...
首页> 外文期刊>Hydrology and Earth System Sciences >Validating a spatially distributed hydrological model with soil morphology data
【24h】

Validating a spatially distributed hydrological model with soil morphology data

机译:用土形态数据验证空间分布的水文模型

获取原文

摘要

Spatially distributed models are popular tools in hydrology claimed to be useful to support management decisions. Despite the high spatial resolution of the computed variables, calibration and validation is often carried out only on discharge time series at specific locations due to the lack of spatially distributed reference data. Because of this restriction, the predictive power of these models, with regard to predicted spatial patterns, can usually not be judged. An example of spatial predictions in hydrology is the prediction of saturated areas in agricultural catchments. These areas can be important source areas for inputs of agrochemicals to the stream. We set up a spatially distributed model to predict saturated areas in a 1.2 km2 catchment in Switzerland with moderate topography and artificial drainage. We translated soil morphological data available from soil maps into an estimate of the duration of soil saturation in the soil horizons. This resulted in a data set with high spatial coverage on which the model predictions were validated. In general, these saturation estimates corresponded well to the measured groundwater levels. We worked with a model that would be applicable for management decisions because of its fast calculation speed and rather low data requirements. We simultaneously calibrated the model to observed groundwater levels and discharge. The model was able to reproduce the general hydrological behavior of the catchment in terms of discharge and absolute groundwater levels. However, thethe groundwater level predictions were not accurate enough to be used for the prediction of saturated areas. Groundwater level dynamics were not adequately reproduced and the predicted spatial saturation patterns did not correspond to those estimated from the soil map. Our results indicate that an accurate prediction of the groundwater level dynamics of the shallow groundwater in our catchment that is subject to artificial drainage would require a model that better represents processes at the boundary between the unsaturated and the saturated zone. However, data needed for such a more detailed model are not generally available. This severely hampers the practical use of such models despite their usefulness for scientific purposes.
机译:空间分布式模型是水文中的流行工具,声称有助于支持管理决策。尽管计算出变量的高空间分辨率,但由于缺少空间分布的参考数据,校准和验证通常仅在特定位置的放电时间序列执行。由于这种限制,这些模型关于预测的空间模式的预测力通常可以判断。 水文中空间预测的一个例子是农业集水区中饱和区域的预测。这些区域可以是用于流的农用化学物的重要来源领域。我们在瑞士中,建立了空间分布式模型,以预测1.2 km 2 集水区,具有适度的地形和人工排水。我们将土壤地图的土壤形态学数据转化为土壤视野中土壤饱和度持续时间的估计。这导致数据集,其中验证了模型预测的高空间覆盖范围。通常,这些饱和度估计对应于测量的地下水位。 我们使用的模型适用于管理决策,因为其快速计算速度和更低的数据要求。我们同时校准模型以观察地下水位和放电。该模型能够在放电和绝对地下水位方面再现集水的一般水文行为。然而,该地下水位预测不足以用于预测饱和区域的准确性。地下水位动态没有充分再现,并且预测的空间饱和模式与来自土壤图估计的那些不对应。我们的研究结果表明,对人工排水的集水区中浅地下水的地下水位动态的精确预测需要一种模型,其更好地表示不饱和区之间的边界处的过程。但是,这种更详细的模型所需的数据通常不可用。这严重妨碍了这种模型的实际应用,尽管他们对科学目的有用。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号