形态学研究对理解干旱环境下流域的贡献:以摩洛哥为例

IF 1.6 Q4 ENVIRONMENTAL SCIENCES
Mounir Ouaba, M. Saidi
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引用次数: 2

摘要

流域规划通常是基于对形态计量参数的分析,特别是在计量不良或未计量的流域。事实上,这些地理参数在水径流中起着主要作用。在许多干旱国家,例如摩洛哥,非常需要对流域进行形态计量学研究,以便开展综合水资源管理。为此,我们利用数字地形模型(DTM)和地理信息系统(GIS)进行了流域圈定和形态计量学分析。我们在Tensift流域右岸的四个子流域(Bourrous、Al Wiza、El Hallouf和Jamala)应用了基于遥感和GIS的这种方法。格拉维利乌斯和霍顿的形状指标揭示了四个流域的细长形状。最大坡度不超过27.15°,最大排水密度不超过1 Km/Km2。子流域的水文网不密集,斯特拉勒流域级数不高(最高5级),坡度不高,不超过1000 m。这些地理条件不允许径流迅速。集中时间恰好相当高(在161至401平方公里的流域为7至12小时)。使用足够精确的DTM分辨率和适当的地理信息系统软件将使这类研究对有效的流域管理非常有用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Contribution of morphological study to the understanding of watersheds in arid environment: A case study (Morocco)
Watershed planning is often based on the analysis of morphometric parameters, especially in poorly gauged or ungauged basins. These physiographic parameters have, in fact, a main role in water runoff. In many arid countries such as Morocco, there is a significant need for morphometric studies of watersheds to initiate integrated water resources management. For this purpose, we have carried out the watersheds delineation and morphometric analyses, using the Digital Terrain Model (DTM) and the Geographic Information System (GIS). We have applied this approach based on remote sensing and GIS in four sub-basins of the right bank of the Tensift watershed (Bourrous, Al Wiza, El Hallouf and Jamala). The shape indexes of Gravelius and Horton reveal elongated shapes of the four watersheds. In addition, the maximum slope and the drainage density do not exceed 27.15° and 1 Km/Km2 respectively. The sub-basins do not have a very dense hydrographic network and the Strahler's drainage order is not very high (up to 5). The relief is not very high and do not reach 1000 m. These physiographic conditions do not allow a rapid runoff. The concentration times are precisely quite high (7 to 12 hours for watersheds of 161 to 401 km²). The use of a sufficiently fine DTM resolution and an appropriate GIS software would allow this kind of study to be very useful for effective watershed management.
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来源期刊
AIMS Environmental Science
AIMS Environmental Science ENVIRONMENTAL SCIENCES-
CiteScore
2.90
自引率
0.00%
发文量
31
审稿时长
5 weeks
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