首页> 外文会议>Ground Penetrating Radar (GPR), 2012 14th International Conference on >A multidisciplinary non-destructive approach to analyze moisture in historic masonry structures: Integration of both field and synthetic GPR data generated from photogrammetric and infrared imaging
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A multidisciplinary non-destructive approach to analyze moisture in historic masonry structures: Integration of both field and synthetic GPR data generated from photogrammetric and infrared imaging

机译:一种多学科的非破坏性方法来分析历史性砖石结构中的水分:从摄影测量和红外成像生成的野外和合成GPR数据的集成

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摘要

This work presents a multidisciplinary approach to detect moisture in ancient masonry bridges, which has proven as a valuable tool to support the preservation of such historic assets. For the evaluation, non-destructive assessment was considered by means of ground-penetrating radar (GPR), photogrammetry and infrared thermography. Because of the inner heterogeneity of masonry structures, the analysis and interpretation of field GPR data resulted complex. Sophisticated finite-difference time-domain (FDTD) modelling was therefore used to assist and to improve in the interpretation of the field data. Simulations were elaborated using a mixed model of parallelization, and more realistic and large scale models were built from the accurate data provided by photogrammetric and thermographie procedures.
机译:这项工作提出了一种多学科的方法来检测古代砖石桥梁中的水分,这已被证明是支持保护此类历史资产的宝贵工具。为了进行评估,考虑了地面穿透雷达(GPR),摄影测量法和红外热成像法的无损评估。由于砌体结构的内部异质性,对现场GPR数据的分析和解释导致了复杂性。因此,先进的有限差分时域(FDTD)建模用于辅助和改进对现场数据的解释。使用并行化的混合模型对模拟进行了详细说明,并根据摄影测量和热成像程序提供的准确数据构建了更现实,更大规模的模型。

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