首页> 外文期刊>Journal of African Earth Sciences >Geotechnical engineering evaluation of soil utilizing 2D multichannel analysis of surface waves (MASW) technique in New Akhmim city, Sohag, Upper Egypt
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Geotechnical engineering evaluation of soil utilizing 2D multichannel analysis of surface waves (MASW) technique in New Akhmim city, Sohag, Upper Egypt

机译:利用2D多通道分析的土壤土壤岩土工程评价(MASW)技术在新的Akhmim城市,苏格兰,上埃及

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New Akhmim is one of the recent cities in Sohag Governorate which was proposed by Egyptian New Urban Communities Authority (ENUCA) to build new communities overcoming the overpopulation problems. The main objectives of this research are delineating the shallow subsurface structures and lithology of the foundation layers and evaluating their geotechnical characteristics. For calculating shear-wave velocity (Vs) in the studied site, sixteen MASW sections were carried out using Geometric strata visor-NZ 48 channels with vertical geophones of 4.5 Hz and inter-geophone spacing of 3 m. The recorded data were analyzed using the SurfSeis software to evaluate the degree of soil compaction or rock consolidation and foundation stability based on seismic wave velocity and density.The proposed site contains two engineering subsurface layers; the first one is the upper most layer and consists of intercalations of unconsolidated material (gravels and sands) of different shear wave velocities. The second layer (compacted shale) is more compact with higher velocity (bedrock). Elastic moduli and geotechnical parameters of the first and the second layers in the eastern part is more competent than the western part. The degree of competence of the second layer is higher than that of the first one, therefore it is considered as more qualified for engineering purpose and constructions design. Precautions should be taken into consideration for the geotechnical engineering problems e.g. swelling or contraction possibly resulting from the second shale layer.
机译:新的Akhmim是埃及新城市社区管理局(Enuca)提出的Sohag省最近的城市之一,以建立克服过度疏忽问题的新社区。本研究的主要目标是划定基础层的浅层地下结构和岩性,评估其岩土性特征。为了计算所研究的部位中的剪切波速度(VS),使用几何地层遮阳板-NZ 48通道进行16个MasW部分,垂直地震孔为4.5Hz,地理声音间距为3米。使用冲浪软件分析记录的数据,以评估基于地震波速度和密度的土壤压实或岩石固结度和基础稳定性。该拟议的网站包含两个工程地下层;第一个是最高层,由不同剪切波速度的未溶解材料(砾石和砂)的嵌段组成。第二层(压实页岩)具有更高的速度(基岩)更紧凑(基岩)。东部第一层和第二层的弹性模和岩土参数比西部更称为。第二层的能力程度高于第一层的能力,因此被认为是更合格的工程目的和结构设计。应考虑到岩土工程问题的预防措施。可能是由第二页岩层产生的肿胀或收缩。

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