[1]翁效林,王俊,王立新,等.黄土地层浸水湿陷对地铁隧道影响试验研究[J].岩土工程学报,2016,38(8):1374-1380.
WENG Xiaolin, WANG Jun, WANG Lixin, et al. Experimental research on influence of loess collapsibility on subway tunnels [J]. Chinese Journal of Geotechnical Engineering,2016,38(8):1374-1380.
[2]王利明.黄土湿陷对地铁结构稳定性影响机制及剩余湿陷量控制标准研究[D].长安大学,2020.
WANG Liming. Study on the influence mechanism of loess collapsing on metro structure stability and the control standard of remaining collapsing amount [D].Chang′an University,2020.
[3]张玉伟,宋战平,翁效林,等.大厚度黄土地层浸水湿陷对地铁隧道影响的模型试验研究[J].岩石力学与工程学报,2019,38(5):1030-1040.
ZHANG Yuwei, SONG Zhanping, WENG Xiaolin,et al. Model test study on influence of the collapsibility of Large Thickness loess Stratum on subway tunnels [J]. Chinese Journal of Rock Mechanics and Engineering,2019,38(5): 1030-1040.
[4]房茂立,刘建武,郑伟.湿陷性黄土地区管道基于应变的设计方法[J].油气储运,2016,35(8):888-892.
FANG Maoli, LIU Jianwu, ZHENG Wei. The strain-based design method for buried pipelines in the collapsible loess areas [J]. Oil & Gas Storge and Transportation,2016,35(8):888-892.
[5]刘德仁,安政山,徐硕昌等.靖远地区大厚度黄土地基浸水湿陷过程及土中竖向应力特征试验研究[J].岩土力学,2023,44(1):268-278.
LIU Deren, AN Zhengshan, XU Shuochang, et al. Experimental study on immersion collapsibility process and vertical stress characteristics of large thickness loess foundation in Jingyuan area [J]. Geotechnical Mechanics, 2023,44 (1): 268-278.
[6]PITILAKIS K, TSINIDIS G, LEANZA A,et al. Seismic behaviour of circular tunnels accounting for above ground structures interaction effects [J].Soil Dynamics & Earthquake Engineering,2014, 67:1-15.
[7]DENG Botuan, LI Xin, LI Pan, et al. Rationality determination method and mechanical behavior of underground utility tunnels in a ground fissure environment[J]. Bulletin of Engineering Geolgy and the Environment, 2022, 81(1):50.1-50,23.
[8]DENG Botuan, LI Pan, LI Xin, et al. Mechanical behavior of underground pipe gallery structure considering ground fissure[J]. Journal of Mountain Science,2022,19(2):547-562.
[9]邓博团,田江涛,苏三庆,等.地裂缝作用下管廊结构底部脱空范围计算方法[J].西安建筑科技大学学报(自然科学版),2021,53(2):173-177,185.
DENG Botuan,TIAN Jiangtao,SU Sanqing, et al. Calculation method of void area at the bottom of utility tunnel structure crossing ground fissures[J]. J. Xi′an Univ. of Arch. & Tech.(Natural Science Edition),2021,53(2):173-177,185.
[10]邓博团,田江涛,苏三庆,等.西安地区不同线型预制式管廊地震稳定性数值分析[J].隧道建设(中英文),2021,41(5):772-780.
DENG Botuan,TIAN Jiangtao,SU Sanqing, et al. Numerical Analysis of Seismic Response of Prefabricated Utility Tunnel with Different Lines in Xi′an,China[J].Tunnel Construction,2021,41(5):772-780.
[11]胡翔,薛伟辰.预制预应力综合管廊受力性能试验研究[J].土木工程学报, 2010,43(5):29-37.
HU Xiang, XUE Weichen. Experimental study of mechanical properties of PPMT[J]. Journal of Composites for Construction, 2010, 43(5): 29-37.
[12]GRIGORIOS T. Response characteristics of rectangular tunnels in soft soil subjected to transversal ground shaking[J]. Tunnelling and Underground Space Technology Incorporating Trenchless Technology Research, 2017, 62:1-22.
[13]冯立,丁选明,王成龙等.考虑接缝影响的地下综合管廊振动台模型试验[J].岩土力学,2020,41(4):1295-1304.
FENG Li, DING Xuanming, WANG Chenglong, et al. Shaking table model test on seismic responses of utility tunnel with joint [J]. Geotechnical Mechanics, 2020,41 (4): 1295-1304.
[14]赵文昊,彭斌,王恒栋,等.预制拼装综合管廊接头的容许差异沉降分析[J].建筑结构学报,2020,41(S1):434-442.
ZHAO Wenhao, PENG Bin, WANG Hengdong, et al. Analysis of permissible differential settlement for assembled precast utility tunnel with different joint types[J]. Journal of Building Structures, 2020,41(S1): 434-442.
[15]KARINSKI Y S,DANCYGIER A N,LEVIATHAN I. Ananalytical model to evalulate the static soil pressure on a buried structure[J]. Engineering Structures,2003,25(1):91-101.
[16]穆晓虎.黄土地层浸水湿陷对综合管廊结构受力变形的影响研究[D].西安:长安大学,2018.
MU Xiaohu. Study on the Influence of Loess Flooding on the Mechanical and Deformation Characteristics of the Utility Tunnel Structure [D]. Xi′an: Chang′an University,2018.
[17]崔允亮,李志远,魏纲,等.上跨拟建隧道的地下综合管廊预保护效果[J].浙江大学学报(工学版),2021,55(2):330-337.
CUI Yunliang, LI Zhiyuan, WEI Gang, et al. Preprotection effect of underground comprehensive pipe gallery over proposed tunnel [J]. Journal of Zhejiang University (Engineering Edition), 2021,55 (2): 330-337.
[18]胡再强,沈珠江,谢定义.结构性黄土的变形特性[J].岩石力学与工程学报,2004,23 (24):4142-4146.
HU Zaiqiang, SHEN Zhujiang, XIE Dingyi. Deformation properties of structural loess [J]. Chinese Journal of Rock Mechanics and Engineering,2004,23 (24):4142-4146.
[19]蒋明镜,沈珠江.结构性黏土试样人工制备方法研究[J].水利学报,1997(1):57-62.
JIANG Mingjing, SHEN Zhujiang. A method of artifi cial preparation of structured clay samples [J]. Journal of Hydraulic Engineering,1997(1):57-62.
[20]BASMA A A,TUNCER E R. Evaluation and control of collapsible soils[J]. Journal of Geotechnical Engineering,2014,118(10):1491-1504.
[21]张玉伟.黄土地层浸水对地铁隧道结构受力性状的影响研究[D].西安:长安大学,2017.
ZHANG Yuwei. Study on mechanical characteristics of Metro Tunnel based on soaking of loess layer[D].Xi′an: Chang′an University,2017.