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Geotechnical Risk Assessment at South Eastern Suburb of Cairo, Egypt Using Integrated Geophysical Techniques

机译:埃及北部开罗南郊区的岩土风险评估,埃及采用综合地球物理技术

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The reason for implementation of this research is the prevalent of incidences of structural damage around the area of investigation causing large number of casualties and loose of souls. The location of the district is very close to the quarry blasting operations that can intensely produce stresses in the ground due to continuous artificial explosions and ultimately result in the instability of the area. Geophysical reconnaissance surveys using seismic refraction, electrical resistivity and ground penetrating radar were carried out to measure near surface structure setting and follow up its activity upon time by delineating the major fault and other minor features such as cracks, fissures and water saturated zone. Integration of the geophysical data shows that the main reason of fractures in the study area is the swelling of marly clay layer due to retention of the drainage water. Also, there is a near surface major fault cuts the southern part of the study area causing variation in thickness of the marly clay layer and consequently affect on the inhabitant buildings.
机译:实施本研究的原因是普遍存在的调查领域的结构损伤发生率,导致大量伤亡和松动的灵魂。该地区的位置非常接近采石场爆破作业,由于连续的人为爆炸,最终可能导致该地区的不稳定性导致地面的压力。利用地震折射,电阻率和地面穿透雷达地球物理侦察调查是通过描绘重大故障时的时间进行测量靠近表面的结构设置和后续其活性和裂缝,裂缝和水饱和带其它次要功能,例如。地球物理数据的整合表明,研究区域中骨折的主要原因是由于排水水的保留而导致的Marly粘土层的肿胀。此外,近表面主要断层切割研究区域的南部,导致Marly粘土层的厚度变化,从而影响居民建筑物。

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