首页> 外文期刊>Hydrology and Earth System Sciences >The paradoxical evolution of runoff in the pastoral Sahel: analysis of the hydrological changes over the Agoufou watershed (Mali) using the KINEROS-2 model
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The paradoxical evolution of runoff in the pastoral Sahel: analysis of the hydrological changes over the Agoufou watershed (Mali) using the KINEROS-2 model

机译:牧区径流的矛盾演变:使用Kineros-2模型分析Agoufou流域的水文变化(Mali)

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摘要

In recent decades, the Sahel has witnessed a paradoxical increase in surface water despite a general precipitation decline. This phenomenon, commonly referred to as "the Sahelian paradox", is not completely understood yet. The role of cropland expansion due to the increasing food demand by a growing population has been often put forward to explain this situation for the cultivated Sahel. However, this hypothesis does not hold in pastoral areas where the same phenomenon is observed. Several other processes, such as the degradation of natural vegetation following the major droughts of the 1970s and the 1980s, the development of crusted topsoils, the intensification of the rainfall regime and the development of the drainage network, have been suggested to account for this situation. In this paper, a modeling approach is proposed to explore, quantify and rank different processes that could be at play in pastoral Sahel. The kinematic runoff and erosion model (KINEROS-2) is applied to the Agoufou watershed (245 km~2), in the Gourma region in Mali, which underwent a significant increase of surface runoff during the last 60 years. Two periods are simulated, the "past" case (1960-1975) preceding the Sahelian drought and the "present" case (2000-2015). Surface hydrology and land cover characteristics for these two periods are derived by the analysis of aerial photographs, available in 1956, and high-resolution remote sensing images in 2011. The major changes identified are (1) a partial crusting of isolated dunes, (2) an increase of drainage network density, (3) a marked decrease in vegetation with the nonrecovery of tiger bush and vegetation growing on shallow sandy soils, and (4) important changes in soil properties with the apparition of impervious soils instead of shallow sandy soil. The KINEROS-2 model was parameterized to simulate these changes in combination or independently. The results obtained by this model display a significant increase in annual discharge between
机译:近几十年来,萨赫尔目睹了地表水的矛盾,尽管普遍降水下降。这种现象通常被称为“萨赫伦悖论”,尚未完全理解。耕地扩张由于日益增长的人口的粮食需求增加的作用往往是为了解释培养萨赫尔的这种情况。然而,这种假设在观察到相同现象的田园区域并未持有。其他几个过程,如20世纪70年代的主要干旱后天然植被的降解,凝固的表土的发展,降雨制度的强化和引流网络的发展,已经建议考虑到这种情况。本文提出了一种建模方法来探索,量化和排名不同的过程,这些过程可以在牧场萨赫尔播放。运动径流和侵蚀模型(Kineros-2)适用于Mali的牙龈地区的Agoufou流域(245 km〜2),在过去的60年中介绍了在过去的60年中大量增加的表面径流。模拟了两个时期,“过去”案例(1960-1975)前面先前的萨赫伦干旱和“目前”案例(2000-2015)。这两个时期的表面水文和陆地覆盖特征是通过对航空照片的分析来源的,从1956年提供,以及2011年的高分辨率遥感图像。确定的主要变化是(1)孤立的沙丘的部分结壳(2 )引流网络密度的增加,(3)植被的显着减少与虎灌木和植被生长在浅砂土上生长的植被,(4)土壤性质的重要变化与不透水土壤的幻影而不是浅砂土。 Kineros-2模型是参数化的,以模拟这些变化组合或独立。通过该模型获得的结果显示在年下的年度放电增加

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