Rock and Soil Mechanics ›› 2020, Vol. 41 ›› Issue (9): 2901-2912.doi: 10.16285/j.rsm.2019.1907

• Fundamental Theroy and Experimental Research • Previous Articles     Next Articles

Effect of pore water pressure on shear creep characteristics of serrate structural plane

ZHANG Feng-rui, JIANG An-nan, YANG Xiu-rong   

  1. Highway and Bridge Institute of Dalian Maritime University, Dalian, Liaoning 116026, China
  • Received:2019-11-16 Revised:2020-04-26 Online:2020-09-11 Published:2020-10-20
  • Supported by:
    This work was supported by the National Nature Science Foundation of China(51678101) and the Central University Basic Research Fund Special Funds(3132014326).

Abstract: To explore the effect of pore water pressure on shear creep characteristics of rock mass structural planes, an integrated die for fabricating structural planes and a JAW-600 multifunctional shear rheometer were independently developed. The shear creep tests were carried out on serrated structural planes under pore water pressure. The effects of pore water pressure on creep deformation characteristics, creep rate and long-term strength of structural planes were analyzed. The experimental results show that the structural planes under different pore water pressures have experienced instantaneous deformation, deceleration creep and steady creep stages successively, and the increase of pore water pressure promotes the development of the non-linear characteristics of the structural planes; the instantaneous displacement, creep displacement and steady creep rate of the structural planes gradually increase with the increase of pore water pressure, while the creep time, failure stress and long-term strength decrease with the increase of creep strength. According to the test results, considering the influence of pore water pressure on the model parameters, the instantaneous shear modulus, viscous shear modulus and viscous coefficient in the creep model are replaced by the function of pore water pressure, and a structural plane creep model reflecting the influence of pore water pressure is constructed. The model parameters are identified by the optimization analysis software, and the correctness and applicability of the model are verified by comparing the creep test curve with the theoretical model fitting curve. The research results provide some theoretical guidance for the long-term stability analysis of rock mass under the action of groundwater.

Key words: pore water pressure, structural plane, shear creep, test, creep model

CLC Number: 

  • TU 452
[1] ZHANG Ji-meng, ZHANG Chen-rong, ZHANG Kai, . Model tests of large-diameter single pile under horizontal cyclic loading in sand [J]. Rock and Soil Mechanics, 2021, 42(3): 783-789.
[2] WANG Li, LI Gao, CHEN Yong, TAN Jian-min, WANG Shi-mei, GUO Fei, . Field model test on failure mechanism of artificial cut-slope rainfall in Southern Jiangxi [J]. Rock and Soil Mechanics, 2021, 42(3): 846-854.
[3] ZHENG Jun-jie, SHAO An-di, XIE Ming-xing, JING Dan, . Experimental study on retaining wall with EPS cushion under different backfill widths [J]. Rock and Soil Mechanics, 2021, 42(2): 324-332.
[4] LI Chi, SHI Guan-yu, WU Hui-min, WANG Cui-yan, GAO Yu, . Experimental study on bio-mineralization for dispersed soil improvement based on enzyme induced calcite precipitate technology [J]. Rock and Soil Mechanics, 2021, 42(2): 333-342.
[5] LAI Tian-wen, LEI Hao, WU Zhi-xin, WU Hong-gang, . Shaking table test study on basalt fiber reinforced plastics in high slope protection [J]. Rock and Soil Mechanics, 2021, 42(2): 390-400.
[6] WAN Zhi-hui, DAI Guo-liang, GONG Wei-ming, GAO Lu-chao, XU Yi-fei, . Experimental study on lateral bearing behavior of post-grouted piles in calcareous sand [J]. Rock and Soil Mechanics, 2021, 42(2): 411-418.
[7] HOU Zhen-kun, TANG Meng-xiong, HU He-song, LI Jian-hua, ZHANG Shu-wen, XU Xiao-bin, LIU Chun-lin, . Comparative study on the vertical load-bearing capacity of the drilling with pre-stressed concrete pipe cased pile based on in-situ and physical simulation tests [J]. Rock and Soil Mechanics, 2021, 42(2): 419-429.
[8] HAN Run-bo, XU Cheng-shun, DU Xiu-li, XU Zi-gang, . Optimization of model box type in quasi-static pushover test of soil-underground structure system [J]. Rock and Soil Mechanics, 2021, 42(2): 462-470.
[9] XIAO Jie-fu, LI Yun-an, HU Yong, ZHANG Shen, CAI Jun-ming, . Model tests on deformation characteristics of ancient bank landslide under water level fluctuation and rainfall [J]. Rock and Soil Mechanics, 2021, 42(2): 471-480.
[10] SUN Wen-jin, JIN Ai-bing, WANG Shu-liang, ZHAO Yi-qing, WEI Li-chang, JIA Yu-chun, . Study on sandstone split mechanical properties under high temperature based on the DIC technology [J]. Rock and Soil Mechanics, 2021, 42(2): 511-518.
[11] REN Lian-wei, REN Jun-yang, KONG Gang-qiang, LIU Han-long, . Field tests on thermo-mechanical response and bearing capacity of PHC energy pile under cooling-heating cyclic temperature [J]. Rock and Soil Mechanics, 2021, 42(2): 529-536.
[12] GAO Meng, ZHANG Zhi-song, WANG Chong-ge, TIAN Shu-ping, . Field test on vibration isolation performance by WIB-Duxseal under vertical excitation [J]. Rock and Soil Mechanics, 2021, 42(2): 537-546.
[13] JI Wei-wei, KONG Gang-qiang, LIU Han-long, YANG Qing, . Field tests on thermal response characteristics of the tunnel invert in soft plastic loess area [J]. Rock and Soil Mechanics, 2021, 42(2): 558-564.
[14] LU Tai-shan, LIU Song-yu, CAI Guo-jun, WU Kai, XIA Wen-jun, . Study on the disturbance and recompression settlement of soft soil induced by foundation excavation [J]. Rock and Soil Mechanics, 2021, 42(2): 565-573.
[15] CHEN Zhi-bo, HUANG Cong-ming, ZHU Jun-gao, WANG Jun-jie, . On influencing factors of quick consolidated-drained triaxial tests of widely-graded gravelly soils [J]. Rock and Soil Mechanics, 2021, 42(1): 160-167.
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
[1] YAO Yang-ping, HOU Wei. Basic mechanical behavior of soils and their elastoplastic modeling[J]. , 2009, 30(10): 2881 -2902 .
[2] ZHANG Li-ting, QI Qing-lan, WEI Jing HUO Qian, ZHOU Guo-bin. Variation of void ratio in course of consolidation of warping clay[J]. , 2009, 30(10): 2935 -2939 .
[3] ZHANG Qi-yi. Study of failure patterns of foundation under combined loading[J]. , 2009, 30(10): 2940 -2944 .
[4] ZHANG Ming-yi, LIU Jun-wei, YU Xiu-xia. Field test study of time effect on ultimate bearing capacity of jacked pipe pile in soft clay[J]. , 2009, 30(10): 3005 -3008 .
[5] RONG Guan, WANG Si-jing, WANG En-zhi, LIU Sun-gui. Study of evolutional simulation of Baihetan river valley and evaluation of engineering quality of jointed basalt P2β3[J]. , 2009, 30(10): 3013 -3019 .
[6] LIU Zhen-ping, HE Huai-jian, LI Qiang, ZHU Fa-hua. Study of the technology of 3D modeling and visualization system based on Python[J]. , 2009, 30(10): 3037 -3042 .
[7] LENG Wu-ming, YANG Qi, LIU Qing-tan, NIE Ru-song. Study of new method for calcutating response of piled bridge abutment in soft ground[J]. , 2009, 30(10): 3079 -3085 .
[8] WU Liang, ZHONG Dong-wang, LU Wen-bo. Study of concrete damage under blast loading of air-decking[J]. , 2009, 30(10): 3109 -3114 .
[9] YOU Hong-bing, ZHAO Feng-xin, LI Fang-jie. Scattering of P waves by a local nonhomogeneous body in a layered half-space[J]. , 2009, 30(10): 3133 -3138 .
[10] ZHOU Xiao-jie, JIE Yu-xin, LI Guang-xin. Numerical simulation of piping based on coupling seepage and pipe flow[J]. , 2009, 30(10): 3154 -3158 .