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Prediction of Shear Lag Effect in Thin-Walled Single-Box Multicell Box Girder Based on the Modified Warping Displacement Function

机译:基于改进的翘曲位移函数的薄壁单箱多电箱箱梁剪力滞效应预测

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In this study, an effective and accurate theoretical analysis method for predicting the shear lag effect in the thin-walled single-box multicell box girder is presented. The modifications of longitudinal warping displacement functions at the flanges are fully investigated, including the shear lag width (bij) of flanges, the coefficients (αij) of shear lag warping functions, the deformation compatibility conditions in flanges, and the internal force balance (D). The initial shear deformation (γ03) in the top lateral cantilever flanges is innovatively introduced in multicell box girders and obtained by the designed procedure. In addition, the transverse distribution function for describing the longitudinal warping displacement is deduced and expressed in the form of the cosine function. Based on the principle of minimum potential energy, the governing differential equations are derived and solved with the associated boundary and load conditions. The accuracy and applicability of the proposed method (SL-THY2) are validated for four thin-walled single-box multicell (two- and three-cell) box girders with the results derived from the solid finite element method.
机译:在本研究中,提出了一种有效和准确的理论分析方法,用于预测薄壁单箱多电箱箱梁中的剪切滞后效果。完全研究了凸缘处的纵向翘曲位移功能的修改,包括法兰的剪切滞后宽度(BIJ),剪切扭曲翘曲功能的系数(αij),法兰中的变形兼容性条件以及内部力平衡(D. )。顶部侧悬臂凸缘中的初始剪切变形(γ03)在多电池盒梁梁中创新地引入并通过设计的程序获得。另外,用于描述纵向翘曲位移的横向分布功能以余弦功能的形式表达。基于最小势能的原理,通过相关边界和负载条件来导出和解控制微分方程。所提出的方法(SL-THY2)的准确性和适用性被验证为四个薄壁单盒子多电池(两箱和三池)盒梁梁,其结果来自固体有限元方法。

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