Non-Destructive Techniques for Characterising Earthen Structures

E. Bernat-Masó, E. Teneva, L. Mercedes, L. Gil
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Abstract

. Earthen architecture is one of the most relevant building technologies among heritage structures. However, mechanical properties are commonly obtained from destructive tests. To contribute at changing this trend, two non-destructive mechanical techniques (ultrasound and modal analysis) are studied to determine their ability at characterizing earthen materials and their possible correlation. To achieve these purposes, twenty cubic-shaped earthen specimens were produced for testing the capability of ultrasound transmission method to control moisture content and its evolution during drying process at different environments. Additionally, a real-scale rammed earth wall was built to assess the feasibility of using ultrasound technique to determine elastic dynamic Young modulus. This analysis was validated by indirect comparison with experimental modal analysis test results. The most important findings are that the relationship between moisture content and ultrasound transmission speed is linear. This information is useful to control the drying process of earthen materials and to control the moisture content distribution on larger in-service structures. Finally, numerical simulation using ultrasound transmission data as input information allow to predict the vibrational response of the tested wall with an error around 3%.
土结构表征的非破坏性技术
. 土制建筑是遗产建筑中最相关的建筑技术之一。然而,机械性能通常是通过破坏性试验获得的。为了改变这一趋势,研究了两种非破坏性机械技术(超声和模态分析),以确定它们表征土材料的能力及其可能的相关性。为此,制作了20个立方形土样,测试了超声透射法在不同环境下控制水分含量及其在干燥过程中的演变的能力。此外,建立了一个实尺夯土墙,以评估使用超声技术确定弹性动力杨氏模量的可行性。通过与试验模态分析试验结果的间接比较,验证了该分析的正确性。最重要的发现是水分含量与超声波传输速度之间的关系是线性的。这些信息对于控制土质材料的干燥过程和控制较大的在役结构的含水率分布是有用的。最后,利用超声传输数据作为输入信息进行数值模拟,预测被测壁面的振动响应,误差在3%左右。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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