Rock and Soil Mechanics ›› 2020, Vol. 41 ›› Issue (12): 3873-3881.doi: 10.16285/j.rsm.2020.1782

• Fundamental Theroy and Experimental Research • Previous Articles     Next Articles

Applicability verification of UH model on coarse-grained soil and its application in earth rockfill dam

ZHU Jun-gao1, ZHAO Xiao-long1, HE Shun-bin2, TIAN Yu3   

  1. 1. Key Laboratory of Ministry of Education for Geomechanics and Embankment Engineering, Hohai University, Nanjing, Jiangsu 210098, China; 2. PowerChina Chengdu Engineering Corporation Limited, Chengdu, Sichuan 610072, China; 3. Key Laboratory of Urban Security and Disaster Engineering of Ministry of Education, Beijing University of Technology, Beijing 100124, China
  • Received:2020-11-30 Revised:2020-12-05 Online:2020-12-11 Published:2021-01-15
  • Supported by:
    This work was supported by the National Key R&D Program of China(2018YFC1508505) and the National Natural Science Foundation of China(U1865104, 51479052).

Abstract: K0 compression tests and constant stress ratio path tests were performed on three kinds of coarse-grained soils in conventional consolidated-drained (CD) triaxial tests. Parameters of unified hardening (UH) model were calibrated according to the triaxial test data, and then stress-strain relationships under the other two paths were simulated. The simulation results were compared with those obtained from Duncan’s E-B model. It is shown that UH model can reasonably describe the mechanical behaviors of coarse-grained soil under different stress paths, while Duncan’s E-B model behaves poorly in predicting the results. The applicability of UH model to coarse-grained soil has been verified. Finally, three-dimensional finite element analysis of stress and deformation for a core rockfill dam was performed by using UH model. The calculation results were compared with those of Duncan’s E-B model and the field monitoring data. It is shown that from a qualitative perspective of the distribution of dam deformation and stress, the results obtained from UH model are similar to those from Duncan’s E-B model. However, from a quantitative perspective, the deformation calculated from UH model is overall closer to the field monitoring data. The applicability and rationality of UH model in the field of earth rockfill dam have also been verified.

Key words: coarse-grained soil, UH model, Duncan’s E-B model, K0 compression test, constant stress ratio path test, earth rockfill dam

CLC Number: 

  • TU431
[1] YUAN Qing-meng, KONG Liang, ZHAO Ya-peng, . An elastoplastic model for energy soils considering filling and bonding effects [J]. Rock and Soil Mechanics, 2020, 41(7): 2304-2312.
[2] WANG Kang-yu, ZHUANG Yan, GENG Xue-yu, . Experimental study on critical dynamic stress of coarse-grained soil in railway subgrade [J]. Rock and Soil Mechanics, 2020, 41(6): 1865-1873.
[3] YU Zhao-sheng, CHEN Xiao-bin, ZHANG Jia-sheng, DONG Liang, ABDOULKADER M S. Analysis of the nonlinearity of coefficient of earth pressure at rest and its calculation method for coarse-grained soils [J]. Rock and Soil Mechanics, 2020, 41(6): 1923-1932.
[4] CHU Fu-yong, ZHU Jun-gao, WENG Hou-yang, YE Yang-fan. Experimental study on maximum dry density of scaled coarse-grained soil [J]. Rock and Soil Mechanics, 2020, 41(5): 1599-1604.
[5] WU Er-lu, ZHU Jun-gao, WANG Long, CHEN Ge, . Single-parameter gradation equation for coarse-grained soil and its applicability [J]. Rock and Soil Mechanics, 2020, 41(3): 831-836.
[6] YAO Yang-ping, HUANG Jian, ZHANG Kui, CUI Guang-zu. Numerical back-analysis of creep settlement of airport high fill [J]. Rock and Soil Mechanics, 2020, 41(10): 3395-3404.
[7] WU Er-lu, ZHU Jun-gao, GUO Wan-li, LU Yang-yang, . Experimental study of compaction characteristics of coarse-grained soil based on gradation equation [J]. Rock and Soil Mechanics, 2020, 41(1): 214-220.
[8] DING Jian-yuan, CHEN Xiao-bin, ZHANG Jia-sheng, LIU Yi-yin, XIAO Yuan-jie, . Predicting model for coarse-grained soil particle breakage process using logarithmic probability regression mathematic method [J]. Rock and Soil Mechanics, 2019, 40(4): 1465-1473.
[9] GUO Wan-li, ZHU Jun-gao, QIAN Bin, ZHANG Dan, . Particle breakage evolution model of coarse-grained soil and its experimental verification [J]. Rock and Soil Mechanics, 2019, 40(3): 1023-1029.
[10] GUO Wan-li, CAI Zheng-yin, WU Ying-li, HUANG Ying-hao. Study on the particle breakage energy and dilatancy of coarse-grained soils [J]. Rock and Soil Mechanics, 2019, 40(12): 4703-4710.
[11] GUO Wan-li, ZHU Jun-gao, YU Ting, JIN Wei,. Application of gradation equation for coarse-grained soil [J]. , 2018, 39(10): 3661-3667.
[12] LENG Wu-ming , ZHOU Wen-quan , NIE Ru-song , ZHAO Chun-yan , LIU Wen-jie , YANG Qi,. Analysis of dynamic characteristics and accumulative deformation of coarse-grained soil filling of heavy-haul railway [J]. , 2016, 37(3): 728-736.
[13] ZHOU Wen-quan , LENG Wu-ming , LIU Wen-jie , NIE Ru-song , . Dynamic behavior and backbone curve model of saturated coarse-grained soil under cyclic loading and low confining pressure [J]. , 2016, 37(2): 415-423.
[14] ZHAO Na, ZUO Yong-zhen, WANG Zhan-bin, YU Sheng-guan. Grading scale method for coarse-grained soils based on fractal theory [J]. , 2016, 37(12): 3513-3519.
[15] ZUO Yong-zhen, ZHANG Wei, PAN Jia-jun, ZHAO Na. Effects of gradation scale method on maximum dry density of coarse-grained soil [J]. , 2015, 36(S1): 417-422.
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] SHI Yu-ling, MEN Yu-ming, PENG Jian-bing, HUANG Qiang-bing, LIU Hong-jia. Damage test study of different types structures of bridge decks by ground-fissure[J]. , 2009, 30(10): 2917 -2922 .
[3] ZHANG Qi-yi. Study of failure patterns of foundation under combined loading[J]. , 2009, 30(10): 2940 -2944 .
[4] TAO Gan-qiang, YANG Shi-jiao, REN Feng-yu. Experimental research on granular flow characters of caved ore and rock[J]. , 2009, 30(10): 2950 -2954 .
[5] MA Kang, XU Jin, WU Sai-gang, ZHANG Ai-hui. Research on surrounding rock stability in local collapse section of highway tunnels[J]. , 2009, 30(10): 2955 -2960 .
[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] YANG Kun, ZHOU Chuang-bing WANG Tong-xu. Risk analysis of dam slope under external random multi-loadings[J]. , 2009, 30(10): 3057 -3062 .
[8] ZHU Ze-qi, SHENG Qian, MEI Song-hua, ZHANG Zhan-rong. Improved ubiquitous-joint model and its application to underground engineering in layered rock masses[J]. , 2009, 30(10): 3115 -3121 .
[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] XU Yuan-jie, PAN Jia-jun, LIU Zu-die. An algorithm for slope paving of concrete faced rockfill dams[J]. , 2009, 30(10): 3139 -3144 .