纸质出版:2018
移动端阅览
[1]王飞球.下穿式箱涵顶进施工过程土体受力规律研究[J].防灾减灾工程学报,2018,38(04):738-744.
王飞球. Research on Soil Stress Law During Jacking of Under-Crossing Box Culvert[J]. 2018, 38(4): 738-744.
[1]王飞球.下穿式箱涵顶进施工过程土体受力规律研究[J].防灾减灾工程学报,2018,38(04):738-744. DOI: 10.13409/j.cnki.jdpme.2018.04.019.
王飞球. Research on Soil Stress Law During Jacking of Under-Crossing Box Culvert[J]. 2018, 38(4): 738-744. DOI: 10.13409/j.cnki.jdpme.2018.04.019.
为了研究下穿式箱涵顶进过程中土体应力变化规律
以新长铁路丁溪河中桥的疏浚拓宽工程为背景
实时监测了箱涵顶进开始到就位过程中桥台处土体的应力变化。基于ABAQUS建立了箱涵与土的三维有限元模型
定义了箱涵底板、侧墙与土之间的法向接触对和切向接触对
从而将实际箱涵顶进施工的过程等效为给定箱涵初始位移的接触分析问题。根据实际施工中土层切土高度的变化情况
模拟了切土高度分别为4.51 m和6.51 m的两种箱涵顶进工况。计算结果表明
数值模拟得到的侧向土压力整体要大于实测土体的压应力
这主要是由于数值模拟中采用的是接触压应力
而顶进过程中可能出现箱涵侧墙与土体分离而导致的空顶。切土高度为6.51 m时数值模拟得到的箱涵摩阻力与箱涵的实际顶力非常接近
实现了二者的近似平衡
而切土高度为4.51 m时计算的摩阻力要小于实际顶力。
In order to study the variation of soil stress during the jacking of under-crossing box culverts
the dredging and widening project of Dingxi River Railway Bridge located on Xinchang Railway is taken as an example. The variation of soil stress at the bridge abutment was recorded in real time during the whole process of the box culvert jacking. A three-dimensional finite element model of the box culvert and soil was then established based on ABAQUS. The normal contact and tangential contact between the box culvert bottom
the side wall and the soil were defined. Thus
the construction process of the actual box culvert jacking was equivalent to the nonlinear contact analysis of the box culvert with an initial displacement. According to the change of soil cutting height in actual construction
the condition of box culvert jacking with soil cutting heights of 4. 51 m and 6. 51 m was simulated respectively. Results show that the lateral earth pressures based on numerical simulation were generally larger than the measured values. The main reason is that the contact stress was adopted during the numerical simulation
whereas the side wall of the box culvert and the soil could be separated during the jacking process. When the soil height was 6. 51 m
the calculated frictional resistance of box culvert was very close to the recorded jacking force
and an approximate equilibrium was realized. However
when the soil height was 4. 51 m
the calculated frictional resistance was less than the actual jacking force.Conclusions show that it is reasonable to investigate the box culvert jacking based on the finite element method and real-time monitoring technology.
桥式盾构施工中路基沉降影响因素分析 [J]. 章坤,陈力. 高速铁路技术 . 2016(04)
管幕箱涵顶进施工中地表变形监测及有限元模拟 [J]. 罗仁安,姜洋标,万敏,陈文财,童凯. 上海大学学报(自然科学版) . 2009(05)
滑行道下超长管棚–箱涵顶进地表沉降分析 [J]. 夏才初,龚建伍,陈佑新,蒋坤. 岩石力学与工程学报 . 2008(04)
管幕内箱涵顶进中顶部管幕竖向变形预测 [J]. 肖世国,夏才初,朱合华,李向阳,刘学增. 岩石力学与工程学报 . 2006(09)
超大型“管幕-箱涵”顶进施工土体变形的分析与预测 [J]. 孙钧,虞兴福,孙旻,李向阳. 岩土力学 . 2006(07)
浅覆土下穿铁路大跨度箱涵顶进施工工艺关键参数优化 [D]. 章坤. 华东交通大学 2016
由拳路下穿沪昆铁路箱涵顶进施工监测及变形控制分析 [D]. 李秋香. 南昌大学 2011
ABAQUS岩土工程实例详解 [M]. 人民邮电出版社 , 费康, 2016
城市地道桥顶进施工技术及工程实例[M]. 中国建筑工业出版社 , 朱健身,陈东杰编著, 2006
地道桥结构设计[M]. 人民铁道出版社 , 北方交通大学铁道建筑系隧道教研室 编, 1978
Static soil culvert interaction the effect of box culvert geometric configurations and soil properties [J] . Osama Abuhajar,Hesham El Naggar,Tim Newson. Computers and Geotechnics . 2015
Structural Response of Full‐Scale Concrete Box Culvert [J] . Ahmad M. Abdel&hyphen,Karim,Maher K. Tadros,Joseph V. Benak. Journal of Structural Engineering . 1993 (11)
0
浏览量
131
下载量
6
CSCD
关联资源
相关文章
相关作者
相关机构
苏公网安备32010202012147号
