现代隧道技术
現代隧道技術
현대수도기술
MODERN TUNNELLING TECHNOLOGY
2014年
6期
123-129
,共7页
胡指南%张宏光%谢永利%岳夏冰%王鹏%刘禹阳
鬍指南%張宏光%謝永利%嶽夏冰%王鵬%劉禹暘
호지남%장굉광%사영리%악하빙%왕붕%류우양
沉管隧道%剪力键%模型试验
沉管隧道%剪力鍵%模型試驗
침관수도%전력건%모형시험
Immersed tunnel%Shear key%Model test
文章结合港珠澳大桥沉管隧道工程实例,采用局部相似装配式剪力键方案,对超长海底沉管隧道在不均匀沉降及不均匀荷载作用下的节段接头作用机理进行了研究。经材料配比与模型制作,进行了1:4.69的大型沉管节段模型试验;沉降模型试验平台经技术改造,能够满足试验过程中的模型搬运、对接、加载、复位等功能;控制试验平台底部千斤顶的差异沉降,可以模拟沉管节段接头纵向与横向的不均匀变位;采用钢筋计及压力盒对沉管结构钢筋应力、沉管结构与土体的接触压力进行测试,采用电阻应变花和光纤光栅应变花对剪力键表面及内部的应变进行测试。通过对所得试验数据的初步分析,得到了节段接头剪力键剪应力随差异沉降及剪应力沿沉管横截面的分布规律。
文章結閤港珠澳大橋沉管隧道工程實例,採用跼部相似裝配式剪力鍵方案,對超長海底沉管隧道在不均勻沉降及不均勻荷載作用下的節段接頭作用機理進行瞭研究。經材料配比與模型製作,進行瞭1:4.69的大型沉管節段模型試驗;沉降模型試驗平檯經技術改造,能夠滿足試驗過程中的模型搬運、對接、加載、複位等功能;控製試驗平檯底部韆斤頂的差異沉降,可以模擬沉管節段接頭縱嚮與橫嚮的不均勻變位;採用鋼觔計及壓力盒對沉管結構鋼觔應力、沉管結構與土體的接觸壓力進行測試,採用電阻應變花和光纖光柵應變花對剪力鍵錶麵及內部的應變進行測試。通過對所得試驗數據的初步分析,得到瞭節段接頭剪力鍵剪應力隨差異沉降及剪應力沿沉管橫截麵的分佈規律。
문장결합항주오대교침관수도공정실례,채용국부상사장배식전력건방안,대초장해저침관수도재불균균침강급불균균하재작용하적절단접두작용궤리진행료연구。경재료배비여모형제작,진행료1:4.69적대형침관절단모형시험;침강모형시험평태경기술개조,능구만족시험과정중적모형반운、대접、가재、복위등공능;공제시험평태저부천근정적차이침강,가이모의침관절단접두종향여횡향적불균균변위;채용강근계급압력합대침관결구강근응력、침관결구여토체적접촉압력진행측시,채용전조응변화화광섬광책응변화대전력건표면급내부적응변진행측시。통과대소득시험수거적초보분석,득도료절단접두전력건전응력수차이침강급전응력연침관횡절면적분포규률。
In this paper, based on the immersed tunnel construction of the Hong Kong-Zhuhai-Macao bridge project, the mechanism of super-long immersed tunnel segment joints under actions of uneven settlement and uneven loads is researched by means of partial similarly assembling shear keys. The large-scale immersed tunnel segment model test with a ratio of 1∶4.69 is carried out by material proportioning and model fabricating, and the trial platform of the settlement model is technically transformed to possess such functions as model hauling, con-necting, loading, and resetting in the process of the experiment. Uneven displacement in longitudinal and transversal directions of the immersed tunnel segment joints can be simulated through control of differential settlement of the jacks at the bottom of the trial platform. With reinforcement meters and pressure cells, the reinforcement stress of the immersed structure and the contact pressure between the model structure and the soil mass are tested, and by utilizing a resistance strain rosette and an FBG strain rosette, the external and internal strains of the shear keys are also tested. Furthermore, the distribution laws of segment joint shearing stresses along with differential settlement and immersed tunnel cross sections are obtained by a preliminary analysis of the test data.