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WAYS v1: a hydrological model for root zone water storage simulation on a global scale

机译:v1:全球尺度根带蓄水仿真水文模型

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The soil water stored in the root zone is a critical variable for many applications, as it plays a key role in several hydrological and atmospheric processes. Many studies have been conducted to obtain reliable information on soil water in the root zone layer. However, most of them are mainly focused on the soil moisture within a certain depth rather than the water stored in the entire rooting system. In this work, a hydrological model named the Water And ecosYstem Simulator (WAYS) is developed to simulate the root zone water storage (RZWS) on a global scale. The model is based on a well-validated lumped model and has now been extended to a distribution model. To reflect the natural spatial heterogeneity of the plant rooting system across the world, a key variable that influences RZWS, i.e., root zone storage capacity (RZSC), is integrated into the model. The newly developed model is first evaluated based on runoff and RZWS simulations across 10?major basins. The results show the ability of the model to mimic RZWS dynamics in most of the regions through comparison with proxy data, the normalized difference infrared index (NDII). The model is further evaluated against station observations, including flux tower and gauge data. Despite regional differences, generally good performance is found for both the evaporation and discharge simulations. Compared to existing hydrological models, WAYS's ability to resolve the field-scale spatial heterogeneity of RZSC and simulate RZWS may offer benefits for many applications, e.g., agriculture and land–vegetation–climate interaction investigations. However, the results from this study suggest an additional evaluation of RZWS is required for the regions where the NDII might not be the correct proxy.
机译:存储在根区域中的土壤水是许多应用的关键变量,因为它在几种水文和大气过程中起着关键作用。已经进行了许多研究以获得根部区域中土壤水的可靠信息。然而,大多数主要集中在一定深度内的土壤水分而不是储存在整个生根系统中的水中。在这项工作中,开发了一种名为水和生态系统模拟器(方式)的水文模型,以在全球范围内模拟根带储水(RZW)。该模型基于良好的验证良好的集成模型,现在已经扩展到分配模型。为了反映世界各地的植物生根系统的自然空间异质性,一个影响RZW的关键变量,即根区域存储容量(RZSC),集成到模型中。首先基于10个主要盆地的径流和RZWS模拟来评估新开发的模型。结果表明,通过与代理数据的比较,模型在大多数地区模仿RZWS动态的能力,归一化差异红外索引(NDII)。该模型进一步评估站点观察,包括磁通塔和仪表数据。尽管区域差异,但蒸发和放电模拟都会发现一般的性能。与现有的水文模型相比,解决RZSC的现场空间异质性的方式和模拟RZW的能力可以为许多应用,例如农业和陆地 - 气候互动调查提供益处。然而,本研究的结果表明,NDII可能不是正确代理的区域需要额外的RZW评估。

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