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首页> 外文期刊>Bulletin of earthquake engineering >Effects of near-fault vertical earthquakes on the nonlinear incremental response of r.c. base-isolated structures exposed to fire
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Effects of near-fault vertical earthquakes on the nonlinear incremental response of r.c. base-isolated structures exposed to fire

机译:近断层垂直地震对钢筋混凝土非线性增量响应的影响遭受火灾的基础隔离结构

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High values of the ratio between the peak of the vertical and horizontal ground accelerations of near-fault ground motions can become critical once the strength level of a fire-weakened base-isolated structure is reduced especially as the ductility demand can increase much more rapidly for an ever-lower strength level. In the present work, the incremental dynamic analysis (IDA) of base-isolated structures exposed to fire is carried out considering the horizontal and vertical components of seven near-fault ground motions with different values of the peak acceleration ratio. To this end, six five-storey reinforced concrete office buildings, base-isolated with high-damping-laminated-rubber bearings (HDLRBs), are designed assuming different values of the ratio between the vertical and horizontal stiffnesses of the HDLRBs. The design of the test structures is carried out in a high-risk region considering (besides the gravity loads) the horizontal seismic loads acting in combination with the vertical ones. Five fire scenarios are considered at 45 (i.e. R45) and 60 (i.e. R60) min of resistance, with the parametric temperature-time fire curve evaluated in accordance with Eurocode 1: i.e. fire compartment at the fifth level (F5), the upper two (F4/5) and the other (Fi, i = 1-3) levels. The nonlinear IDA analysis is carried out in a step-by-step procedure, which is based on a two-parameter implicit integration scheme and an initial-stress-like iterative procedure. At each step of the analysis, plastic conditions are checked at the potential critical sections of the beams (i.e. end sections of the sub-elements in which a beam is discretized) and columns (i.e. end sections), where a bilinear moment-curvature law is adopted; the effect of the axial load on the ultimate bending moment (M-N interaction) of the columns is also taken into account. Finally, reduced strength and ultimate ductility of the cross-sections are evaluated in line with the 500 degrees C isotherm method proposed by Eurocode 2.
机译:一旦降低了防火薄弱的基础隔震结构的强度水平,特别是因为延展性需求可以更快地增加,则近断层地面运动的垂直和水平地面加速度峰值之间的比率之高值就变得至关重要。越来越低的强度水平。在目前的工作中,考虑到七个近断层地震动的水平和垂直分量(具有不同的峰值加速度比值),对暴露于火中的基础隔离结构进行了增量动力分析(IDA)。为此,设计了六座五层高的钢筋混凝土办公楼,它们之间用高阻尼层合橡胶轴承(HDLRB)进行了基础隔离,并假设HDLRB的垂直和水平刚度之比不同。测试结构的设计是在高风险区域中进行的,考虑(除了重力载荷)水平地震载荷与垂直地震载荷共同作用。在阻力为45(即R45)和60(即R60)min时考虑了五种火灾情况,并根据Eurocode 1评估了参数化的温度-时间火灾曲线:即第五层(F5)的火室,上两层(F4 / 5)和其他(Fi,i = 1-3)级别。非线性IDA分析是按照分步过程进行的,该过程基于两参数隐式积分方案和类似初始应力的迭代过程。在分析的每个步骤中,在梁的潜在临界部分(即,将梁离散化的子元素的末端部分)和圆柱(即末端部分)处检查塑性条件,其中双线性弯矩曲率定律被采用;还考虑了轴向载荷对柱的极限弯曲力矩(M-N相互作用)的影响。最后,根据欧洲规范2提出的500摄氏度等温线方法评估截面的强度降低和极限延展性。

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