桥梁与外部环境之间的对流和辐射传热回顾

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS ACS Applied Bio Materials Pub Date : 2024-05-07 DOI:10.1177/13694332241252270
Linren Zhou, Ruitian Wanyan, Shaoji Li
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引用次数: 0

摘要

桥梁与外部环境之间的热交换是造成桥梁温度效应的主要原因。由于两相(气-固)传热机理的复杂性、桥梁材料表面特性的多样性以及桥梁所处环境的不确定性,使得桥梁与外部环境之间热交换的数值计算非常困难。世界各地的学者已经开展了多项研究。本文对桥梁与外部环境之间的对流和辐射换热研究进行了调查、分析和总结。研究了桥梁温度的影响因素和计算方法,总结分析了用于研究桥梁与外部环境关系的对流换热和辐射换热机理、理论计算和实验测量方法。总结了桥梁温度场计算中对流传热系数和辐射吸收系数的取值方法。此外,还评价了当前研究中存在的问题和不足,并确定和讨论了未来的研究方向。
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Review on convective and radiation heat transfer between bridges and external environments
The heat exchange between bridges and external environments is the primary cause of the temperature effect on bridges. The complexity of the two-phase (gas–solid) heat transfer mechanism, the diversity of the surface characteristics of bridge materials, and the uncertainties of the environment in which bridges are located make the numerical calculation of the heat exchange between bridges and external environments difficult. Several studies have been conducted by scholars around the world. In this work, the research on convective and radiative heat exchange between bridges and external environments is surveyed, analyzed, and summarized. The influencing factors and calculation methods of bridge temperature are examined, and the convective heat transfer and radiation mechanisms, theoretical calculations, and experimental measurement methods used to investigate the relation between bridges and external environments are summarized and analyzed. The value determination methods for convective heat transfer and radiation absorption coefficients in the calculation of the bridge temperature field are summarized. In addition, the problems and shortcomings of current research are evaluated, and future research directions are identified and discussed.
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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