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拉古萨(意大利)圣乔治大教堂的全面实验特征的扩展 Tromograph 调查。

Extended Tromograph Surveys for a Full Experimental Characterisation of the San Giorgio Cathedral in Ragusa (Italy).

机构信息

Department of Architecture Construction Conservation, University IUAV of Venice, Dorsoduro 2206, 30123 Venice, Italy.

Department of Biological, Geological and Environmental Sciences-Earth Science Section, University of Catania, Corso Italia, 57, 95129 Catania, Italy.

出版信息

Sensors (Basel). 2023 Jan 12;23(2):889. doi: 10.3390/s23020889.

Abstract

Geophysical surveys are widely used to reconstruct subsoil seismo-stratigraphic structures with a non-invasive approach. In this study the geophysical surveys were carried out with the aim to characterise the San Giorgio Cathedral in Ragusa (Italy) and the area on which it is built from a dynamic point of view. A 3D subsoil model was realised through the integration of two active (i.e., seismic tomography and multichannel analysis of surface waves) and one passive seismic technique (horizontal to vertical spatial ratio). The instrumentation used for the latter method consists of a tromograph (Tromino), which is also employed for the characterisation of the building, focusing on the façade and the dome, by means of an ambient vibration test, processed through the standard spectral ratio and frequency domain decomposition methods. Integration of the 3D model, showing the distribution of areas with different physicomechanical characteristics, enables identifying anomalies that are likely attributable to the remains of the ancient Byzantine church of San Nicola. Four lower modes mainly involving the two investigated macroelements are identified. The experimental results outline the advantages of the use of the tromograph both for soil and structural characterisation, especially for massive masonry buildings located in areas with high seismic hazard.

摘要

地球物理调查广泛用于通过非侵入性方法重建地下地震地层结构。在这项研究中,地球物理调查旨在从动态角度描述拉古萨的圣乔治大教堂(意大利)及其所在地区。通过整合两种主动(即地震层析成像和表面波多道分析)和一种被动地震技术(水平到垂直空间比)来实现三维地下模型。后者方法所使用的仪器包括 Tromino( Tromino ),该仪器还通过环境振动测试用于对建筑物进行特征描述,重点是正面和穹顶,该测试通过标准频谱比和频域分解方法进行处理。整合显示具有不同物理力学特性区域分布的三维模型,可识别可能归因于古老的拜占庭圣尼古拉教堂遗址的异常。主要涉及两个被研究的宏观元素的四个较低模式被识别。实验结果概述了 Tromino 用于土壤和结构特征描述的优势,特别是对于位于高地震危险区域的大型砌体建筑。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4e55/9866046/a2a9af133d8d/sensors-23-00889-g001.jpg

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