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复杂应力路径下堆石料的颗粒破碎特性研究

王远, 张胜, 敖大华, 于玉贞, 孙逊

王远, 张胜, 敖大华, 于玉贞, 孙逊. 复杂应力路径下堆石料的颗粒破碎特性研究[J]. 岩土工程学报, 2018, 40(4): 698-706. DOI: 10.11779/CJGE201804014
引用本文: 王远, 张胜, 敖大华, 于玉贞, 孙逊. 复杂应力路径下堆石料的颗粒破碎特性研究[J]. 岩土工程学报, 2018, 40(4): 698-706. DOI: 10.11779/CJGE201804014
WANG Yuan, ZHANG Sheng, AO Da-hua, YU Yu-zhen, SUN Xun. Particle breakage characteristics of rockfills under complex stress paths[J]. Chinese Journal of Geotechnical Engineering, 2018, 40(4): 698-706. DOI: 10.11779/CJGE201804014
Citation: WANG Yuan, ZHANG Sheng, AO Da-hua, YU Yu-zhen, SUN Xun. Particle breakage characteristics of rockfills under complex stress paths[J]. Chinese Journal of Geotechnical Engineering, 2018, 40(4): 698-706. DOI: 10.11779/CJGE201804014

复杂应力路径下堆石料的颗粒破碎特性研究  English Version

基金项目: “十三五”国家重点研发计划项目(2017YFC0404802,2017YFC0804602); 国家自然科学基金项目(51379103,51479099)
详细信息
    作者简介:

    王远(1987- ),男,博士研究生,主要从事隧道和高土石坝方面的研究工作。E-mail: wobenshizhu@126.com。

  • 中图分类号: TU456

Particle breakage characteristics of rockfills under complex stress paths

  • 摘要: 针对堆石料进行了一系列等向压缩、常规三轴和复杂应力路径试验,采用相对颗粒破碎率为度量研究了多种应力路径条件下堆石料的颗粒破碎特性。对不同应力路径下试验过程中的塑性功进行了对比,分析了颗粒破碎与平均应力p、广义剪应力q所做塑性功之间的关系,研究了不同应力路径下三轴试验颗粒破碎的差异和原因。结果表明:模拟心墙土石坝填筑和蓄水应力路径下的颗粒破碎远小于常规三轴试验。多种应力路径下塑性功与相对颗粒破碎率之间存在明显的相关性,并可用幂函数较好拟合。不同应力路径下塑性功分量之间差异明显。常规三轴试验中广义剪应力q所做功占总塑性功的主要部分,不同复杂应力路径试验p,q所做塑性功占比差异较大。
    Abstract: A series of conventional triaxial tests, isotropic compression tests and complex stress path triaxial tests are conducted to investigate the particle breakage characteristics of rockfills, which are evaluated quantitatively by using the relative breakage Br. The plastic work in the progress of triaxial tests under different stress paths is compared. The relationship between particle breakage and plastic work done by the mean stress p or generalized shear stress q under different stress paths is analyzed. The results show that the particle breakage of triaxial tests under complex stress paths which simulate the stress paths of rockfills during the progress of construction and impoundment of earth-rockfill dams is much less than that of the conventional triaxial tests. The relationship between plastic work and relative breakage under different stress paths tends to show a unique curve, which can be well fitted by the power function. The plastic work done by the generalized shear stress q accounts for a dominant proportion of all work in the conventional triaxial tests. And in the complex stress path triaxial tests, the proportion of plastic work done by the mean stress p to that done by the generalized shear stress q is different from case to case.
  • [1] 刘萌成, 高玉峰, 刘汉龙. 模拟堆石料颗粒破碎对强度变形的影响[J]. 岩土工程学报, 2011, 33(11): 1691-1699.
    (LIU Meng-cheng, GAO Yu-feng, LIU Han-long.Effect of particle breakage on strength and deformation of modeled rockfills[J]. Chinese Journal of Geotechnical Engineering, 2011, 33(11): 1691-1699. (in Chinese))
    [2] 孔德志, 张丙印, 孙逊. 人工模拟堆石料颗粒破碎应变的三轴试验研究[J]. 岩土工程学报, 2009, 31(3): 464-469.
    (KONG De-zhi, ZHANG Bing-yin, SUN Xun.Triaxial tests on particle breakage strain of artificial rockfill materials[J]. Chinese Journal of Geotechnical Engineering, 2009, 31(3): 464-469. (in Chinese))
    [3] 郭熙灵, 胡辉, 包承纲. 堆石料颗粒破碎对剪胀性及抗剪强度的影响[J]. 岩土工程学报, 1997, 19(3): 83-88.
    (GUO Xi-ling, HU Hui, BAO Cheng-gang.Experimental studies of the effects of grain breakage on the dilatancy and shear strength of rock fill[J]. Chinese Journal of Geotechnical Engineering, 1997, 19(3): 83-88. (in Chinese))
    [4] 刘汉龙, 秦红玉, 高玉峰, 等. 堆石粗粒料颗粒破碎试验研究[J]. 岩土力学, 2005, 26(4): 562-566.
    (LIU Han-long, QIN Hong-yu, GAO Yu-feng, et al.Experimental study on particle breakage of rockfill and coarse aggregates[J]. Rock and Soil Mechanics, 2005, 26(4): 562-566. (in Chinese))
    [5] 迟世春, 贾宇峰. 土颗粒破碎耗能对罗维剪胀模型的修正[J]. 岩土工程学报, 2005, 27(11): 1266-1269.
    (CHI Shi-chun, JIA Yu-feng.Rowe’s stress-dilatancy model modified for energy dissipation of particle breakage[J]. Chinese Journal of Geotechnical Engineering, 2005, 27(11): 1266-1269. (in Chinese))
    [6] XIAO Y, LIU H.Elastoplastic constitutive model for rockfill materials considering particle breakage[J]. International Journal Geomechanics, ASCE, 2017, 17(1): 04016041.
    [7] XIAO Y, LIU H, et al.Effect of intermediate principal-stress ratio on particle breakage of rockfill material[J]. Journal of Geotechnical and Geoenvironmental Engineering, ASCE, 2016, 142(4): 06015017.
    [8] 贾宇峰, 王丙申, 迟世春. 堆石料剪切过程中的颗粒破碎研究[J]. 岩土工程学报, 2015, 37(9): 1692-1697.
    (JIA Yu-feng, WANG Bing-shen, CHI Shi-chun.Particle breakage of rockfill during triaxial tests[J]. Chinese Journal of Geotechnical Engineering, 2015, 37(9): 1692-1697. (in Chinese))
    [9] GUPTA A K.Effect of particle size and confining pressure on breakage and strength parameters of rockfill materials[J]. Electronic Journal of Geotechnical Engineering, 2009, 14: 1-12.
    [10] 李雪梅, 李红文, 方华建. 基于大型直剪试验的粗粒料颗粒破碎对比研究[J]. 岩土工程学报, 2015, 34(增刊1): 3581-3587.
    (LI Xuemei1, LI Hongwen1, FANG Huajian. Comparative study of crushing of coarse-grained soils by large-scale direct shear by tests[J]. Chinese Journal of Geotechnical Engineering, 2015, 34(S1): 3581-3587. (in Chinese))
    [11] HARDIN B O.Crushing of soil particles[J]. Journal of Geotechnical Engineering, ASCE, 1985, 111(10): 1177-1192.
    [12] 陈生水, 傅中志, 韩华强. 一个考虑颗粒破碎的堆石料弹塑性本构模型[J]. 岩土工程学报, 2011, 33(10): 1489-1495.
    (CHEN Sheng-shui, FU Zhong-zhi, HAN Hua-qiang.An elastoplastic model for rockfill materials considering particle breakage[J]. Chinese Journal of Geotechnical Engineering, 2011, 33(10): 1489-1495. (in Chinese))
    [13] 丁树云, 蔡正银, 凌华. 堆石料的强度与变形特性及临界状态研究[J]. 岩土工程学报, 2010, 32(2): 248-252.
    (DING Shu-yun, CAI Zheng-yin, LING Hua.Strength and deformation characteristics and critical state of rock fill[J]. Chinese Journal of Geotechnical Engineering, 2010, 32(2): 248-252. (in Chinese))
    [14] LEE K L, FARHOOMAND I.Compressibility and crushing of granular soil in anisotropic triaxial compression[J]. Canadian Geotechnical Journal, 1967, 4(1): 69-86.
    [15] LADE P V, YAMAMURO J A, BOPP P A.Significance of particle crushing in granular materials[J]. Journal of Geotechnical Engineering, ASCE, 1996, 122(4): 309-316.
    [16] 柏树田, 崔亦昊. 堆石的力学性质[J]. 水力发电学报, 1997(3): 21-30.
    (BAI Shu-tian, CUI Yi-hao.Mechanics characteristic of rock fill[J]. Hydroelectricity, 1997(3): 21-30. (in Chinese))
    [17] MARSAL R J.Large scale testing of rockfill materials[J]. Journal of Soil Mechanics and Foundations Division, ASCE, 1967, 93(2): 27-43.
    [18] NAKATA Y, HYDE A F L, HYODO M, et al. A probabilistic approach to sand particle crushing in the triaxial test[J]. Géotechnique, 1999, 49(5): 567-583.
    [19] 吴京平, 褚瑶, 楼志刚. 颗粒破碎对钙质砂变形及强度特性的影响[J]. 岩土工程学报, 1997, 19(5): 49-55.
    (WU Jing-ping, CHU Yao, LOU Zhi-gang.Influence of particle breakage on deformation and strength properties of calcareous sands[J]. Chinese Journal of Geotechnical Engineering, 1997, 19(5): 49-55. (in Chinese))
    [20] 杨光. 复杂应力条件下堆石料的静动特性与本构模型研究[D]. 北京: 清华大学, 2009.
    (YANG Guang.Study on Static-dynamic behavior and constitutive model of rockfill materials under complex stress conditions[D]. Beijing: Tsinghua University, 2009. (in Chinese))
    [21] SL237—1999 土工试验规程[S]. 1999. (SL237—1999 Specification of soil test[S]. 1999. (in Chinese))
    [22] EISENSTEIN Z, LAW S T C. The role of constitutive laws in analysis of embankments[C]// Proceedings of 3rd international Conference on Numerical Methods in Geomechanics. Aachen, 1979.
    [23] DOLEIALOVA M, HOIENI A.A path dependent computational model for rockfill dams[C]// Proceedings of international symposium on Numerical Models in Geomechanics. Zurich, 1982.
    [24] 张丙印, 吕明治, 高莲士. 粗粒料大型三轴试验中橡皮膜嵌入量对体变的影响及校正[J]. 水利水电科技, 2003, 34(2): 30-33.
    (ZHANG Bing-yin, LÜ Min-zhi, GAO Lian-shi.Correction of membrane penetration in large-scale triaxial tests for granular materials[J]. Water Resources and Hydropower Engineering, 2003, 34(2): 30-33. (in Chinese))
    [25] XIAO Y, LIU H, et al.Bounding surface model for rockfill materials dependent on density and pressure under triaxial stress conditions[J]. Journal of Engineering Mechanics, ASCE, 2014, 140(4): 04014002.
    [26] XIAO Y, LIU H, et al.Bounding surface plasticity model incorporating the state pressure index for rockfill materials[J]. Journal of Engineering Mechanics, ASCE, 2014, 140(11): 04014087.
    [27] 殷宗泽, 赵航. 土坝浸水变形分析[J]. 岩土工程学报, 1990, 12(2): 1-8.
    (YIN Zong-ze, ZHAO Hang.Deformation analysis of earth dam during reservoir filling[J]. Chinese Journal of Geotechnical Engineering, 1990, 12(2): 1-8. (in Chinese))
    [28] ALONSO E E, OLIVELLA S, PINYOL N M.A review of beliche dam[J]. Géotechnique, 2005, 55(4): 267-285.
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出版历程
  • 收稿日期:  2017-01-08
  • 发布日期:  2018-04-24

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