摘要
叠合式公轨合建隧道不同于其他公轨合建隧道,汽车-列车荷载作用下其动力响应也有所不同。为研究复合交通荷载下叠合式公轨合建隧道动力响应,用激振力法、元胞自动机、汽车动力模型模拟列车荷载、车流和汽车荷载,用有限元软件Plaxis3D分析了不同荷载及有无垫层工况下隧道的动力响应。结果表明:公路隧道、铁路隧道分别主要对汽车荷载、列车荷载产生加速度响应,铁路隧道的加速度响应要明显大于公路隧道,约为后者的20倍;隧道不同位置处,对两种交通荷载的应力响应情况不同,铁路隧道应力响应主要受列车荷载控制,但当公路隧道中有大型车辆通过时,会对铁路隧道应力响应产生较大影响,甚至起到主导作用;公路、铁路隧道之间设置垫层会增大公路隧道的动力响应,但同时会减小公路隧道下方土层的刚度差异进而减小其应力值,综合作用下,设置垫层后公路隧道的应力状态会有所改善。
Composite highway-rail tunnel is different from other composite rail tunnel,and its dynamic response is also different under vehicle and train combined load.In order to study the dynamic response of the composite highway-rail tunnel under the composite traffic load,the excitation force method,cellular automata and vehicle dynamic model were used to simulate the train load,vehicle flow and vehicle load,and the finite element software Plaxis3D was used to analyze the dynamic response of the tunnel under different loads and with or without cushion.The results show that the acceleration response of highway tunnel and railway tunnel is mainly to vehicle load and train load,respectively.The acceleration response of railway tunnel is significantly greater than that of highway tunnel,which is about 20 times of the latter.At different locations of the tunnel,the stress response to the two traffic loads are different.The stress response of the railway tunnel is mainly controlled by the train load.However,when large vehicles pass through the highway tunnel,it will have a great influence on the stress response of the railway tunnel,and even play a leading role.The dynamic response of highway tunnels will be increased by setting cushion between highway and railway tunnels.However,the stiffness difference of the soil below the highway tunnel is reduced by cushion and then the stress value of the soil is reduced.Under the combined effect,the stress state of highway tunnels will be improved after setting cushion.
作者
邱友根
李明睿
黄展军
孙志浩
候世磊
徐长节
QIU You-gen;LI Ming-rui;HUANG Zhan-jun;SUN Zhi-hao;HOU Shi-lei;XU Chang-jie(Nanchang Rail Transit Group Limited Corporation,Nanchang 330038,China;College of Civil Engineering and Architecture,Zhejiang University,Hangzhou 310000,China;Center for Balance Architecture,Zhejiang University,Hangzhou 310000,China;China Railway 14th Bureau Group Co.,Ltd.,Jinan 250101,China;School of Civil Engineering and Architecture East China Jiaotong University,Nanchang 330013,China)
出处
《科学技术与工程》
北大核心
2023年第14期6238-6247,共10页
Science Technology and Engineering
基金
国家自然科学基金-高铁联合基金(U1934208)
国家杰出青年科学基金(51725802)
浙江省自然科学基金委员会-华东院联合基金(LHZ19E080001)
国家自然科学基金(51878276)
浙江大学平衡建筑研究中心配套资金(20203512-10C)
江西省自然科学基金(20192ACB20001)
南昌轨道交通集团科研项目(2019HGKYB002)。
关键词
复合交通荷载
叠合式公轨合建隧道
动力响应
数值模拟
元胞自动机
composite traffic load
composite public-rail joint tunnel
dynamic response
numerical simulation
cellular automata