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Experiment study and refined modeling of temperature field of steel-concrete composite beam bridges

机译:钢混凝土复合梁桥温度场的实验研究与精制建模

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摘要

The temperature field and its effect are important issues related to the design and construction of bridges. For steel-concrete composite bridges, the huge difference in thermal performance between steel and concrete makes the temperature field distribution and variation more complicated. In this paper, an indoor baking lamp radiation experiment with controllable parameters is carried out on a group of two steel-concrete composite beam specimens for the study of temperature field. The temperature time-history and distribution laws of the specimen during heating and cooling process are observed and analyzed. Furthermore, a refined numerical model of the solar temperature field of the composite bridge is established and verified by the baking lamp radiation experiment. The proposed refined numerical model of the temperature field of the steel-concrete composite bridge realizes the temperature field analysis of various cross-sections of composite bridges and can automatically consider the shielding effect of the flange on the web, providing a useful tool for the modeling of and analysis of the temperature field of composite bridges.
机译:温度场及其效果是与桥梁的设计和施工有关的重要问题。对于钢混凝土复合桥,钢和混凝土之间的热性能巨大差异使温度场分布和变化更加复杂。本文采用可控参数的室内烘烤灯辐射实验是对温度场研究的一组两个钢混凝土复合梁样本进行的。观察和分析了在加热和冷却过程中试样的温度时间历史和分布规律。此外,通过烘烤灯辐射实验建立和验证复合桥的太阳能温度场的精细数值模型。钢混凝土复合材料桥温度场的提出的精细数值模型实现了复合桥的各种横截面的温度场分析,可以自动考虑卷筒法兰的屏蔽效果,为造型提供有用的工具复合桥梁温度场的研究与分析。

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