候变化和地下排水设计:挪威西南部小规模集水区的结果

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摘要

Measurements on groundwater level and subsurface drain discharge have been carried in a small field-scale catchment from November 2012 to February 2013 in south-western Norway. The main objective of the measurements has been to study the interaction between the subsurface drainage discharge and groundwater level. Different methods were used to analyse the measurements. One method was to study the variation in groundwater level and drain discharge. The measurements showed there were large day to day variations. However, in addition, there were large diurnal variations in both the groundwater level and drain discharge. Also the recession of groundwater level was studied using a two-exponential decay function. During several months the precipitation largely exceeded the long-term precipitation. The measurements showed that drainage system had the capacity to react fast to precipitation-induced rise in groundwater level, resulting in a fast drawdown. The measurements at the small scale field catchment showed that the drainage system is designed and capable to react to high precipitation amounts like those predicted by climate change scenario studies.
机译:2012年11月至2013年2月,在挪威西南部的一个小规模集水区进行了地下水位和地下排水的测量。测量的主要目的是研究地下排水和地下水位之间的相互作用。使用了不同的方法来分析测量结果。一种方法是研究地下水位和排水量的变化。测量结果显示每天都有很大的差异。但是,此外,地下水位和排水量的日变化很大。还使用二指数衰减函数研究了地下水位的下降。在几个月中,降水大大超过了长期降水。测量结果表明,排水系统具有对降水引起的地下水位上升做出快速反应的能力,从而导致水位快速下降。在小规模集水区进行的测量表明,排水系统经过精心设计,能够对高降水量做出反应,如气候变化情景研究预测的那样。

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