吉林大学学报(工学版) ›› 2026, Vol. 56 ›› Issue (7): 1870-1881.doi: 10.13229/j.cnki.jdxbgxb.20241359
• 交通运输工程·土木工程 • 上一篇
Ning LIU1,2(
),Huan-ju LIU1(
),Peng-zhi LI1,Xiang-qun HU1,Yu-ang ZHAN1
摘要:
模数式伸缩缝的磨损本质上是其内部多构件在荷载作用下持续联动响应的累积结果,风荷载与车流构成其运动的主要外部动因。为实现磨损的精准分析,本文构建了融合动因荷载演化过程的“荷载-桥梁-伸缩缝”耦合分析系统。首先,针对桥梁-伸缩缝结构所处的风环境和车流演化两个运营场景,分别进行独立程序仿真;并从伸缩缝响应分析的需求出发,提出了主要方向车辆风荷载取值方法和统一简化的气动干扰处理方法,形成了结构的风场与车流演化场景及其荷载化关联模式。其次,采用多点约束联结同尺度的桥梁和伸缩缝模型,通过程序循环调用方式,将运营场景及其荷载化过程与桥梁-伸缩缝同尺度模型的响应分析环节相贯通,建立了风-车-桥梁-伸缩缝一体化分析系统,为伸缩缝磨损分析提供了计算平台。最后,选取斜拉桥-模数式伸缩缝结构,基于磨损指标,开展了风和演化车流共同作用下的伸缩缝磨损参数分析。结果表明:位移箱内滑动支承与压紧支承的设计参数可统一配置,而剪切弹簧及上、下层梁间的滑动支承和压紧支承则需差异化设计;位移箱内磨损在迎风面随风速增大而增大,在背风侧则呈减小趋势,剪切弹簧及上、下层梁间支承的磨损随风速增大而减小;双向车流密度之和对磨损起控制性作用,密度和越大磨损越严重,且车流分布越均匀磨损越大;与风速变化相比,车流对伸缩缝磨损的影响更为显著。
中图分类号:
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