基于基础隔震技术的战略砌体结构抗震改造:意大利古比奥“giacomo matteotti”学校建筑案例研究

S. Barone, R. Vetturini
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引用次数: 0

摘要

既有结构的抗震加固是地震工程领域一个极为重要的课题。对于学校和军事建筑、桥梁和一般基础设施等战略性结构,与传统结构相比,预期性能水平进一步提高,以保证两个基本目标:抵抗与生命安全极限状态相对应的最终设计地震作用,并保证地震事件发生后立即使用。这意味着不会损坏结构元件以及保护内部设备免受过度加速。因此,结构功能是战略结构改造的最低可接受水平。对于位于中高地震活动区的砌体建筑,传统的加固(即墙对顶、墙对楼锚固、面外墙支撑、隔膜加固)不能完全实现上述目标。此外,这些技术的应用对结构产生了重要的侵入性影响,在建筑和功能层面上扭曲了建筑。基础隔震是一种技术解决方案,使用具有高度水平灵活性的特殊抗震装置,可以大大降低对结构的地震需求。本文描述了隔震技术在意大利古比奥市“Giacomo Matteotti”学校建筑中的应用。该建筑建于20世纪40年代,由铸石和砖以及钢筋混凝土-空心砖混合地板组成。建筑共三层,总面积6000平方米,层高4米,总容积约23.750立方米。古比奥市(意大利翁布里亚地区)位于强震高发地区,预计475年的回复期(即50年超过10%的概率),岩石土壤的峰值地面加速度为0.29g。对于基础隔震系统,Freyssinet提供了94个抗震橡胶隔震器ISOSISM®型HDRB-H 550x155和93个带约束弹性圆盘TETRON®型CD GL 3000.600.600的扁平滑块,以减少隔震系统的质量中心和刚度中心之间的偏心,从而减少上部结构的扭转影响。本文介绍了隔振器的性能特点,重点介绍了实验动态响应。特别关注的是隔离砖石结构所需的所有施工阶段和细节。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
SEISMIC RETROFIT OF STRATEGIC MASONRY STRUCTURES WITH BASE ISOLATION TECHNIQUE: THE CASE STUDY OF “GIACOMO MATTEOTTI” SCHOOL BUILDING IN GUBBIO, ITALY
Seismic retrofit of existing structures is an extremely important topic in the field of earthquake engineering. For strategic structures such as school and military buildings, bridges and infrastructures in general, the expected performance level is further raised compared to conventional structures to guarantee two fundamental targets: to resist the ultimate design seismic action corresponding to the life safety limit state and to guarantee immediate occupancy after an earthquake event. This means no damage to the structural elements as well as protection of internal equipment from excessive accelerations. Structure functionality is therefore the minimum acceptable level of retrofit for strategic structures. In case of masonry buildings located in medium-high seismicity zones, conventional retrofit (i.e. wall-to-roof and wall-to-floor anchorage, out-of-plane wall bracing, diaphragm strengthening) does not allow to fully achieve the above objectives. Furthermore, the application of these techniques causes an important and invasive impact on the structure, distorting the building on both architectural and functional level. Base isolation is a technical solution that allows to drastically reduce the seismic demand on the structure using special anti-seismic devices characterized by high horizontal flexibility. This paper describes the application of seismic isolation technique to protect the “Giacomo Matteotti” school building, located in the city of Gubbio, Italy. The building was built in the 1940s, and it is made of cast stone and bricks and reinforced concrete-hollow tiles mixed floors. The building has three floors, a total area of 6.000 m2, an inter-storey height of 4 m and a total volume of about 23.750 m3. The City of Gubbio (Umbria region, Italy), is located in an area where strong earthquakes can occur, with expected peak ground acceleration on rock soil equal to 0.29g for 475 years return period (i.e., 10% exceedance probability in 50 years). For the base isolation system, Freyssinet has supplied 94 anti-seismic rubber isolators ISOSISM® type HDRB-H 550x155 and 93 flat sliders with confined elastomeric disc TETRON® type CD GL 3000.600.600 in order to reduce the eccentricity between centre of mass and centre of stiffness of the isolation system and consequently the torsional effects on the superstructure. This paper describes the performance characteristics of the isolators with particular attention to the experimental dynamic response. A special focus is given to all the construction phases and details necessary to isolate a masonry structure.
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