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A three-dimensional method for the simulation of temperature fields induced by solar radiation

机译:模拟太阳辐射感应温度场的三维方法

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The determination of temperature fields is usually required for the calculation of structural deformation and stress induced by temperature variation. To guarantee the serviceability and safety of structures by improving calculation accuracy, this study presents a three-dimensional structural temperature field simulation framework that accounts for shadowing effects and changes in solar radiation intensity throughout the day. Field experiments were conducted to update the established model and to verify the accuracy of the numerical algorithm. The proposed method was finally applied in a case study to determine the temperature fields of both a rail and a U-shaped concrete girder. The results show that the temperature field of the concrete girder had obvious nonlinear distribution characteristics. Three-dimensional structural temperature field analysis is especially required for complicated structures with varied sections along the longitudinal axis.
机译:通常需要确定温度场,以计算温度变化引起的结构变形和应力。为了通过提高计算精度来保证结构的可维护性和安全性,本研究提出了一个三维结构温度场模拟框架,该框架考虑了全天的阴影效应和太阳辐射强度的变化。进行现场实验以更新建立的模型并验证数值算法的准确性。最后将所提出的方法应用于案例研究,以确定轨道和U形混凝土梁的温度场。结果表明,混凝土梁的温度场具有明显的非线性分布特征。三维结构温度场分析尤其适用于沿纵轴具有不同截面的复杂结构。

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