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首页> 外文期刊>American journal of engineering and applied sciences >Seismic Performance Evaluation of Reinforced Concrete Moment Resisting Frames with Various Ductility in Low Seismic Zone | Science Publications
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Seismic Performance Evaluation of Reinforced Concrete Moment Resisting Frames with Various Ductility in Low Seismic Zone | Science Publications

机译:低延性地区不同延性的钢筋混凝土抗弯框架的抗震性能评估科学出版物

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> Problem statement: Bangkok, the capital of Thailand, is at moderate risk for distant earthquake due to the ability of soft soil to amplify ground motion about 3-4 times although it locates in low seismic zone. In addition, before the enforcement of seismic loading for buildings in the Ministerial Law in 2007, many existing reinforced concrete buildings in Bangkok may have been designed without consideration for seismic loading and did not incorporate the special detailing provisions that required for ductile concrete frames. Now, guidelines for seismic loading of buildings of Thailand (DPT 1302-52) have been recently improved by adopting ASCE7-05. Approach: This study is focused on the effects of the new guidelines on cost estimates and the seismic performance of a nine-story reinforced concrete apartment building with various ductility by the nonlinear static and nonlinear dynamic analyses compared with a Gravity Load Designed (GLD) building. Five selected ground motion records are investigated in the analyses. In order to examine the influence of design ductility classes, the seismic forces on moment resisting frame buildings are defined according to the newly proposed seismic specifications of Thailand with ductility from 8, 5 and 3, corresponding to Special Ductile (SDF), Intermediate Ductile (IDF) and Ordinary Ductile (ODF) frames, respectively. The various frames are assumed to have collapsed if the local drift exceed of 3, 2.5, 2 and 1% for SDF, IDF, ODF and GLD, respectively. Results: SDF is more ductile than that of ODF, however, the strength of SDF is less than ODF. For inelastic designs, SDF decreases stiffness and increases deflection of structures. As for the effect on cost estimates, ODF is the most expensive among ODF, IDF and SDF. Costs of SDF and IDF in Bangkok are quite similar. The study found that the average PGAs for the failure state for SDF, IDF, ODF and GLD are 0.76, 0.60, 0.50 and 0.29g, respectively. Moreover, for the failure state of GLD with volumetric ratio of horizontal confinement within joint panel less than 0.003, the average PGA is only 0.15g. Conclusion/Recommendations: These various frame designs are predicted to just achieve the Immediate Occupancy (IO) performance level. The results also indicate that all frames including GLD are able to withstand a design earthquake. The SDF and IDF are the two best options in consideration of cost and seismic performance.
机译: > 问题陈述:泰国首都曼谷处于遥远地震的中等风险,这是由于软土能够将地面运动放大大约3-4倍,尽管它位于在低地震带。此外,在2007年《部颁法》强制实施建筑物的地震荷载之前,曼谷许多现存的钢筋混凝土建筑物在设计时都没有考虑地震荷载,并且未纳入延性混凝土框架所需的特殊详细规定。现在,最近通过采用ASCE7-05改进了泰国建筑物的地震荷载准则(DPT 1302-52)。 方法:通过非线性静力和非线性动力分析,对比新准则对具有不同延性的9层钢筋混凝土公寓楼的成本估算和抗震性能的影响。重力荷载设计(GLD)建筑物。在分析中研究了五个选定的地震动记录。为了检查设计延性等级的影响,根据泰国新提出的抗震框架,将延性分别为8、5和3的抗震框架结构定义了地震力,分别对应于特殊延性(SDF),中延性( IDF)和普通延性(ODF)帧。如果SDF,IDF,ODF和GLD的局部漂移分别超过3%,2.5%,2%和1%,则假定各种帧已崩溃。 结果: SDF比ODF更具延展性,但是SDF的强度小于ODF。对于非弹性设计,SDF会降低刚度并增加结构的挠度。至于对成本估算的影响,ODF在ODF,IDF和SDF中最昂贵。曼谷的SDF和IDF的成本非常相似。研究发现,SDF,IDF,ODF和GLD失效状态的平均PGA分别为0.76、0.60、0.50和0.29g。此外,对于关节面板内水平约束体积比小于0.003的GLD失效状态,平均PGA仅为0.15g。 结论/建议:这些不同的框架设计预计将达到即时占用(IO)性能水平。结果还表明,包括GLD在内的所有框架都能够承受设计地震。考虑到成本和抗震性能,SDF和IDF是两个最佳选择。

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