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首页> 外文期刊>Bulletin of Earthquake Engineering >Nonlinear dynamic response of r.c. framed structures subjected to near-fault ground motions
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Nonlinear dynamic response of r.c. framed structures subjected to near-fault ground motions

机译:RC的非线性动态响应承受近断层地震动的框架结构

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摘要

The nonlinear dynamic response of reinforced concrete (r.c.) framed buildings subjected to near-fault ground motions is studied to check the effectiveness of current code provisions with reference to study cases. Three-, six- and twelve-storey r.c. plane frames, representative of symmetric framed buildings, are designed according to the European seismic code (EC8), assuming medium and high ductility classes and stratigraphic profiles A (rock) and D (soft soil) in a high-risk seismic region. The nonlinear seismic analysis is performed using a step-by-step procedure; a bilinear model idealizes the behaviour of the r.c. frame members. Artificially generated motions (matching EC8 response spectra for subsoil classes A and D) and horizontal motions (recorded on rock- and soft soil-site at near-fault areas) are considered. The results indicate that near-fault ground motions may require a special consideration in the code, in particular when designing r.c. framed structures placed on a soft soil-site; particular attention should be paid to the design of the frame members of the lower storeys.
机译:研究了钢筋混凝土(r.c.)框架建筑物在近断层地震动下的非线性动力响应,以参考研究案例检查当前规范的有效性。三层,六层和十二层代表对称框架建筑物的平面框架是根据欧洲地震法规(EC8)设计的,假设在高风险地震区中具有中等和高延性等级,并具有地层剖面A(岩石)和D(软土)。非线性地震分析使用分步过程进行;双线性模型理想化了r.c.框架成员。考虑了人工产生的运动(A和D类土壤的EC8响应谱相匹配)和水平运动(记录在断层附近岩石和软土现场)。结果表明,特别是在设计r.c.框架结构放置在柔软的土壤上;应特别注意下层框架构件的设计。

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