以武汉长江隧道工程为依托,建立了隧道匝道明挖段沥青复合路面结构二维热分析几何模型,分析了在持续高、低温情况下复合路面结构的温度场分布及温度应力变化规律。研究表明:在持续高低温天气条件下沥青复合路面温度逐渐累积,沥青复合材料的应力松弛性难以发挥,路面结构应变能降低,应力急剧增加,沥青下面层最大温度应力可达3 MPa;要求重视隧道沥青复合路面结构设计,并相应提高沥青下面层材料的热稳定性和抗开裂性能。
Taking Wuhan Yangtze River Tunnel project as object,the article establish thermal analysis model of asphalt compound pavement in the open excavation tunnel section by two-dimensional geometric finite element method.The paper research the surface temperature distribution and the temperature stress law of compound pavement structure in persistent high or cold weather conditions.Research shows that: the pavement temperature is accumulated gradually in this environment,so the stress-relaxation of asphalt compound material is hard to play,and the strain of pavement structure reduce,the stress dramatically increase,the maximum temperature stress of the below layer asphalt is up to 3 MPa.Calling attention to the tunnel complex asphalt pavement structure design,and corresponding increase the thermal stability and anti-cracking performance of the below layer asphalt mixture.