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首页> 外文期刊>Steel & Composite Structures: An International Journal >Behavior of semi-rigid steel frames under near- and far-field earthquakes
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Behavior of semi-rigid steel frames under near- and far-field earthquakes

机译:近极地地震下半刚性钢框架的行为

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The realistic modeling of the beam-column semi-rigid connection in steel frames attracted the attention of many researchers in the past for the seismic analysis of semi-rigid frames. Comparatively less studies have been made to investigate the behavior of steel frames with semi-rigid connections under different types of earthquake. Herein, the seismic behavior of semi-rigid steel frames is investigated under both far and near-field earthquakes. The semi-rigid connection is modeled by the multilinear plastic link element consisting of rotational springs. The kinematic hysteresis model is used to define the dynamic behavior of the rotational spring, describing the nonlinearity of the semi-rigid connection as defined in SAP2000. The nonlinear time history analysis (NTHA) is performed to obtain response time histories of the frame under scaled earthquakes at three PGA levels denoting the low, medium and high-level earthquakes. The other important parameters varied are the stiffness and strength parameters of the connections, defining the degree of semi-rigidity. For studying the behavior of the semi-rigid frame, a large number of seismic demand parameters are considered. The benchmark for comparison is taken as those of the corresponding rigid frame. Two different frames, namely, a five-story frame and a ten-story frame are considered as the numerical examples. It is shown that semi-rigid frames prove to be effective and beneficial in resisting the seismic forces for near-field earthquakes (PGA approximate to 0.2g), especially in reducing the base shear to a considerable extent for the moderate level of earthquake. Further, the semi-rigid frame with a relatively weaker beam and less connection stiffness may withstand a moderately strong earthquake without having much damage in the beams.
机译:钢框架中光束柱半刚性连接的现实建模引起了许多研究人员对半刚性框架的地震分析的研究。已经对不同类型的地震下的半刚性连接进行了相对较少的研究,以研究钢框架与半刚性连接的行为。这里,在远地地震下研究了半刚性钢框的地震行为。半刚性连接由由旋转弹簧组成的多线性塑料连杆元件进行建模。运动滞后模型用于定义旋转弹簧的动态行为,描述SAP2000中定义的半刚性连接的非线性。执行非线性时间历史分析(NTHA)以在表示低,中和高级地震下的三个PGA水平下获得缩放地震下框架的响应时间历史。其他重要参数变化是连接的刚度和强度参数,定义半刚度程度。为了研究半刚性框架的行为,考虑了大量地震需求参数。用于比较的基准作为相应的刚性框架的基准。两个不同的框架,即五层框架和十个楼的框架被认为是数值例子。结果表明,半刚性框架被证明是有效和有益的,抵抗近场地震的地震力(PGA近似为0.2g),特别是在将基础剪切还原到适当的地震水平的相当程度。此外,具有相对较弱的梁和较少的连接刚度的半刚性框架可以承受中等强烈的地震,而不会在梁中具有大量损坏。

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