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首页> 外文期刊>Journal of African earth sciences >Integrating of remote sensing, GIS and geophysical data for recharge potentiality evaluation in Wadi El Tarfa, eastern desert, Egypt
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Integrating of remote sensing, GIS and geophysical data for recharge potentiality evaluation in Wadi El Tarfa, eastern desert, Egypt

机译:遥感,GIS和地球物理数据的整合,为埃及的Wadi El Tarfa提供充值潜力评估

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摘要

In Egypt, water resources management is considered a major socio-economic issue and a central component for future development. With the increasing rate of population growth, urbanization and agricultural expansion, groundwater resources are gaining more demand and attention. Wadi El Tarfa area is one of the semi-arid areas located in the Eastern Desert of Egypt, composed of Cretaceous and Eocene limestone and Quaternary sediments. This study focused on delineation, evaluation and verification of the groundwater potential zones using remote sensing, geospatial techniques and field work. In this regard, thematic maps of the contributing factors such as stream networks, lineaments, lithology, slope, landcover/landuse and rainfall were generated using the Geographic Information Systems (GIS) and Remote Sensing (RS) techniques. Based on the determined recharge favorability, weighing, and overlaying, a groundwater potential of the study area was prepared. The output recharge potential map shows three zones of groundwater prospective potential: good, moderate and low constituting 25%, 69% and 6% of the study area respectively. Of them, the high and moderate zones are strongly recommended for further exploration. The geophysical, water data and transmissivity data for some water points located within the targeted area confirmed the recommended zones. The overall results reflect the effectiveness of using the remote sensing data and geospatial techniques to target areas for groundwater exploration.
机译:在埃及,水资源管理被认为是一个主要的社会经济问题和未来发展的中央部件。随着人口增长率的增加,城市化和农业扩张,地下水资源正在获得更多的需求和关注。 Wadi El Tarfa地区是位于埃及东沙漠的半干旱地区之一,由白垩纪和何群石灰石和四季沉积物组成。本研究专注于使用遥感,地理空间技术和现场工作描绘,评估和验证地下水潜在区域。在这方面,使用地理信息系统(GIS)和遥感(RS)技术产生了流网络,谱系,岩性,斜坡,Landcover / Landuse和降雨等贡献因素的主题地图。基于确定的充电性,称重和叠加,制备研究区域的地下水潜力。输出充值潜在地图显示了三区的地下水预期潜力:良好,中等,低,分别占研究区域的25%,69%和6%。其中,强烈建议高和中等地区进行进一步探索。用于位于目标区域内的一些水点的地球物理,水数据和透射率数据证实了推荐区域。总体结果反映了使用遥感数据和地理空间技术来实现地下水勘探的目标领域的有效性。

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