Citation: | YANG Jianmin, WANG Linjie. THE ANALYTICAL SOLUTION AND FINITE-DIFFERENCE SOLUTION OF INTERNAL FORCES AND DEFORMATION DUE TO LOGARITHMIC SUBSIDENCE OF BURIED BEAMS CAUSED BY DEWATERING[J]. INDUSTRIAL CONSTRUCTION, 2020, 50(6): 98-104. doi: 10.13204/j.gyjz202006016 |
NG C W W, LI Q, LIU G B. Special Lecture:Long-Term Tunnel Settlement Mechanisms of Metro Line 2 in Shanghai[C]//Proceedings of 7th International Symposium on Geotechnical Aspects of Underground Construction in Soft Ground (TC28). 2011:21-36.
|
NG C W W, LIU G B, LI Q. Investigation of the Long-Term Tunnel Settlement Mechanisms of the First Metro Line in Shanghai[J]. Canadian Geotechnical Journal, 2013, 50(6):674-684.
|
IIMURA S. Simplified Mechanical Model for Evaluating Stress in Pipeline Subject to Settlement[J]. Construction and Building Materials, 2004, 18(6):469-479.
|
KLAR A, VORSTER T E B, SOGA K.Soil-Pipe Interaction due to Tunnelling:Comparison Between Winkler and Elastic Continuum Solutions[J]. Géotechnique, 2005, 55(6):461-466.
|
KOURETZIS G P, KARAMITROS D K, SLOAN S W. Analysis of Buried Pipelines Subjected to Ground Surface Settlement and Heave[J]. Canadian Geotechnical Journal, 2015, 52(8):1058-1071.
|
姜洲, 高广运, 戴海峰, 等. 车载下地基差异沉降对地铁隧道结构的影响分析[J]. 地下空间与工程学报, 2014, 10(6):1433-1439.
|
ZHANG Z, ZHANG M, ZHAO Q. A Simplified Analysis for Deformation Behavior of Buried Pipelines Considering Disturbance Effects of Underground Excavation in Soft Clays[J]. Arabian Journal of Geosciences, 2015, 8(10):7771-7785.
|
ZHANG J, LIANG Z, HAN C. Mechanical Behaviour Analysis of Buried Pressure Pipeline Crossing Ground Settlement Zone[J]. International Journal of Pavement Engineering, 2017, 18(7):608-621.
|
刘禹阳, 谢永利, 来弘鹏, 等. 地基沉降对沉管隧道节段接头剪力键力学性能影响研究[J]. 岩土工程学报, 2014, 37(12):2235-2244.
|
周敏, 杜延军, 王非, 等. 地层沉陷中埋地HDPE管道力学状态及模型试验分析[J]. 岩土工程学报, 2016, 38(2):253-262.
|
李文广. 邻近基坑降水对运营地铁隧道纵向变形的影响研究[D]. 上海:同济大学, 2008.
|
戴文彬. 抽水地面沉降对地铁隧道变形的影响研究[D]. 西安:长安大学, 2013.
|
杨建民,纪森林.抽水导致区域性地面沉降中的s-ln r线性关系[J].岩土工程学报,2016,38(9):1606-1614.
|