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Evaluation of Formation of Plastic Hinge and Seismic Behavior of Steel Structures Due to Soil-Structure-Tunnel Interaction

机译:钢结构塑料铰链形成与钢结构抗震性能的评价及土壤 - 结构隧道相互作用

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摘要

The seismic design of the structures is carried out by technical regulations and codes in free-field conditions (regardless of underground cavities). With the availability of tunnels and the complex interaction between the tunnel and the aboveground structures, which may be contemplated wrongly, it could be dangerous for over ground buildings and structures. Consequently, the examination of the underground tunnels and their impact on the land surface and adjacent buildings seismic response seems to be significant. The present research focuses on formation of the plastic hinges in steel structures due to underground cavities and the soil- tunnel-structure interaction of underground structures. First, an existing model was verified by finite element method and the results were compared with a sample specimen. Thus, several effective parameters were considered and studied such as soil type, multi-story structures (4, 8 and 12 stories) and dynamic load type. Then the models were evaluated under real earthquake records. As a result, the seismic response of the structures and plastic conditions of plastic hinge conditions were obtained. The results indicate that the underground cavities have affected the formation of plastic hinges in the structure. They increased the input energy to the structure and had an impact on the total behavior of the structures. Also, the high-rise structures were much more vulnerable to underground tunnels. Therefore, the structures which are located above the underground cavities should be retrofitted and rehabilitated.
机译:结构的地震设计是通过释放自由场条件(无论地下腔)的技术法规和代码进行。随着隧道和地面结构之间的复杂相互作用的情况下,可能是错误的,这可能对地面建筑物和结构可能是危险的。因此,对地下隧道的检查及其对土地面和相邻建筑物的影响似乎是显着的。本研究侧重于由于地下腔和地下结构的土壤隧道结构相互作用形成钢结构中塑料铰链的形成。首先,通过有限元方法验证现有模型,并将结果与​​样品标本进行比较。因此,考虑了几种有效参数,并研究了土壤类型,多层结构(4,8和12个故事)和动态载荷类型。然后在真正的地震记录下评估模型。结果,获得了塑料铰链条件的结构和塑料条件的地震反应。结果表明,地下腔体影响了结构中塑料铰链的形成。它们对结构的输入能量提高了对结构的影响,对结构的总行为产生了影响。此外,高层结构更容易受到地下隧道的影响。因此,应改造和恢复位于地下腔上方的结构。

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