[24] |
何开胜. 水泥土搅拌桩的施工质量问题和解决方法[J]. 岩土力学,2002,23(6):778-781.(HE Kaisheng. Present construction quality problem of deep mixing cement-soil piles and solving measures[J]. Rock and Soil Mechanics,2002,23(6):778-781.(in Chinese))
|
[3] |
任 辉,胡向东,洪泽群,等. 超浅埋暗挖隧道管幕冻结法积极冻结方案试验研究[J]. 岩土工程学报,2019,41(2):320-328.(REN Hui,HU Xiangdong,HONG Zequn,et al. Experimental study on active freezing scheme of freeze-sealing pipe roof used in ultra-shallow buried tunnels[J]. Chinese Journal of Geotechnical Engineering,2019,41(2):320-328.(in Chinese))
|
[10] |
王许诺,杨 平,鲍俊安,等. 冻结水泥土无侧限抗压试验研究[J]. 水文地质与工程地质,2013,40(3):79-83.(WANG Xunuo,YANG Ping,BAO Jun'an. Test research on unconfined compressive strength of freezing cement soil[J]. Hydrogeology and Engineering Geology,2013,40(3):79-83.(in Chinese))
|
[13] |
陈乾浩. 复合土钉墙支护工程特性及影响因素的离散元数值模拟[硕士学位论文][D]. 杭州:浙江工业大学,2012.(CHEN Qianhao. Discrete element modeling of composite soil-nailed wall in soft soil[M. S. Thesis][D]. Hangzhou:Zhejiang University of Technology,2012.(in Chinese))
|
[15] |
徐双全. 开挖顺序对复合土钉墙支护变形影响三维颗粒流数值模拟[硕士学位论文][D]. 杭州:浙江工业大学,2013.(XU Shangquan. Effect of excavation sequence on the deformation of composite soil nailing wall by DEM simulations[M. S. Thesis][D]. Hangzhou:Zhejiang University of Technology,2013.(in Chinese))
|
[17] |
江浩川. 水泥固化滨海风积砂静、动力学特性及数值模拟分析[硕士学位论文][D]. 泉州:华侨大学,2016.(JIANG Haochuan. An analysis on static,dynamic mechanical characteristic and mesoscopic numerical simulation of cement solidified coastal aeolian sands[M. S. Thesis][D]. Quanzhou:Huaqiao University,2016.(in Chinese))
|
[20] |
WANG Y H,LEUNG S C. A particulate-scale investigation of cemented sand behavior[J]. Canadian Geotechnical Journal,2008,45(1):29-44.
|
[23] |
VAN LYSEBETTEN G,VERVOORT A,MAERTENS J,et al. Discrete element modeling for the study of the effect of soft inclusions on the behavior of soil mix material[J]. Computers and Geotechnics,2014,55:342-351.
|
[25] |
姜德义,任 涛,陈 结,等. 含软弱夹层盐岩型盐力学特性试验研究[J]. 岩石力学与工程学报,2012,31(9):1 797-1 803.(JIANG Deyi,REN Tao,CHEN Jie,et al. Experimental study of mechanical characteristics of molded salt rock with weak interlayer[J]. Chinese Journal of Rock Mechanics and Engineering,2012,31(9):1 797-1 803. (in Chinese))
|
[27] |
柴明堂. 无机胶凝材料对高温冻土的改良效果与机制研究[博士学位论文][D]. 北京:中国科学院大学,2018.(CHAI Mingtang. Effectiveness and mechanism on modification of warm frozen soil with inorganic cementitious material[Ph. D. Thesis][D]. Beijing:University of Chinese Academy of Sciences,2018.(in Chinese))
|
[30] |
张全胜,杨更社,任建喜. 岩石损伤变量及本构方程的新探讨[J]. 岩石力学与工程学报,2003,22(1):30-34.(ZHANG Quansheng,YANG Gengshe,REN Jianxi. New study of damage variable and constitutive equation of rock[J]. Chinese Journal of Rock Mechanics and Engineering,2003,22(1):30-34.(in Chinese))
|
[8] |
刘瑞锋. 水泥改良土人工冻土性能及抑制冻胀融沉机制研究[博士学位论文][D]. 上海:同济大学,2008.(LIU Ruifeng. Study on the properties of artificial frozen soil of cement modified soil and the mechanism of inhibiting frost heaving[Ph. D. Thesis][D]. Shanghai:Tongji University,2008.(in Chinese))
|
[18] |
LIU Q S,LIU D F,TIAN Y C,et al. Numerical simulation of stress- strain behaviour of cemented paste backfill in triaxial compression[J]. Engineering Geology,2017,231:165-175.
|
[28] |
李新平,路亚妮,王仰君. 冻融荷载耦合作用下单裂隙岩体损伤模型研究[J]. 岩石力学与工程学报,2013,32(11):2 307-2 315.(LI Xinping,LU Yani,WENG Yangjun. Research on damage model of single jointed rock masses under coupling action of freeze-thaw and loading[J]. Chinese Journal of Rock Mechanics and Engineering,2013,32(11):2 307-2 315.(in Chinese))
|
[1] |
胡向东. 上海灰黄色粉砂水泥改良土冻胀融沉性质实验[J]. 煤炭学报,2009,34(3):334-339.(HU Xiangdong. Laboratory research on properties of frost heave and thaw settlement of cement-improved Shanghai’s grey-yellow silty sand[J]. Journal of China Coal Society,2009,34(3):334-339.(in Chinese))
|
[2] |
鲍俊安,杨 平,王许诺. 水泥土冻胀特性试验研究[J]. 郑州大学学报:工学版,2013,34(1):5-9.(BAO Jun'an,YANG Ping,WANG Xunuo. Experimental study on frost heave properties of cement- improved soil[J]. Journal of Zhengzhou University :Engineering Science,2013,34(1):5-9.(in Chinese))
|
[4] |
马 巍,徐学祖,张立新. 冻融循环对石灰粉土剪切强度特性的影响[J]. 岩土工程学报,1999,21(2):158-160.(MA Wei,XU Xuezu,ZHANG Lixin. Influence of frost and thaw cycles on shear strength of lime silt[J]. Chinese Journal of Geotechnical Engineering,1999,21(2):158-160.(in Chinese))
|
[5] |
王天亮,刘建坤,田亚护. 冻融循环作用下水泥及石灰改良土静力特性研究[J]. 岩土力学,2011,32(1):193-198.(WANG Tianliang,LIU Jiankun,TIAN Yahu. Static properties of cement-and lime-modified soil subjected to freeze-thaw cycles[J]. Rock and Soil Mechanics,2011,32(1):193-198.(in Chinese))
|
[7] |
胡 俊,高水压砂性土层地铁大直径盾构始发端头加固方式研究[博士学位论文][D]. 南京:南京林业大学,2012.(HU Jun. Study on the reinforcement methods of subway large-diameter shield launching in the sandy clay with high water pressure[Ph. D. Thesis][D]. Nanjing:Nanjing Forestry University,2012.(in Chinese))
|
[9] |
储 鹏. 冻结条件下水泥改良土力学特性试验研究[J]. 洛阳理工学院学报:自然科学版,2017,27(3):9-11.(CHU Peng. Test research on unconfined compressive strength of freezing cement soil[J]. Journal of Luoyang Institute of Science and Technology:Natural Science,2017,27(3):9-11.(in Chinese))
|
[11] |
周 健,李 飞,张 姣,等. 复合土钉墙支护基坑颗粒流数值模拟研究[J]. 同济大学学报:自然科学版,2011,39(7):966-971. (ZHOU Jian,LI Fei,ZHANG Jiao,et al. Study of PFC numerical simulation of soil nailing wall support excavation[J]. Journal of Tongji University:Natural Science,2011,39(7):966-971.(in Chinese))
|
[12] |
沈一帆. 复合土钉墙变形特性的颗粒流模拟研究[硕士学位论文][D]. 杭州:浙江工业大学,2010.(SHEN Yifan. Study on deformation of composite soil nailed wall by particle flow code[M. S. Thesis][D]. Hangzhou:Zhejiang University of Technology,2010.(in Chinese))
|
[14] |
王 涛,熊传祥. 复合土钉支护基坑的细观模拟研究[J]. 土工基础,2013,27(1):52-55.(WANG Tao,XIONG Chuanxiang. Mesoscale simulations of composite soil nailed wall for the supporting of deep excavations[J]. Soil Engineering and Foundation,2013,27(1):52-55.(in Chinese))
|
[6] |
谭丽华. 水泥改良土冻胀融沉特性研究[硕士学位论文][D]. 上海:同济大学,2008.(TAN Lihua. Investigation on properties of frost heave and thawing settlement of cement-improved soil[M. S. Thesis][D]. Shanghai:Tongji University,2008.(in Chinese))
|
[16] |
关振长,廖重辉,罗志彬,等. 列车循环荷载下水泥土复合地基沉降的颗粒离散元计算[J]. 铁道建筑,2015,(12):104-109.(GUAN Zhenchang,LIAO Chonghui,LUO Zhibin,et al. Particle discrete element calculation for subsidence of cement mixing pile composite foundation under train cyclic load[J]. Railway Engineering,2015,(12):104-109.(in Chinese))
|
[26] |
中华人民共和国行业标准编写组. JGJ/T233—2011 水泥土配合比设计规程[S]. 北京:中国建筑工业出版社,2011.(The Professional Standards Compilation Group of People¢s Republic of China. JGJ/T233—2011 Specification for mix proportion design of cement soil[S]. Beijing:China Architecture and Building Press,2011.(in Chinese))
|
[19] |
WANG Y H,LEUNG S C. Characterization of cemented sand by experimental and numerical investigations[J]. Journal of Geotechnical and Geo-environmental Engineering,2008,134(7):992-1 004.
|
[21] |
黄建新. 水泥改良粉质黏土的冻土力学特性研究[硕士学位论文][D]. 徐州:中国矿业大学,2017.(HUANG Jianxin. Study on mechanical behaviors of frozen cement-treated silty clay[M. S. Thesis][D]. Xuzhou:China University of Mining and Technology,2017.(in Chinese))
|
[22] |
彭 涛,曹智国,章定文. 不均质体对水泥土强度特性的影响规律试验研究[J]. 南京工程学院学报:自然科学版,2016,14(4):28-32.(PENG Tao,CAO Zhiguo,ZHANG Dingwen. An experimental study on the effect of inclusions on cement-soil admixtures[J]. Journal of Nanjing Institute of Technology:Natural Science,2016,14(4):28-32.(in Chinese))
|
[29] |
LEMAITRE J. How to use damage mechanics[J]. Nuclear Engineering and Design,1984,80(2):233-245.
|
[31] |
曹文贵,张 升,赵明华. 基于新型损伤定义的岩石损伤统计本构模型探讨[J]. 岩土力学,2006,27(1):41-46.(CAO Wengui,ZHANG Sheng,ZHAO Minghua. Study on statistical damage constitutive model of rock based on new definition of damage[J]. Rock and Soil Mechanics,2006,27(1):41-46.(in Chinese))
|