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Seismic response evaluation of monuments based on ambient vibrations: the case studies of a Byzantine basilica and an Ottoman bath in Thessaloniki (Greece)

机译:基于环境振动的古迹的地震反应评价:拜占庭大教堂和塞萨洛尼基(希腊)的拜占庭浴室的案例研究

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摘要

The present work focuses on the seismic response and damage distribution studies on two Thessaloniki monuments with different structural systems. The first one is the Acheiropoietos basilica-a Byzantine monument included in the World Heritage List of UNESCO-with a flexible structural system consisted of internal colonnades and perimeter walls. The second one is the Bey hamam, an Ottoman bath with a stiff structural system. Its successive square or rectangular functional spaces are organized in such a way as to obtain both spatial and structural (bearing structure) autonomy; thick internal and external walls in two directions bear the domes directly or through single or double arches. Both monuments were subjected to the June 20, 1978 Thessaloniki earthquake ground motion (EQ) (M6.5) with significant damage which were accurately recorded and demonstrated in the Ephorate of Antiquities of Thessaloniki (EFAPOTH) archives. Sets of ambient vibration measurements were performed before any intervention work at the basilica. For the present study, similar measurements were performed at both monuments. Their eigen-properties were then calculated based on this data. Both monuments were modeled in details by finite element method; the analytical models were calibrated for the optimum approach of the eigen-properties resulted by the measurements. The main calibration parameter was the modulus of elasticity of the masonry walls. These calibrated models were also analytically subjected to the recorded acceleration time history of the Thessaloniki 1978 EQ. The findings of this work are related to the appropriately documented material properties and factors of these monuments that are unique. The result of this procedure was the calibration of reliable finite element models for response evaluation of the structures to potential ground motions in future earthquakes. These models were capable to quantitatively explain the damage patterns observed in the monuments. The monument with higher stiffness (Ottoman bath) exhibited damage concentrated to fewer elements than the more flexible monument (Byzantine basilica) where the damages were distributed to many structural elements.
机译:目前的工作侧重于不同结构系统的两个塞萨洛尼基纪念碑的地震反应和损伤分布研究。第一个是acheiropoietos大教堂 - 拜占庭纪念碑包括在世界遗产名单的教科文组织的遗产名单中,具有灵活的结构系统,包括内部柱廊和周边墙壁。第二个是Bey Hamam,奥斯曼浴室,具有僵硬的结构系统。其连续的正方形或矩形功能空间是以空间和结构(轴承结构)自主权的方式组织的;两个方向的厚内外墙直接或通过单拱携带圆顶。纪念碑均经过1978年6月20日塞萨洛尼基地震地面运动(EQ)(M6.5),其损害严重损害,在塞萨洛尼基(EFAPOTH)档案的意识形症中精确记录和证明。在大教堂的任何干预工作之前进行环境振动测量。对于本研究,在两个纪念碑中进行了类似的测量。然后根据该数据计算它们的特征性质。两个纪念碑通过有限元方法详细建模;分析模型被校准,以获得由测量结果产生的最佳方法。主要校准参数是砌体墙壁的弹性模量。这些校准的模型也被分析地进行了Thessaloniki 1978年调的记录的加速时间历史。这项工作的调查结果与这些古迹的适当记录的材料属性和因素有关。该程序的结果是校准可靠的有限元模型,用于响应结构对未来地震中的潜在地面运动的响应评估。这些模型能够定量解释在纪念碑中观察到的损伤模式。较高刚度(OTTOMAN浴)的纪念碑表现出集中到更少的元素的损失,而不是更灵活的纪念碑(拜占庭大教堂),其中损坏分配给许多结构元素。

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