Application of ERT and SSR for geotechnical site characterization: A case study for resort assessment in New El Alamein City, Egypt

A. Basheer, N. Salama
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引用次数: 5

Abstract

ABSTRACT The new city of El Alamein is one of the cities that the Egyptian government seeks to make it a tourist resort area that attract local and international tourism. This study examines how to apply geophysical methods to achieve soil study for foundational and construction purposes, especially near the seacoast. It also seeks to capture evidence of the presence of any clay lenses, as well as the intrusion of seawater into the shallow soil layers. The study uses two effective geophysical methods, the electrical resistivity tomography (ERT) and shallow seismic refraction (SSR). ERT method gained two layers, the appearance of seawater intrusion begins in the second layer. SSR method assigned the same two layers according to the seismic velocities with a thickness close to that determined by the ERT method. From seismic wave velocities, a set of geotechnical properties were calculated. From the integration of all the results, the study area divided into two zones; (1) cohesive soil zone is suitable for construction with low heights, provided that the architectural foundations are placed in the second layer, (2) loose soil and is affected by the intrusion of seawater, so it is not suitable for any construction purposes.
ERT和SSR在岩土场地特征分析中的应用——以埃及新阿拉曼市度假区评价为例
阿拉曼新城是埃及政府努力打造的旅游度假区之一,旨在吸引当地和国际游客。本研究探讨了如何应用地球物理方法来实现基础和建设目的的土壤研究,特别是在沿海地区。它还试图捕捉任何粘土透镜存在的证据,以及海水侵入浅层土壤层的证据。该研究采用了两种有效的地球物理方法,即电阻率层析成像(ERT)和浅层地震折射(SSR)。ERT方法分为两层,海水入侵的出现始于第二层。SSR方法根据地震速度分配了相同的两层,厚度与ERT方法确定的厚度相近。根据地震波速度,计算了一组岩土力学性质。从综合各项研究成果来看,研究区分为两个区域;(1)粘结性土壤区,在建筑基础设于第二层的情况下,适合低高度施工;(2)土壤疏松,受海水侵入影响,不适合作任何施工用途。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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