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典型文献
Experimental investigation on the invert stability of operating railway tunnels with different drainage systems using 3D printing technology
文献摘要:
In recent years,the invert anomalies of operating railway tunnels in water-rich areas occur frequently,which greatly affect the transportation capacity of the railway lines.Tunnel drainage system is a crucial factor to ensure the invert stability by regulating the external water pressure(EWP).By means of a three-dimensional(3D)printing model,this paper experimentally investigates the deformation behavior of the invert for the tunnels with the traditional drainage system(TDS)widely used in China and its optimized drainage system(ODS)with bottom drainage function.Six test groups with a total of 110 test conditions were designed to consider the design factors and environmental factors in engineering practice,including layout of the drainage system,blockage of the drainage system and groundwater level fluc-tuation.It was found that there are significant differences in the water discharge,EWP and invert sta-bility for the tunnels with the two drainage systems.Even with a dense arrangement of the external blind tubes,TDS was still difficult to eliminate the excessive EWP below the invert,which is the main cause for the invert instability.Blockage of drainage system further increased the invert uplift and aggravated the track irregularity,especially when the blockage degree is more than 50%.However,ODS can prevent these invert anomalies by reasonably controlling the EWP at tunnel bottom.Even when the groundwater level reached 60 m and the blind tubes were fully blocked,the invert stability can still be maintained and the railway track experienced a settlement of only 1.8 mm.Meanwhile,the on-site monitoring under several rainstorms further showed that the average EWP of the invert was controlled within 84 kPa,while the maximum settlement of the track slab was only 0.92 mm,which also was in good agreement with the results of model test.
文献关键词:
作者姓名:
Linyi Li;Junsheng Yang;Jinyang Fu;Shuying Wang;Cong Zhang;Maolong Xiang
作者机构:
School of Civil Engineering,Central South University,Changsha,410075,Hunan,China;National Engineering Research Center of High-speed Railway Construction Technology,Changsha,410075,China;School of Civil Engineering,Central South University of Forestry and Technology,Changsha,410004,China
引用格式:
[1]Linyi Li;Junsheng Yang;Jinyang Fu;Shuying Wang;Cong Zhang;Maolong Xiang-.Experimental investigation on the invert stability of operating railway tunnels with different drainage systems using 3D printing technology)[J].岩石力学与岩土工程学报(英文版),2022(05):1470-1485
A类:
B类:
Experimental,investigation,invert,operating,railway,tunnels,different,drainage,systems,using,printing,technology,In,recent,years,anomalies,rich,areas,occur,frequently,which,greatly,affect,transportation,capacity,lines,Tunnel,crucial,ensure,by,regulating,external,pressure,EWP,By,means,three,dimensional,model,this,paper,experimentally,investigates,deformation,behavior,traditional,TDS,widely,used,China,its,optimized,ODS,bottom,function,Six,test,groups,total,conditions,were,designed,consider,factors,environmental,engineering,practice,including,layout,blockage,groundwater,level,fluc,tuation,It,was,found,that,there,significant,differences,discharge,two,Even,dense,arrangement,blind,tubes,still,difficult,eliminate,excessive,below,cause,instability,Blockage,further,increased,uplift,aggravated,track,irregularity,especially,when,degree,more,than,However,prevent,these,reasonably,controlling,reached,fully,blocked,maintained,experienced,settlement,only,Meanwhile,site,monitoring,under,several,rainstorms,showed,average,controlled,within,kPa,maximum,slab,also,good,agreement,results
AB值:
0.507759
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