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Anisotropic crosshole resistivity tomography for ground safety analysis of a high-storied building over an abandoned mine

机译:各向异性井间电阻率层析成像技术用于废弃矿山上高层建筑的地面安全分析

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Crosshole resistivity tomography was performed to image the subsurface structures and mine cavities beneath a 25 story apartment building constructed at an abandoned mining site, and to provide the underground model for the safety analysis of the building. Strong electrical anisotropy was observed in the measured data, which has proven to be mainly due to geology. In order to deal with the anisotropy effect and to reconstruct the subsurface images reflecting the underground status precisely, we developed anisotropy inversion codes for resistivity tomography. The algorithm is based on finite element approximations for the forward modeling; the ACB (Active Constraint Balancing) method was adopted in the program in order to enhance the resolving power of the smoothness constraint least-squares inversion. All the acquired data were inverted by the developed inversion code so as to reconstruct the subsurface images, which match quite well with the geological mapping result. In particular, the locations of cavities were delineated more precisely owing to the anisotropic characteristics of the basement rock. Based on the subsurface model established by the resistivity tomography, rock engineering numerical analysis was further carried out. The result obtained from this analysis showed that the high-storied building is safe, even though three abandoned tunnels of the old mine are located beneath the building.
机译:进行了井间电阻率层析成像,以成像在废弃矿场上建造的25层公寓楼下的地下结构和矿井,并为建筑物的安全分析提供地下模型。在实测数据中观察到强电各向异性,这已被证明主要是由于地质原因。为了处理各向异性的影响并精确地重建反映地下状况的地下图像,我们开发了用于电阻率层析成像的各向异性反演代码。该算法基于有限元逼近法进行正向建模。该程序中采用了ACB(主动约束平衡)方法,以增强平滑约束最小二乘反演的解析能力。所开发的反演代码将所有采集到的数据进行反演,以重建地下图像,与地质填图结果非常吻合。特别是,由于基岩的各向异性特征,可以更精确地描绘出空腔的位置。基于电阻率层析成像建立的地下模型,进一步进行了岩石工程数值分析。从该分析获得的结果表明,即使建筑物下方有三个老矿山废弃的隧道,该高层建筑也是安全的。

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