Seismic deformation behaviors of the soft clay after freezing-thawing

被引:2
|
作者
Cui, Zhen-Dong [1 ]
Huang, Meng -Hui [1 ]
Hou, Chen-Yu [1 ]
Yuan, Li [1 ]
机构
[1] China Univ Min & Technol, Sch Mech & Civil Engn, State Key Lab Intelligent Construct & Hlth Operat, Xuzhou 221116, Jiangsu, Peoples R China
关键词
deformation mode; freezing-thawing; seismic load; soft clay;
D O I
10.12989/gae.2023.34.3.303
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
With the development and utilization of urban underground space, the artificial ground freezing technology has been widely used in the construction of underground engineering in soft soil areas. The mechanical properties of soft clay changed greatly after freezing and thawing, which affected the seismic performance of underground structures. In this paper, a series of triaxial tests were carried out to study the dynamic response of the freezing-thawing clay under the seismic load considering different dynamic stress amplitudes and different confining pressures. The reduction factor of dynamic shear stress was determined to correct the amplitude of the seismic load. The deformation development mode, the stress-strain relationship and the energy dissipation behavior of the soft clay under the seismic load were analyzed. An empirical model for predicting accumulative plastic strain was proposed and validated considering the loading times, the confining pressures and the dynamic stress amplitudes. The relevant research results can provide a theoretical reference to the seismic design of underground structures in soft clay areas.
引用
收藏
页码:303 / 316
页数:14
相关论文
共 50 条
  • [31] INFLUENCE OF CYCLIC FREEZING-THAWING ON HEAT AND MASS-TRANSFER CHARACTERISTICS OF CLAY SOIL
    EFIMOV, SS
    KOZHEVNIKOV, NN
    KURILKO, AS
    NIKITINA, M
    STEPANOV, AV
    ENGINEERING GEOLOGY, 1981, 18 (1-4) : 147 - 152
  • [32] Shear strength of frozen clay under freezing-thawing cycles using triaxial tests
    Wang Miao
    Meng Shangjiu
    Sun Yiqiang
    Fu Haiqing
    Earthquake Engineering and Engineering Vibration, 2018, 17 (04) : 761 - 769
  • [33] Identification of liquid pressure in pores of baked clay tiles during freezing-thawing cycles
    Wardeh, G.
    Perrin, B.
    JOURNAL OF BUILDING PHYSICS, 2006, 29 (04) : 269 - 279
  • [34] DEHYDROGENASE-ACTIVITY OF THE KREBS CYCLE AFTER MITOCHONDRIA FREEZING-THAWING
    LUGOVOY, VY
    ZOLOCHEVSKAYA, LI
    GREK, AM
    ZHIROVA, OA
    DOPOVIDI AKADEMII NAUK UKRAINSKOI RSR SERIYA B-GEOLOGICHNI KHIMICHNI TA BIOLOGICHNI NAUKI, 1980, (10): : 79 - 82
  • [35] Boar sperm functionality is related to α-tocopherol content after freezing-thawing
    Breininger, E.
    Descalzo, A.
    Rossetti, L.
    Abramovich, D.
    Beconi, M. T.
    ANDROLOGIA, 2011, 43 (06) : 409 - 415
  • [36] STRESS-STRAIN RELATIONSHIP OF CONCRETE AFTER FREEZING-THAWING CYCLES
    Duan An
    Qian Jiaru
    ADVANCES IN CONCRETE STRUCTURAL DURABILITY, PROCEEDINGS OF ICDCS2008, VOLS 1 AND 2, 2008, : 329 - 336
  • [37] Freezing-thawing of porous media: An extended finite element approach for soil freezing and thawing
    Arzanfudi, Mehdi Musivand
    Al -Khoury, Rafid
    ADVANCES IN WATER RESOURCES, 2018, 119 : 210 - 226
  • [38] Seismic behavior and numerical modelling method of RC beams subjected to freezing-thawing damage
    Zheng S.-S.
    Yang L.
    Ji J.-M.
    Pei P.
    Huang Y.
    Wang B.
    Zhendong Gongcheng Xuebao/Journal of Vibration Engineering, 2021, 34 (05): : 889 - 898
  • [39] RECONCILIATION OF THEORIES OF FREEZING-THAWING HEMOLYSIS OF ERYTHROCYTES
    TALBOT, TR
    GLAUSER, SC
    JOURNAL OF CLINICAL INVESTIGATION, 1955, 34 (06): : 965 - 966
  • [40] The effect of the freezing-thawing process on fish quality
    Baygar, T
    Özden, Ö
    Üçok, D
    TURKISH JOURNAL OF VETERINARY & ANIMAL SCIENCES, 2004, 28 (01): : 173 - 178