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首页> 外文期刊>International Journal of Geophysics >Analysis and Interpretation of the Field and Laboratory Geophysical Measurements of Black-Sand Beach Deposits, East Rosetta, Egypt
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Analysis and Interpretation of the Field and Laboratory Geophysical Measurements of Black-Sand Beach Deposits, East Rosetta, Egypt

机译:埃及东罗塞塔黑沙海滩矿床的实地分析和实验室地球物理测量

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摘要

The present study deals with the analysis and interpretation of the results of field geophysical survey and laboratory geophysical measurements. The study of the magnetic and electrical methods was selected because the beach sands contain many minerals that have magnetic and electric properties. Analysis and interpretation of the field and laboratory magnetic and geoelectric maps demonstrated that the investigated beach-alluvial deposits can be subdivided according to their magnetic and geoelectric properties into three main zones striking nearly parallel to the shoreline of the Mediterranean Sea at the study area. The northern zone is more enriched in black sands than the central or southern zones. Field and laboratory magnetic susceptibility measurements provided very useful maps for the concentration of heavy minerals. The deep-seated magnetic response was calculated at an average depth of 239.6 m, while the near-surface magnetic responses were computed at average depths of 9.1, 57.9, and 81.8 m, respectively. The correlation between the geophysical features, recorded on the total magnetic field intensity, the electric resistivity, the IP chargeability, and the calculated metal factor, was found to agree to a great extent. The heavymineral concentration was found to decrease with depth. However, the heavyminerals show parallel zones below the surface, suggesting similar sedimentation environments.
机译:本研究涉及对现场地球物理调查和实验室地球物理测量结果的分析和解释。之所以选择磁学和电学方法,是因为沙滩砂包含许多具有磁学和电学性质的矿物。对现场和实验室磁和地电图的分析和解释表明,所研究的滩涂沉积物可以根据其磁和地电特性细分为三个主要区域,这些区域与研究区域的地中海沿岸线几乎平行。北部地区比中部或南部地区富含黑沙。现场和实验室磁化率测量为重矿物的浓度提供了非常有用的地图。深层磁响应的平均深度为239.6 m,而近地表磁响应的平均深度分别为9.1、57.9和81.8 m。发现在总磁场强度,电阻率,IP荷电率和计算出的金属因子上记录的地球物理特征之间的相关性在很大程度上是一致的。发现重矿物浓度随深度降低。然而,重矿物在地表以下显示出平行区域,表明相似的沉积环境。

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