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首页> 外文期刊>Journal of Engineering Mechanics >Shear Lag Analysis of Thin-Walled Box Girders Adopting Additional Deflection as Generalized Displacement
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Shear Lag Analysis of Thin-Walled Box Girders Adopting Additional Deflection as Generalized Displacement

机译:采用附加挠度作为广义位移的薄壁箱梁的剪力滞分析

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摘要

The shear lag effect is one of the very important mechanical characteristics of thin-walled box girders and has been studied over several decades. However, the generalized displacement adopted in many papers is not very simple or clear, and the analytical procedure is somewhat complicated. In this paper, a new method for analyzing the shear lag effect in thin-walled box girders is proposed in which the additional deflection induced by the shear lag effect is adopted as a generalized displacement to describe the shear lag deformation state. Based on the generalized moment for shear lag defined in this paper, the shear lag deformation state is separated from the flexural deformation state of the corresponding elementary beam and analyzed as a fundamental deformation state. The governing differential equation and boundary condition for the additional deflection are established by applying the principle of minimum potential energy, and the initial parameter solution to the differential equation is given. A very simple and convenient formula of shear lag warping stress is proposed that has the same form as that of the bending stress of the elementary beam. A finite beam segment element with eight degrees of freedom is developed to analyze the shear lag effect in complex continuous box girders with varying depth. An example of a simply supported concrete box girder is provided in which the results obtained by the present method are compared with those by FEM, finite-strip method, and other existing analytic methods. A three-span continuous box-girder model with varying depth is also analyzed, and the calculated results are in a good agreement with the test results on the whole, which validates the analytical method and the element presented.
机译:剪力滞后效应是薄壁箱梁的非常重要的机械特性之一,并且已经进行了数十年的研究。但是,许多论文中采用的广义位移不是很简单或不清楚,并且分析过程有些复杂。本文提出了一种分析薄壁箱梁剪力滞效应的新方法,该方法采用剪力滞效应引起的附加挠度作为广义位移来描述剪力滞变形状态。根据本文定义的广义剪力滞矩,将剪力滞变形状态与相应基本梁的挠曲变形状态分离,并作为基本变形状态进行分析。应用最小势能原理建立了控制偏微分方程和附加挠度的边界条件,并给出了微分方程的初始参数解。提出了一个非常简单方便的剪力滞后翘曲应力公式,该公式具有与基本梁的弯曲应力相同的形式。开发了一个具有八个自由度的有限梁分段单元,以分析复杂连续箱形梁在不同深度下的剪力滞后效应。提供了一个简单支撑的混凝土箱形梁的例子,其中将本方法获得的结果与有限元,有限条方法和其他现有分析方法得到的结果进行比较。分析了不同深度的三跨连续箱梁模型,计算结果与整体试验结果吻合良好,验证了所提出的分析方法和提出的要素。

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