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Correlation between Acoustic Emission and Seismicity in the Sacred Mountain of Varallo Renaissance Complex in Italy

机译:意大利Varallo文艺复兴区综合体神圣山声排放与地震性的相关性

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In this work, we examine an application of AE technique for a probabilistic prediction of the time and place of earthquakes, in order to preserve the inestimable Italian Renaissance Architectural Complex named "The Sacred Mountain of Varallo". This historical site is composed of 45 Chapels, some of which are isolated, while others are part of monumental groups. The Chapels contain over 800 life-size wooden and multicoloured terracotta statues, which represent the Life, Passion and Death of Christ. The site is considered the most notable example in the group of Sacred Mounts of Piedmont, a complex that has been included in the UNESCO World Heritage List since 2003. The structure of the Chapel XVII of this Renaissance Complex is at risk for its poor structural health and on account of the intensity of the stresses it is subjected to, due to the level of regional seismicity. For the reliability and safety of this masterpiece of cultural heritage, a life-time assessment should take into account the evolution of damage phenomena. Therefore a continuous AE monitoring is performed to assess the structural behavior of the Chapel. Earthquakes always affect structural stability: the amount of energy released in a seismic event can cause catastrophic damage in a wide variety of ways. Beside this well-known point of view, in this paper it is claimed that the structures of the "Sacred Mountain of Varallo" behave as sensitive earthquake receptors, since the stress propagation through the Earth's crust, which can be considered as an earthquake precursor, can be effectively monitored by means of the AE technique. In some works, a burst of AE activity is considered as representative of a large amount of stress which is crossing some large crustal area surrounding the AE recording site. Such AE crises are observed some time in advance compared to the earthquake, leading to consider AE records like earthquake precursors. During the monitoring period, a correlation between peaks of AE activity in the masonry of the "Sacred Mountain of Varallo" and regional seismicity is found. These two classes of phenomena, AE in materials and earthquakes in Earth's crust, though they take place on very different scales, are very similar due to the release of elastic energy from localized sources inside the medium: opening microcracks and hypocenters of earthquakes.
机译:在这项工作中,我们研究了AE技术的应用,以实现地震时间和地点的概率预测,以保护被视为“Varallo神圣山”的无可估量的意大利文艺复兴建筑群。这座历史部位由45个教堂组成,其中一些被隔离,而其他人则是纪念群体的一部分。教堂含有超过800个寿命的木和多彩多姿的赤土陶器雕像,它代表了基督的生命,激情和死亡。该网站被认为是自2003年以来一直包含在联合国教科文组织世界遗产名录中的复杂的山区神圣山的最着名的例子。这个文艺复兴的复杂的教堂XVII的结构面临其贫困结构健康的风险由于区域地震性的水平,因此由于区域地震性的水平,而且由于区域震荡的水平。对于这种文化遗产的这种杰作的可靠性和安全性,终身评估应考虑到损害现象的演变。因此,执行连续的AE监测以评估教堂的结构行为。地震始终影响结构稳定性:在地震事件中释放的能量量可以各种方式造成灾难性损害。除了众所周知的观点外,在本文中,声称,“Varallo的神圣山”的结构表现为敏感的地震受体,因为通过地壳的应力传播,这可以被认为是地震前体,可以通过AE技术有效地监测。在一些作品中,AE活动的突发被认为是大量压力的代表,这是围绕AE记录部位的一些大型地壳区域。与地震相比,此类AE危机的一段时间被预先观察到,导致考虑像地震前体这样的AE记录。在监测期间,发现了“Varallo”砌体中AE活性峰之间的相关性。这两种阶段的现象,地壳中的材料和地震中的地震,虽然它们在非常不同的尺度上发生,因此由于介质内部的局部来源的弹性能量释放而非常相似:开口微裂纹和地震的低缩进者。

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