[5] |
马 巍,王大雁. 冻土力学[M]. 北京:科学出版社,2014:286-302.(MA Wei,WANG Dayan. Frozen soil mechanics[M]. Beijing: Science Press,2014:286-302.(in Chinese))
|
[23] |
陆业奇. 含水率对粘土与混凝土接触面抗剪强度影响研究[J]. 水力发电,2018,44(12):126-129.(LU Yeqi,Study on the influence of moisture content on shear strength of the interface between clay and concrete[J]. Water Power,2018,44(12):126-129. (in Chinese))
|
[10] |
POTYONDY J G. Skin friction between various soils and construction material[J]. Geotechnique,1961,11(4) 339-353.
|
[1] |
徐学祖,王家澄,张立新. 冻土物理学[M]. 北京:科学出版社,2001:1-2.(XU Xuezu,WANG Jiacheng,ZHANG Lixin. Freezing and frozen soil physics[M]. Beijing: Science Press,2001:1-2.(in Chinese)
|
[3] |
TRETYAKOVA V,YUSHKOV B S. Inverted-cone piles for transpot constructions in seasonally freezing soils[J]. Soil Mechanics and Foundation Engineering,2017,54(3):173-176.
|
[7] |
陈肖柏,刘建坤,刘洪绪,等. 土的冻结作用与地基[M]. 北京:科学出版社,2006:219-232.(CHEN Xiaobai,LIU Jiankun,LIU Hongxu,et al. Soil freezing and foundation[M]. Beijing: Science Press,2006:219-232. (in Chinese))
|
[8] |
CHOI C H,KO S G. A study for predicting adfreeze bond strength from shear strength of frozen soil[J]. Journal of the Korean Geotechnical Society,2011,27(10):13-23.
|
[2] |
TRETIAKOVA O. Reduction in tangential frost heaving forces by the pile eometry change[J]. Architecture and Engineering,2017,2(1):61-68.
|
[4] |
WANG T F,LIU J K. Experimental study on the anti-jacking-up performance of a screw pile for photovoltaic stents in a seasonal frozen region[J]. Journal of Zhejiang University:Science A,2016,17(7):512-524.
|
[6] |
童长江,管枫年. 土的冻胀与建筑物冻害防治[M]. 北京:水利电力出版社,1985:66-89.(TONG Changjiang,GUAN Fengnian. Frost heaving and the prevention of freezing damage[M]. Beijing:China Water Power Press,1985:66-89.(in Chinese))
|
[9] |
KO S G,CHOI C H. Experimental study on adfreeze bond strength between frozen sand and aluminium with varying freezing temperature and vertical confining pressure[J]. Journal of the Korean Geotechnical Society,2011,27(9):67-76.
|
[12] |
陈 拓,赵光思,赵 涛. 寒区黏土与结构接触面冻结强度特性试验研究[J]. 地震工程学报,2018,40(3):512-518.(CHEN Tuo,ZHAO Guangsi,ZHAO Tao. Experimental study on the freezing strength characteristics of clay-interface in cold regions[J]. China Earthquake Engineering Journal,2018,40(3):512-518.(in Chinese))
|
[14] |
温 智,俞祁浩,张建明,等. 青藏直流输变电工程基础冻结强度试验研究[J]. 岩土工程学报,2013,35(12):2 262-2 267.(WEN Zhi,YU Qihao,ZHANG Jianming,et al. Experimental study on adfreezing bond strength of interface between silt and foundation of Qinghai-Tibetan transmission line[J]. Chinese Journal of Geotechnical Engineering,2013,35(12):2 262-2 267.(in Chinese))
|
[19] |
赵联桢,陈生水,杨东全,等. 冻砂土-结构接触面恒温循环剪切性能研究[J]. 水利水运工程学报,2016,(1):93-99.(ZHAO Lianzhen,CHEN Shengshui,YANG Dongquan,et al. Cyclic shear property studies on frozen silt-structure interface under constant temperature[J]. Hydro-Science and Engineering,2016,(1):93-99.(in Chinese))
|
[20] |
孙厚超,杨 平,王国良. 冻土与结构接触界面层力学试验系统研制及应用[J]. 岩土力学,2014,35(12):3 636-3 641.(SUN Houchao,YANG Ping,WANG Guoliang. Development of mechanical experimental system for interface layer between frozen soil and structure and its application[J]. Rock and Soil Mechanics,2014,35(12):3 636-3 641. (in Chinese))
|
[22] |
赵少飞,戴志广,刘 鑫,等. 扰动土-结构接触面抗剪强度特性试验研究[J]. 地下空间与工程学报,2018,14(1):67-71. (ZHAO Shaofei,DAI Zhiguang,LIU Xin,et,al. Experimental research of shear strength characteristics on disturbed soil-structure interfaces[J]. Chinese Journal of Underground Space and Engineering,2018,14(1):67-71.(in Chinese))
|
[11] |
LADANYI B,THERIAULT A. A study of some factors affecting the adfreeze bond if piles in per-mafrost[C]// Proceedings of Geotechnical Engineering Congress. Canada:[s. n.],1990:213-224.
|
[13] |
温 智,俞祁浩,马 巍,等. 青藏粉土-玻璃钢接触面力学特性直剪试验研究[J]. 岩土力学,2013,34(增2):45-50.(WEN Zhi,YU Qihao,MA Wei,et al. Direct shear tests for mechanical characteristics of interface between Qinghai-Tibetan silt and fiberglass reinforced plastics[J]. Rock and Soil Mechanics,2013,34(Supp.2):45-50.(in Chinese))
|
[15] |
陈良致,温 智,董盛时,等. 青藏冻结粉土与玻璃钢接触面本构模型研究[J]. 冰川冻土,2016,38(2):402-408.(CHEN Liangzhi,WEN Zhi,DONG Shengshi,et al. Study of the constitutive model of interface between frozen Qinghai-Tibetan silt and reinforced plastic fiber glass[J]. Journal of Glaciology and Geocryology,2016,38(2):402-408.(in Chinese))
|
[16] |
赵联桢,杨 平,刘 成. 土与结构接触面行为研究综述[J]. 交通科技,2012,(5):83-87.(ZHAO Lianzhen,YANG Ping,LIU Cheng. A review on the behavior of soil-structure interface[J]. Transportation Science and Technology,2012,(5):83-87.(in Chinese))
|
[18] |
杨 平,赵联桢,王国良. 冻土与结构接触面循环剪切损伤模型[J]. 岩土力学,2016,37(5):1 217-1 223.(YANG Ping,ZHAO Lianzhen,WANG Guoliang. A damage model for frozen soil-structure interface under cyclic shearing[J]. Rock and Soil Mechanics,2016,37(5):1 217-1 223. (in Chinese))
|
[21] |
石泉彬,杨 平,王国良. 人工冻结砂土与结构接触面冻结强度试验研究[J]. 岩石力学与工程学报,2016,35(10):2 142-2 151. (SHI Quanbin,YANG Ping,WANG Guoliang. Experimental study on adfreezing strength of the interface between artificial frozen sand and structure[J]. Chinese Journal of Rock Mechanics and Engineering,2016,35(10):2 142-2 151. (in Chinese))
|
[25] |
中华人民共和国行业标准编写组. JGJ118—2011冻土地区建筑地基基础设计规范[S]. [S. l.]:[s. n.],2011. (The Professional Standards Compilation Group of the Peopleˊs Republic of China. JGJ118—2011 Code for design of soil and foundation of building in frozen soil region[S]. [S. l.]:[s. n.],2011.(in Chinese))
|
[17] |
赵联桢,杨 平,王海波. 大型多功能冻土-结构接触面循环直剪系统研制及应用[J]. 岩土工程学报,2013,35(4):707-713. (ZHAO Lianzhen,YANG Ping,WANG Haibo. Development and application of large-scale multi-functional frozen soil-structure interface cycle-shearing system[J]. Chinese Journal of Geotechnical Engineering,2013,35(4):707-713.(in Chinese))
|
[24] |
ZHAO J F. An experimental study on the relationship between tensile strength and temperature and water ratio of frozen soil[J]. Geology and Exploration,2011,47(6):1 158-1 161.
|