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Towards a simple representation of chalk hydrology in land surface modelling

机译:朝着陆地造型中粉笔水文的简单表示

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摘要

Modelling and monitoring of hydrological processes in the unsaturated zone of chalk, a porous medium with fractures, is important to optimize water resource assessment and management practices in the United Kingdom (UK). However, incorporating the processes governing water movement through a chalk unsaturated zone in a numerical model is complicated mainly due to the fractured nature of chalk that creates high-velocity preferential flow paths in the subsurface. In general, flow through a chalk unsaturated zone is simulated using the dual-porosity concept, which often involves calibration of a relatively large number of model parameters, potentially undermining applications to large regions. In this study, a simplified parameterization, namely the Bulk Conductivity (BC) model, is proposed for simulating hydrology in a chalk unsaturated zone. This new parameterization introduces only two additional parameters (namely the macroporosity factor and the soil wetness threshold parameter for fracture flow activation) and uses the saturated hydraulic conductivity from the chalk matrix. The BC model is implemented in the Joint UK Land Environment Simulator (JULES) and applied to a study area encompassing the Kennet catchment in the southern UK. This parameterization is further calibrated at the point scale using soil moisture profile observations. The performance of the calibrated BC model in JULES is assessed and compared against the performance of both the default JULES parameterization and the uncalibrated version of the BC model implemented in JULES. Finally, the model performance at the catchment scale is evaluated against independent data sets (e.g. runoff and latent heat flux). The results demonstrate that the inclusion of the BC model in JULES improves simulated land surface mass and energy fluxes over the chalk-dominated Kennet catchment. Therefore, the simple approach described in this study may be used to incorporate the flow processes through a chalk unsaturated zone in large-scale land surface modelling applications.
机译:粉笔不饱和区中水文过程的建模与监测,具有骨折的多孔介质,对于优化英国(英国)的水资源评估和管理实践是重要的。然而,通过在数值模型中通过粉笔不饱和区通过粉笔不饱和区来加入水运动的过程主要是由于粉笔的骨折性质产生了地下的高速优先流动路径。通常,使用双孔隙概念模拟粉笔不饱和区的流动,这通常涉及校准相对大量的模型参数,可能会破坏大区域的应用。在该研究中,提出了一种简化的参数化,即散装电导率(BC)模型,用于模拟粉笔不饱和区中的水文。该新参数化仅引入了两个附加参数(即裂缝流动激活的宏观度因子和土壤湿度阈值参数),并使用来自粉笔基质的饱和液压导电性。 BC模型在英国联合陆地环境模拟器(Jules)中实施,并应用于围城南部Kennet集水区的研究区。使用土壤湿度剖视图观察,该参数化进一步校准。评估校准的BC模型在Jules中的性能进行评估,并与Jules实现的BC模型的默认Jules参数化和未校准版本的性能进行评估。最后,对集距量表的模型性能进行评估对独立数据集(例如径流和潜热通量)。结果表明,在粉笔主导的Kennet集水区中包含BC模型在Jules中提高了模拟的土地表面质量和能量通量。因此,该研究中描述的简单方法可用于通过大规模陆地面表建模应用中的粉笔不饱和区掺入流动过程。

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