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Comparison of different evaporation estimates over the African continent

机译:非洲大陆不同蒸发量估计值的比较

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Evaporation is a key process in the water cycle with implications ranging, inter alia, from water management to weather forecast and climate change assessments. The estimation of continental evaporation fluxes is complex and typically relies on continental-scale hydrological models or land-surface models. However, it appears that most global or continental-scale hydrological models underestimate evaporative fluxes in some regions of Africa, and as a result overestimate stream flow. Other studies suggest that land-surface models may overestimate evaporative fluxes. In this study, we computed actual evaporation for the African continent using a continental version of the global hydrological model PCR-GLOBWB, which is based on a water balance approach. Results are compared with other independently computed evaporation products: the evaporation results from the ECMWF reanalysis ERA-Interim and ERA-Land (both based on the energy balance approach), the MOD16 evaporation product, and the GLEAM product. Three other alternative versions of the PCR-GLOBWB hydrological model were also considered. This resulted in eight products of actual evaporation, which were compared in distinct regions of the African continent spanning different climatic regimes. Annual totals, spatial patterns and seasonality were studied and compared through visual inspection and statistical methods. The comparison shows that the representation of irrigation areas has an insignificant contribution to the actual evaporation at a continental scale with a 0.5° spatial resolution when averaged over the defined regions. The choice of meteorological forcing data has a larger effect on the evaporation results, especially in the case of the precipitation input as different precipitation input resulted in significantly different evaporation in some of the studied regions. ERA-Interim evaporation is generally the highest of the selected products followed by ERA-Land evaporation. In some regions, the satellite-based products (GLEAM and MOD16) show a different seasonal behaviour compared to the other products. The results from this study contribute to a better understanding of the suitability and the differences between products in each climatic region. Through an improved understanding of the causes of differences between these products and their uncertainty, this study provides information to improve the quality of evaporation products for the African continent and, consequently, leads to improved water resources assessments at regional scale.
机译:蒸发是水循环中的关键过程,其影响尤其涉及从水管理到天气预报和气候变化评估。大陆蒸发通量的估计很复杂,通常依赖于大陆尺度的水文模型或陆面模型。但是,似乎大多数全球或大陆尺度的水文模型都低估了非洲某些地区的蒸发通量,因此高估了水流量。其他研究表明,地表模型可能会高估蒸发通量。在这项研究中,我们使用基于水平衡方法的全球水文模型PCR-GLOBWB的大陆版本计算了非洲大陆的实际蒸发量。将结果与其他独立计算的蒸发产物进行比较:ECMWF重新分析ERA-Interim和ERA-Land(均基于能量平衡方法)的蒸发结果,MOD16蒸发产物和GLEAM产物。还考虑了PCR-GLOBWB水文模型的其他三个替代版本。这产生了八种实际蒸发的产物,在跨越不同气候制度的非洲大陆不同地区进行了比较。研究了年度总数,空间格局和季节性,并通过视觉检查和统计方法进行了比较。比较表明,当在限定区域内平均时,灌溉面积的表示对大陆尺度上实际蒸发量的贡献很小,空间分辨率为0.5°。气象强迫数据的选择对蒸发结果有较大影响,特别是在降水输入的情况下,因为不同的降水输入导致某些研究区域的蒸发明显不同。 ERA-临时蒸发通常是所选产品中最高的,其次是ERA-土地蒸发。在某些地区,与其他产品相比,基于卫星的产品(GLEAM和MOD16)显示出不同的季节性行为。这项研究的结果有助于更好地了解每个气候区域中产品的适用性和差异。通过更好地了解这些产品之间差异的原因及其不确定性,本研究为提高非洲大陆蒸发产品的质量提供了信息,因此可以改善区域范围内的水资源评估。

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