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Unsaturated zone flow and solute transport modelling with MIKE SHE: model test and parameter sensitivity analysis using lysimeter data

机译:使用MIKE SHE进行不饱和区域流动和溶质运移建模:使用溶渗仪数据进行模型测试和参数敏感性分析

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This study presents the test of the widely used model MIKE SHE at the lysimeter in Wagna in Southern Styria (Austria). At the lysimeter comprehensive data of vegetation, i.e., cultivation types, and soil hydraulic properties are available to parameterise the model. The aim of the study is to test the water movement and solute transport simulation in the unsaturated zone and the evapotranspiration module by a comparison with measured recharge rates at the lysimeter bottom and measured soil water contents and soil tensions in different depths. For the unsaturated zone calculation, the Richards equation and the Van Genuchten-Mualem approach is used. With the parameterised model the solute transport module is tested against data of a tracer experiment (Bromide). The water content simulation in the different soil depths yielded good results. However, particularly in the gravel zone (below 70 cm) the strong recharge dynamics and at the same time also strong water content dynamics can hardly be reproduced by one individual soil physical parameter set. Two different sets were identified and the corresponding soil water retention functions are located at the opposite ends of the relatively large range obtained by the measurements in this zone. Also, the saturated hydraulic conductivity had to be increased by an order of magnitude to accurately represent the recharge dynamics. The test of the solute transport simulation showed generally very good results. However, the early rapid rise of the measured concentrations could not be reproduced with either parameter set. The discrepancies found in the study indicate a complex pore system in the gravel zone consisting of different flow paths (e.g., system of matrix flow and macro-pore flow) activated at different soil moisture conditions, which cannot be fully represented by the used approach. However, the parameter study herein highlights the main parameters to be altered in a calibration procedure at point scale. The paper includes also a step from point to regional scale. For comparison test calculations with data, which are usually available on regional scale, showed good results for the 5-year average balance (-7 % compared to measurements) but rather large deviations from the measurements at shorter time scales.
机译:这项研究提出了在施蒂里亚州南部(奥地利)瓦格纳的溶渗仪上对广泛使用的MIKE SHE模型进行的测试。在蒸渗仪上,可获取植被的全面数据(即栽培类型和土壤水力特性)以参数化模型。该研究的目的是通过与测渗仪底部的补给率和测得的不同深度的土壤含水量和土壤张力的比较,来测试非饱和区和蒸散模块中的水运移和溶质运移模拟。对于不饱和带计算,使用了Richards方程和Van Genuchten-Mualem方法。使用参数化模型,对照示踪剂实验数据(溴化物)测试溶质传输模块。在不同土壤深度下的含水量模拟都取得了良好的效果。但是,特别是在砾石区(70厘米以下),强大的补给动力以及强大的含水量动力很难通过一套单独的土壤物理参数来再现。确定了两个不同的集合,相应的土壤保水功能位于该区域中通过测量获得的相对较大范围的相对两端。同样,必须将饱和的水力传导率增加一个数量级,以准确表示补给动力。溶质迁移模拟的测试通常显示出很好的结果。但是,使用任一参数集都无法再现所测浓度的早期快速上升。研究中发现的差异表明砾石区中的复杂孔隙系统由在不同土壤湿度条件下激活的不同流路(例如基质流和大孔流系统)组成,无法通过使用的方法完全体现出来。但是,本文的参数研究突出显示了在校准过程中以磅为单位要更改的主要参数。本文还包括了从点到区域规模的一步。为了进行比较测试,可以使用通常在区域范围内可获得的数据进行计算,结果显示5年平均余额具有良好的结果(与测量值相比为7%),但在较短的时间范围内与测量值的偏差较大。

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