Zhu Liming, Chen Tailei, Chen Lingkun, Han Xiaojian, King Wonsun, Wang Lu, Zhai Chencheng, Tian Yuan
College of Transportation Science & Engineering, Nanjing Tech University, Nanjing, 211800 Jiangsu China.
College of Architecture Science and Engineering, Yangzhou University, Yangzhou, 225127, Jiangsu, China.
Heliyon. 2022 Oct 26;8(11):e11253. doi: 10.1016/j.heliyon.2022.e11253. eCollection 2022 Nov.
In this study, on-site monitoring was used to obtain the temperature field distribution and cable force values of the bridge at various times, the temperature change pattern of the bridge elements, the temperature sensitivity of the cable force of different parts of the bridge, and the trend of the cable force under temperature load were all analyzed. The static response of the wires was studied under various operating circumstances. The total cable force of the bridge is inversely related to the temperature rise and fall, and the temperature sensitivity of the cable force in different parts of the bridge is different under the same temperature effect. The change in cable force is uneven. They vary according to the loading circumstances. This project's cable force changes are the most substantial and consistent with observed circumstances and should be appropriately considered in comparable projects. Thermal impacts must be addressed in strand cable safety design.
在本研究中,采用现场监测获取桥梁在不同时刻的温度场分布和索力值,分析了桥梁构件的温度变化规律、桥梁不同部位索力的温度敏感性以及温度荷载作用下索力的变化趋势。研究了索在各种运行工况下的静力响应。桥梁的总索力与温度升降呈反比关系,在相同温度作用下,桥梁不同部位索力的温度敏感性不同。索力变化不均匀。它们根据荷载工况而变化。本项目的索力变化最为显著,与观测情况相符,在类似项目中应予以适当考虑。在钢绞线安全设计中必须考虑热影响。