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Investigating the importance of groundwater for near surface flux and state simulation through a multi-constraint analysis of a complex surface-subsurface-atmosphere model

机译:通过对复杂的地表-地下-大气模型进行多约束分析,研究地下水对于近地表通量和状态模拟的重要性

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A complex distributed numerical modelling framework including both groundwater-surface-water flow and heat flux exchange with the atmosphere, combined with a unique observational data set, enables a comprehensive application of multiple independent constraints to the model parameter optimization at the catchment scale (1050 km2). Five independent observational data sets consisting of stream discharge, groundwater head, latent heat flux, soil moisture and remotely-sensed land surface temperature are the basis for formulating 11 objective functions focusing on the bias and RMSE of time series from multiple stations. A sensitivity analysis of 35 model parameters reveals that even surface fluxes and states, such as soil moisture, heat fluxes and land surface temperature, are highly sensitive to parameters that are typically associated with the groundwater components of the model. This indicates the importance of also using fully coupled modelling approaches in detailed studies of the near surface-atmosphere exchanges.
机译:一个复杂的分布式数值建模框架,包括地下水-地表水流量以及与大气的热通量交换,再加上独特的观测数据集,可以在集水区(1050 km2)的模型参数优化中全面应用多个独立约束)。五个独立的观测数据集,包括河流流量,地下水位,潜热通量,土壤湿度和遥感地表温度,是制定11个目标函数的基础,这些函数着重于多站时间序列的偏差和RMSE。对35个模型参数的敏感性分析表明,即使是表面通量和状态,例如土壤湿度,热通量和陆地表面温度,也对通常与模型的地下水成分相关的参数高度敏感。这表明在近地-大气交换的详细研究中也必须使用完全耦合的建模方法。

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