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Shear Resistant Behavior of RC Columns Subjected to Axial Pulse-Like Ground Motions

机译:RC柱对轴向脉冲状地面运动的抗剪切性能

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The shear-resistant behavior of reinforced concrete (RC) columns subjected to axial velocity pulse-like ground motions was studied. Single RC columns with the constant vertical and horizontal fundamental period were used to investigate the influences of fault-distance of earthquake records, vertical to horizontal acceleration spectral ratio of earthquake records, initial axial load ratio and shear span ratio of RC column, on the shear-resistant behavior of RC columns. a suite of 18 strong ground motion records from Chi-chi earthquake divided into three fault-distance groups were taken as excitations to execute nonlinear dynamic time history analysis. The results demonstrated that axial velocity pulse-like earthquake action (fault-distance) had significant influences on the shear resistant-resistant of RC columns. Shear-resistant behavior (shear capacity/shear demand) increases with the increasing of fault-distance. Fault-distance and shear span ratio had a certain coupling influences on the shear-resistant behavior of RC columns.
机译:研究了经受轴向速度脉冲状地运动的钢筋混凝土(RC)柱的抗剪切性能。使用恒定垂直和水平基础时段的单个RC柱用于研究地震记录的故障距离,垂直于地震记录,初始轴向载荷比和RC柱剪切频率比的影响,剪切 - RC列的行为。一系列来自Chi-Chi地震的18个强大的地面运动记录分为三个故障距离组,作为执行非线性动态时间历史分析的激励。结果表明,轴向速度脉冲类似的地震作用(故障距离)对RC柱的抗剪切抗性的影响显着。抗剪切行为(剪切容量/剪切需求)随着故障距离的增加而增加。故障距离和剪切跨度比对RC柱的抗剪切行为具有一定的耦合影响。

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