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Computer Modeling And Seismic Performance Assessment Of Historic Aspendos Theatre In Antalya, Turkey

机译:土耳其安塔利亚历史悠久的阿斯潘多斯剧院的计算机建模和抗震性能评估

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Computer modeling and earthquake simulation of historic structures and monuments is important for understanding their behavior and for predicting their response for preservation and strengthening studies. This paper focuses on analytical and experimental studies conducted on the historic Aspendos theatre, which is a 2200-year-old structure located in Antalya, Turkey. Concerts and performances are still presented at the Aspendos theatre and the recent usage of high decibel amplifiers during concerts generates an increasing amount of concern about the structural safety of the theatre. A detailed 3D-FE model and on-site dynamic acceleration measurements were used to evaluate seismic performance by response-spectrum and time-history analyses. The same model was utilized to evaluate the resonance conditions of slender and lightly damped theatre walls under sound-induced vibrations by equivalent static loading. The maximum tensile stresses calculated for the earthquake loading were several times the assumed tensile capacity of the material and dead load generated compressive stresses, especially at the base and upper corners of the walls. The building is expected to experience heavy structural damage during a possible large earthquake and it may be assumed that the theatre must have been repaired many times during its lifetime. Sound-induced resonance state stresses were relatively less critical but might still pose danger under rare and unfavorable conditions. Vertical reinforcement placement inside the slender walls would improve the out-of-bending capacity while connecting inner and outer walls by two levels of slab would enhance load transfer mechanisms to the perpendicular side walls and improve the theatre's structural performance.
机译:历史建筑和古迹的计算机建模和地震模拟对于理解它们的行为以及预测其对保存和加强研究的响应而言非常重要。本文着重于对历史悠久的Aspendos剧院进行的分析和实验研究,该剧院位于土耳其安塔利亚,具有2200年的历史。音乐会和表演仍在Aspendos剧院举行,音乐会期间最近使用高分贝放大器引起了人们对剧院结构安全性的日益关注。通过响应频谱和时程分析,详细的3D-FE模型和现场动态加速度测量被用于评估地震性能。利用相同的模型,通过等效静载荷,在声音引起的振动下评估细长和轻阻尼剧院墙的共振条件。计算出的地震荷载的最大拉应力是假定的材料抗拉能力的几倍,而静载荷产生的压缩应力,尤其是在墙的底角和上角处。预计该建筑物在可能发生的大地震中将遭受严重的结构破坏,并且可以假定剧院在其使用寿命期间必须进行多次维修。声音引起的共振状态应力相对较小,但在罕见和不利条件下仍可能构成危险。在细长壁内垂直放置钢筋会提高抗弯能力,而通过两个水平的平板将内壁和外壁连接起来,则会增强垂直壁的荷载传递机制,并改善剧院的结构性能。

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