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首页> 外文期刊>Engineering Geology >Internal structural architecture of a soft-linkage transfer zone using outcrop and DC resistivity data: Implications for preliminary engineering assessment
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Internal structural architecture of a soft-linkage transfer zone using outcrop and DC resistivity data: Implications for preliminary engineering assessment

机译:使用露头和直流电阻率数据的软连动传输区的内部结构架构:对初步工程评估的影响

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The current study presents a new integrative approach for detailed structural mapping of a soft-linkage transfer zone using outcrop, boreholes and DCR data in the form of soundings and 2D-electrical resistivity tomography (2D-ERT). As a case study, the present approach is implied for studying the geo-engineering conditions of a highly deformed desert-land entry to reclaim at Cairo-Suez district, Egypt. The approach has led to the spatial understanding of the subsurface heterogeneity and complex structures at a level of accuracy unattainable with traditional surface structural mapping alone. For preliminary geotechnical assessment, some physical and geotechnical properties are characterized by field and laboratory measurements for collected soil samples. Moreover, the inverted DCR data are used to predict the RQD values using a polynomial relationship between RQD and the intrinsic resistivity (rho). Notably, the calculated and actual values of RQD are, in general, in the same order considering the error factor value, and hence, the derived equation for RQD prediction is satisfactory. Therefore, the proposed approach reduces the uncertainty of the constructed structural model for engineering design. In addition, merging outcrop with DCR data allows us with a limited frame of time to partially mitigate disasters to civilization by better (i) potential location understanding and (ii) remediation plans tuning for a complex structured site.
机译:目前的研究提出了一种新的综合方法,用于使用露出的露节,钻孔和DCR数据的软连杆传输区的详细结构映射,以及2D电阻率断层摄影(2D-ERT)。以案例研究为例,暗示了本方法,用于研究高度变形的沙漠土地进入的地理工程条件,以在埃及开罗 - 苏塞区回收。该方法导致了对地下异质性和复杂结构的空间理解,以单独的传统表面结构映射无法实现的精度。对于初步岩土性评估,一些物理和岩土性特性的特征是由收集的土壤样品的现场和实验室测量。此外,倒置的DCR数据用于使用RQD和固有电阻率之间的多项式关系来预测RQD值(ROO)。值得注意的是,RQD的计算和实际值通常以考虑错误因子值的相同顺序,因此,RQD预测的导出方程是令人满意的。因此,所提出的方法降低了工程设计构建结构模型的不确定性。此外,与DCR数据的露出否则我们可以通过有限的时间帧,以便通过更好的(i)潜在的位置理解和(ii)修复计划调整复杂结构化站点的潜在位置理解和(ii)修复计划调整的限制帧。

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