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Nonlinear analysis of the progressive collapse of reinforced concrete plane frames using a multilayered beam formulation

机译:多层梁公式对钢筋混凝土平面框架逐渐倒塌的非线性分析

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This work investigates the response of two reinforced concrete (RC) plane frames after the loss of a column and their potential resistance for progressive collapse. Nonlinear dynamic analysis is performed using a multilayered Euler/Bernoulli beam element, including elasto-viscoplastic effects. The material nonlinearity is represented using one-dimensional constitutive laws in the material layers, while geometrical nonlinearities are incorporated within a corotational beam formulation. The frames were designed in accordance with the minimum requirements proposed by the reinforced concrete design/building codes of Europe (fib [1-2], Eurocode 2 [3]) and Brazil (NBR 6118 [4]). The load combinations considered for PC analysis follow the prescriptions of DoD [5]. The work verifies if the minimum requirements of the considered codes are sufficient for enforcing structural safety and robustness, and also points out the major differences in terms of progressive collapse potential of the corresponding designed structures.
机译:这项工作调查了两根钢筋混凝土(RC)平面框架在失去柱子后的响应及其对逐渐倒塌的潜在抵抗力。非线性动力学分析是使用多层Euler / Bernoulli梁单元进行的,包括弹黏塑性效应。材料非线性是使用材料层中的一维本构定律表示的,而几何非线性则包含在corateative梁公式中。框架的设计符合欧洲(纤维[1-2],欧洲规范2 [3])和巴西(NBR 6118 [4])的钢筋混凝土设计/建筑规范提出的最低要求。用于PC分析的载荷组合遵循DoD的规定[5]。这项工作验证了所考虑规范的最低要求是否足以增强结构安全性和坚固性,并且还指出了相应设计结构在逐渐倒塌潜能方面的主要差异。

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