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Improved step-by-step modeling method for analyzing the mechanical behavior of steel structures during construction

机译:改进的逐步建模方法,用于分析钢结构在施工过程中的力学行为

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摘要

The step-by-step modeling method considering nonlinear effects is an effective method for analyzing the mechanical behavior of steel structures during construction. However, two problems have limited the widespread application of the traditional step-by-step modeling method: the positioning of newly assembled members and the transformation of the stiffness matrix and the nodal load and displacement vectors between different stages of construction. In this article, a new concept of "two moments of a construction stage" (the initial and final moments of each construction stage) is proposed to improve the step-by-step modeling method. Based on this concept, an improved step-by-step modeling method, which considers the modified design configuration positioning principle for newly assembled members and provides a method for modifying the structural stiffness matrix at the initial moment of any construction stage, is proposed. A calculation program block based on the proposed method is compiled to analyze the mechanical behavior of a plane frame and a plane shallow arch during construction. The mechanical behavior of an engineering application, the connective corridor of Shanghai International Financial Centre, is also analyzed using the proposed method, and the calculated results are compared with the monitoring results. The numerical results show that the modified design configuration positioning principle is applicable for the positioning of newly assembled members and that the modification method for the structural stiffness matrix and the nodal load and displacement vectors at the initial moment of a construction stage efficiently solves the problem of their transformation between different stages of construction. The improved step-by-step modeling method proposed in this article is more valid and accurate than other methods for analyzing the mechanical behavior of steel structures during construction.
机译:考虑非线性效应的逐步建模方法是一种分析钢结构在施工过程中力学行为的有效方法。然而,有两个问题限制了传统的逐步建模方法的广泛应用:新组装构件的定位以及刚度矩阵的转换以及在不同施工阶段之间的节点载荷和位移矢量。在本文中,提出了一个“施工阶段的两个时刻”(每个施工阶段的初始时刻和最终时刻)的新概念,以改进逐步建模方法。基于此概念,提出了一种改进的逐步建模方法,该方法考虑了新装配构件的修改后的设计配置定位原理,并提供了在任何施工阶段的初始时刻修改结构刚度矩阵的方法。编译了基于该方法的计算程序块,以分析​​平面框架和平面浅拱的施工过程中的力学行为。利用该方法对上海国际金融中心连接走廊工程应用的力学性能进行了分析,并将计算结果与监测结果进行了比较。数值结果表明,改进的设计构型定位原理适用于新装配构件的定位,结构刚度矩阵的修改方法,以及在施工初期的节点荷载和位移矢量的修改方法有效地解决了构件的问题。它们在不同施工阶段之间的转换。本文提出的改进的逐步建模方法比其他分析钢结构在施工过程中的力学行为的方法更为有效和准确。

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