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Dynamic properties of Byblos municipality building with soil-structure interaction using geophysical methods

机译:采用地球物理方法与土壤结构相互作用的伯明省市政建设的动态特性

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Byblos city is located on the coast north of Beirut, Lebanon, and is one of the oldest continuously-inhabited cities in the world. It is exposed to a moderate-up-to-high level of seismic activity, given its proximity to several major faults such as the Yammouneh and the Mount Lebanon Thrust, among others. To mitigate the risk encountered by Byblos buildings facing earthquake threat, a preliminary study of the dynamic properties of the structures is proposed in this paper. The recently-constructed Byblos Municipality building was chosen as a prototype for this study, given its important role as a vital structure for centralizing the emergency response, in the event of a disaster. The approach consists of using the horizontal to vertical ratio method, HVNR. By analysing the ambient noise recordings, one can determine the structural frequency, damping, and other stiffness characteristics, and identify the natural soil frequency. In order to investigate the soil structure interaction and specifically possible resonance occurrence during earthquakes, the values obtained are compared and analysed. In addition to classical geotechnical tests to reveal the type and properties of the considered in-situ soil, the multichannel analysis of surface waves, MASW, is used to investigate the stiffness of the subsurface conditions and determine the shear wave velocities of the layers. In parallel, the Finite Element Model of the structure is analysed and the result of the fundamental resonance frequencies is compared to the HVNR data, and to the computed values using conventional formulae recommended by classical building codes. Results and comparisons of experimental and numerical investigations are presented for the structure and analysed for further resonance analysis.
机译:Byblos City位于黎巴嫩贝鲁特北部的海岸,是世界上最古老的持续居住城市之一。它暴露于适度高达高水平的地震活动,鉴于近几个主要断层,例如Yammouneh和黎巴嫩山推力等。为了减轻面对地震威胁的Byblos建筑物所遇到的风险,本文提出了对结构动态特性的初步研究。鉴于这项研究的最近建造的Byblos市政大楼被选为本研究的原型,因为它在发生灾难时作为集中应急响应的重要组织的重要作用。该方法包括使用水平与垂直比法,HVNR。通过分析环境噪声记录,可以确定结构频率,阻尼和其他刚度特性,并识别天然土壤频率。为了研究地震期间的土壤结构相互作用,特别是可能的共振发生,比较和分析获得的值。除了透析所考虑的原位土壤的类型和性质之外,表面波的多通道分析用于研究地下条件的刚度并确定层的剪切波速度。并行地,分析了结构的有限元模型,并将基本谐振频率的结果与HVNR数据进行了比较,并且使用经典建筑码推荐的传统公式进行计算值。实验性和数值研究的结果和比较呈现结构,分析进一步共振分析。

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