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首页> 外文期刊>Journal of geophysics and engineering >Detecting voids in masonry by cooperatively inverting P-wave and georadar traveltimes
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Detecting voids in masonry by cooperatively inverting P-wave and georadar traveltimes

机译:通过反转P波和Georadar的传播时间来检测砌体中的空隙

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Collecting different geophysical data sets at the same object and site offers the opportunity to reduce uncertainties and ambiguities in data analysis and interpretation. To be effective, the different available data sets should be linked during the model-generation process, e.g. by cooperative inversion. In this study, we apply a recently developed zonal cooperative inversion approach based on fuzzy c-means cluster analysis to a non-destructive testing experiment. After briefly reviewing the fundamentals of the inversion strategy, we present a synthetic study investigating the potential of the method to detect air-filled voids in masonry by using ultrasonic and georadar traveltime data. Then, we present and discuss laboratory experiments including the results of cooperatively inverted ultrasonic and georadar traveltimes collected at a masonry test specimen. The geometry of the specimen is known and is thus an ideal test object for a first-time real application of the novel zonal cooperative inversion procedure. Compared to the results of separate inversions of ultrasonic and georadar traveltimes, the zonal cooperative inversion allows for an improved delineation of the size and position of the cavities. The P-wave and georadar velocities determined for the model regions corresponding to the cavities are also improved.
机译:在相同的物体和地点收集不同的地球物理数据集提供了减少数据分析和解释的不确定性和歧义的机会。为了有效,应在模型生成过程中链接不同的可用数据集,例如通过合作反演。在这项研究中,我们将最近开发的基于模糊c均值聚类分析的区域合作反演方法应用于无损测试实验。在简要回顾了反演策略的基本原理之后,我们提出了一项综合研究,研究了该方法通过利用超声和地雷达行进时间数据来检测砌体中充满空气的空隙的潜力。然后,我们介绍并讨论实验室实验,包括在砌体测试样品上收集的超声声波和反雷达波的协同倒转时间的结果。样品的几何形状是已知的,因此是首次新颖应用区域合作反演程序的理想测试对象。与超声和地雷达行进时间分别反演的结果相比,纬向协同反演可以更好地描述型腔的大小和位置。为与空洞相对应的模型区域确定的P波和地雷达速度也得到了改善。

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