纸质出版:2018
移动端阅览
[1]戴旭,赵少飞,孙嵩,杨亚兵.隧道穿越距离变化对地表框架结构变形的影响[J].防灾减灾工程学报,2018,38(03):480-486+497.
戴旭, 赵少飞, 孙嵩, et al. Influence on Deformations of a Ground Frame Structure by a Tunnel Crossing at Different Distances[J]. 2018, 38(3): 480-486+497.
[1]戴旭,赵少飞,孙嵩,杨亚兵.隧道穿越距离变化对地表框架结构变形的影响[J].防灾减灾工程学报,2018,38(03):480-486+497. DOI: 10.13409/j.cnki.jdpme.2018.03.011.
戴旭, 赵少飞, 孙嵩, et al. Influence on Deformations of a Ground Frame Structure by a Tunnel Crossing at Different Distances[J]. 2018, 38(3): 480-486+497. DOI: 10.13409/j.cnki.jdpme.2018.03.011.
为了研究隧道施工对邻近建筑物基础的沉降量、沉降差、扭转及倾斜等变形特征随隧道距离的变化规律
结合广州地铁隧道下穿一个框架结构建筑物
利用FLAC3D软件建立隧道-土-建筑结构的三维有限差分计算模型
考虑了建筑物的中间纵向框架与隧道轴线平行、距离从0m增加到20m共11种工况。根据计算结果
建筑物的最大扭曲变形量和最大沉降量随着距离的增大
都由最大值逐渐减小趋于零
其中最大扭曲变形量减小很快
当水平距离超出隧道轴线埋深时
扭曲变形量可以忽略不计;而建筑物倾斜、相邻基础的沉降差先由零逐渐增加
在沉降槽边缘内侧达到最大值
随后逐渐减小
最后逐渐趋于零。研究结果表明
对于受隧道施工影响的地表框架结构建筑物
在隧道上方位置时应重点监控其沉降量和扭转变形量
而在沉降槽边缘内侧时应注意监控其沉降差和倾斜量。
A case of a frame building in Guangzhou was employed for investigating the effect of tunnel construction on adjacent buildings
including foundation total settlement
differential settlement
and building torsion and inclination.A tunnel-soil-structure numerical model was established by using the software FLAC3 D
and a total of 11 cases were calculated with the building middle axis being parallel to the tunnel axis while their horizontal distance varying between 0 m and 20 m.The numerical results show that both the maximum foundation settlement and the maximum building torsion decrease from their maximum values to zero with the increase of the horizontal distance between the building and the tunnel.Meanwhile
the maximum building torsion decreases rapidly and becomes negligible when the horizontal distance is greater than the depth of the tunnel axis.However
the building inclination and the differential settlement of two adjacent footings increase initially
then reach their peak values at the inner edges of the settlement trough
and finally decrease to zero.The numerical results indicate that the footing settlement and building torsion
caused by tunnel construction
should be monitored for frame structure buildings located above the underground tunnel;in contrast
the building inclination and differential settlement should be monitored for those located at the edges of the settlement trough.
地铁盾构施工地层变形预测及数值分析 [J]. 邱明明,杨果林,姜安龙,申权. 深圳大学学报(理工版) . 2016(04)
地铁施工引起的建筑物扭曲变形分析 [J]. 韩煊,Jamie R Standing,李宁. 土木工程学报 . 2010(01)
地铁隧道施工对邻近建筑物影响的研究 [J]. 姜忻良,贾勇,赵保建,王涛. 岩土力学 . 2008(11)
Peck公式在我国隧道施工地面变形预测中的适用性分析 [J]. 韩煊,李宁,J.R.Standing. 岩土力学 . 2007(01)
天津地铁盾构施工地层变形实测及动态模拟 [J]. 姜忻良,崔奕,李园,赵志民. 岩土力学 . 2005(10)
砂土中盾构开挖面变形与破坏数值模拟研究 [J]. 朱伟,秦建设,卢廷浩. 岩土工程学报 . 2005(08)
镜像法在隧道施工土体位移计算中的应用 [J]. 姜忻良,赵志民. 哈尔滨工业大学学报 . 2005(06)
地铁隧道施工引起地层变形的反分析预测系统 [J]. 刘波,陶龙光,叶圣国,李希平,丁城刚. 中国矿业大学学报 . 2004(03)
盾构过地铁站施工对地表沉降影响的数值模拟 [J]. 陶龙光,刘波,丁城刚,卓发成,赵德刚,李志南. 中国矿业大学学报 . 2003(03)
盾构推进隧道结构三维非线性有限元仿真 [J]. 王敏强,陈胜宏. 岩石力学与工程学报 . 2002(02)
软土隧道纵向地表沉降的随机预测方法 [J]. 朱忠隆,张庆贺,易宏传. 岩土力学 . 2001(01)
盾构隧道沉降预估 [J]. 侯学渊,廖少明. 地下工程与隧道 . 1993(04)
开洞地基与框架结构相互作用的耦合分析法 [J]. 罗济章,刘正保. 重庆建筑工程学院学报 . 1991(02)
北京地铁七号线达官营站及湾达区间暗挖关键技术研究 [D]. 李润军. 中国矿业大学(北京) 2014
城市隧道施工引起的地表移动及变形[M]. 中国铁道出版社 , 阳军生,刘宝琛著, 2002
Analytical Prediction for Tunneling-Induced Ground Movements in Clays [J] . N. Loganathan. Journal of Geotechnical and Geoenvironmental Engi . 1998 (9)
0
浏览量
108
下载量
0
CSCD
关联资源
相关文章
相关作者
相关机构
苏公网安备32010202012147号
