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Non-invasive characterisation of ancient foundations in Venice using the electrical resistivity imaging technique

机译:使用电阻率成像技术对威尼斯古代基础进行非侵入式表征

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Electrical resistivity is a physical parameter linked to both texture and moisture content of the investigated bodies; therefore, its study provides reliable information about the internal structure and eventual degradation state of the elements generally used for construction purposes, like walls, columns, etc. Recent advances in hardware and software allow to acquire resistivity information of the investigated body in a 'tomographic' manner. This technique, called Electrical Resistivity Tomography (ERT), furnishes detailed two (2D) and three (3D) dimensional models of electrical resistivity distribution of the portion of the subsurface being investigated. In this work, the application of the ERT technique, to evaluate restoration quality of the building foundations after being consolidated, is described throughout a test site, located in Venice (Italy). The reconstructed 3D images of the resistivity distribution before and after consolidation provided details about the internal structural of the foundation itself as well as the volumes which have been occupied by the mortar after consolidation. Direct field test confirmed the diffusion of the mortar in the foundation and further laboratory analyses, conducted on a specimen taken at 80 cm, showed that cracks of 40 mm width had been completely filled with mortar.
机译:电阻率是与被调查物体的质地和水分含量相关的物理参数;因此,它的研究提供了有关通常用于建筑目的的元素(如墙,柱等)的内部结构和最终降解状态的可靠信息。硬件和软件的最新进展允许在“断层扫描”中获取被调查物体的电阻率信息。的方式。这项技术称为电阻层析成像(ERT),提供了要调查的地下部分的电阻率分布的详细的二维(2D)和三维(3D)维模型。在这项工作中,整个位于威尼斯(意大利)的测试现场都介绍了ERT技术在评估建筑基础恢复后的质量方面的应用。固结前后电阻率分布的重建3D图像提供了有关基础本身内部结构以及固结后砂浆所占体积的详细信息。直接现场测试证实了砂浆在地基中的扩散,并且对在80厘米处采集的样本进行了进一步的实验室分析,结果表明40毫米宽的裂缝已被砂浆完全填充。

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