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双面加筋路堤的地震动力响应分析

曹建洲, 刘华北, 樊成

曹建洲, 刘华北, 樊成. 双面加筋路堤的地震动力响应分析[J]. 岩土工程学报, 2019, 41(5): 918-926. DOI: 10.11779/CJGE201905015
引用本文: 曹建洲, 刘华北, 樊成. 双面加筋路堤的地震动力响应分析[J]. 岩土工程学报, 2019, 41(5): 918-926. DOI: 10.11779/CJGE201905015
CAO Jian-zhou, LIU Hua-bei, FAN Cheng. Seismic response analysis of back-to-back mechanically stabilized earth (MSE) walls[J]. Chinese Journal of Geotechnical Engineering, 2019, 41(5): 918-926. DOI: 10.11779/CJGE201905015
Citation: CAO Jian-zhou, LIU Hua-bei, FAN Cheng. Seismic response analysis of back-to-back mechanically stabilized earth (MSE) walls[J]. Chinese Journal of Geotechnical Engineering, 2019, 41(5): 918-926. DOI: 10.11779/CJGE201905015

双面加筋路堤的地震动力响应分析  English Version

基金项目: 国家自然科学基金项目(51778259)
详细信息
    作者简介:

    曹建洲(1973— ),男,江西九江人,硕士,主要从事加筋挡土墙的抗震研究。E-mail: jianzhoucao@126.com。

    通讯作者:

    刘华北,E-mail:hbliu@hust.edu.cn

  • 中图分类号: TU43

Seismic response analysis of back-to-back mechanically stabilized earth (MSE) walls

  • 摘要: 双面加筋路堤作为加筋土挡土墙的一种衍生结构,沿袭了加筋土挡土墙优良的抗震性能,被广泛应用于道路建设工程,然而国内外关于双面加筋路堤的抗震设计还不够完善,采用的基于极限平衡法的抗震设计仍存在诸多问题。采用基于PLAXIS软件的有限元分析方法,对双面加筋路堤进行了较为全面的动力特性分析,结果表明,地震作用下双面加筋路堤的各层筋材最大内力分布、单侧面板侧移形式及路面沉降形式同单一的加筋土挡土墙表现形式相似;通过对不同宽高比结构筋材内力的分析得出,在地震作用下,加筋区及非加筋区之间存在第二潜在破裂面发育的可能。基于单自由度强迫振动理论及数值分析结果,建立了整体最大筋材内力与地震动及结构参数的关系。
    Abstract: The back-to-back mechanically stabilized earth (MSE) walls belong to a special type of geosynthetic-reinforced soil retaining walls. This type of walls are widely used in road construction projects that inherit the good seismic performance of GRS retaining walls, however, their seismic design methods at present are still not adequate. In this study, based on the calibrated PLAXIS finite element procedure, numerical simulations are carried out to investigate the seismic response of the back-to-back MSE walls. It is found that the back-to-back MSE walls show many similar dynamic characteristics with the GRS retaining walls when subjected to the earthquake loadings, including the maximum reinforcement loads, the residual lateral facing displacements and the settlements of backfill surface. There might exist a second failure surface from the analysis of the distribution of the reinforcement load in each layer. By fitting the numerical simulation results, it is also found that there exist good correlations among the maximum reinforcement loads, the input characteristics of earthquakes, and the frequency characteristics of structures.
  • [1] ELIAS V, CHRISTOPHER B R.Mechanically stabilized earth walls and reinforced soil slopes design and construction guidelines publication[R]. Washing D C: FHWA-NHI-00-043, 2001.
    [2] 杨广庆, 刘华北, 吴连海, 等. 台阶宽度对加筋土挡墙垂直应力的影响研究[J]. 岩石力学与工程学报, 2016, 35(1): 209-216.
    (YANG Guang-qing, LIU Hua-bei, WU Lian-hai, et al.Effect of offset distance on vertical stresses in geosynthetice reinforced soil retaining wall[J]. Chinese Journal of Rock Mechanicsand Engineering, 2016, 35(1): 209-216. (in Chinese))
    [3] BERG R, CHRISTOPHER B, SAMTANI N.Design and construction of mechanically stabilized earth walls[J]. Design, 2009, 13(2): 42-43.
    [4] HAN J, LESHCHINSKY D.Analysis of back-to-back mechanically stabilized earth walls[J]. Geotextiles & Geomembranes, 2010, 28(3): 262-267.
    [5] EL-SHERBINY R, IBRAHIM E, SALEM A.Stability of back-to-back mechanically stabilized earth walls[C]// American Society of Civil Engineers Geo-Congress. San Digeo, 2013: 555-565.
    [6] 杨广庆, 徐超, 张孟喜, 等. 土工合成材料加筋土结构应用技术指南[M]. 北京: 人民交通出版社, 2016.
    (YANG Guang-qing, XU Chao, ZHANG Meng-xi, et al.Geosynthetics reinforcement soil structure application guidance[M]. Beijing: China Communications Press, 2016. (in Chinese))
    [7] 蒋建清, 杨果林. 格宾加筋土挡墙抗震性能及数值分析[J]. 土木工程学报, 2012, 45(1): 100-108.
    (JIANG Jian-qing, YANG Guo-lin.Numerical analysis of seismic behaviour of gabion-reinforced soil retaining wall[J]. China Civil Engineering Journal, 2012, 45(1) : 100-108. (in Chinese))
    [8] 汪益敏, 张晖, 黎寰, 等. 考虑地震时程的加筋土挡土墙动力分析[J]. 振动与冲击, 2013, 32(24): 187-191.
    (WANG Yi-min, ZHANG Hui, LI Huan, et al.Dynamic analysis of reinforced soil retaining walls considering time history of seismic acceleration[J]. Journal of Vibration and Shock, 2013, 32(24): 187-197. (in Chinese))
    [9] 吴燕开, 李纪兴, 石玉斌, 等. 地震荷载作用下加筋土挡墙动力特性分析[J]. 地震工程学报, 2017, 39(3): 475-480.
    (WU Yan-kai, LI Ji-xing SHI Yu-bin, et al. Dyanmic characteristic analysis of reinforced earth retaining walls under seismic load[J]. China Earthqukae Engineering Journal, 2017, 39(3): 475-480. (in Chinese))
    [10] 朱宏伟, 姚令侃, 刘兆生, 等. 地震作用下柔性挡墙变形特征分析[J]. 岩石力学与工程学报, 2012, 31(增刊1): 2829-2838.
    (ZHU Hong-wei, YAO Ling-Kan, LIU Zhao-sheng, et al.Research on seismic deformation characteristic of flexible wall[J]. Chinese Journal of Rock Mechanics and Engineering, 2012, 31(S1): 2829-2838. (in Chinese))
    [11] 王丽艳, 孙田, 陈苏. 近远场地震中土工格栅加筋土挡墙抗震特性的振动台试验研究[J]. 土木工程学报, 2015, 48(2): 103-110.
    (WANG Li-yan, SUN Tian, CHEN Su.Large scale shaking table test on seismic behaviors of geogrid reinforced retaining walls under near-fault and far-field ground motions[J]. China Civil Engineering Journal, 2015, 48(2): 103-110. (in Chinese))
    [12] 李庆海, 王炳锟, 蒋楚生, 等. 包裹式加筋土挡土墙抗震试验分析[J]. 铁道工程学报, 2012, 29(11): 27-33.
    (LI Qing-hai, WANG Bing-kun, JIANG Chu-sheng, et al.Seismic tests and analysis of warped reinforced earth-retaining wall[J]. Journal of Railway Engineering Society, 2012, 29(11): 27-33. (in Chinese))
    [13] LING H I, MOHRI Y, LESHCHINSKY D, et al.Large-scale shaking table tests on modular-block reinforced soil retaining walls[J]. Journal of Geotechnical & Geoenvironmental Engineering, 2005, 131(4): 465-476.
    [14] BRINKGREVE R B J, VERMEER P A. Plaxis: finite element code for soil and rock analyses[M]. Netherlands: Material Model Manual, 1998.
    [15] BATHURST R J, CAI Z.Pseudo-static seismic analysis of geosynthetic-reinforced segmental retaining walls[J]. Geosynthetics International, 1995, 2(5): 789-832.
    [16] BATHE J.Finite Element Procedures[J]. International Journal for Numerical and Analytical Methods in Geomechanics, 1983, 7(4): 500-500.
    [17] LIU H, LING H I.Seismic responses of reinforced soil retaining walls and the strain softening of backfill soils[J]. International Journal of Geomechanics, 2010, 12(4): 351-356.
    [18] LING H I, YANG S, LESHCHINSKY D, et al.Finite-element simulations of full-scale modular-block reinforced soil retaining walls under earthquake loading[J]. Journal of Engineering Mechanics, 2010, 136(5): 653-661.
    [19] KRAMER S L.Geotechnical earthquake engineering[J]. Mcgraw Hill Handbooks, 1996, 11(6): 302-313.
    [20] 刘华北. 水平与竖向地震作用下土工格栅加筋土挡墙动力分析[J]. 岩土工程学报, 2006, 28(5): 594-599.
    (LIU Hua-bei.Analysis on seismic behavior of geogrid-reinforced retaining wall subjected to horizontal and vertical excitations[J]. Chinese Journal of Geotechnical Engineering, 2006, 28(5): 594-599. (in Chinese))
    [21] 黎寰, 汪益敏, 陈页开. 地震作用下土工格栅加筋土挡土墙动力响应分析[J]. 公路, 2012(5): 21-26.
    (LI Huan, WANG Yi-min, CHEN Ye-kai.Dynamic response analysis of geogrid reinforced soil retaining walls subjected to seismic load[J]. Highway, 2012(5): 21-26. (in Chinese))
    [22] LIU H.Analyzing the reinforcement loads of geosynthetic- reinforced soil walls subject to seismic loading during the service life[J]. Journal of Performance of Constructed Facilities, 2009, 23(5): 292-302.
    [23] LIU H, LING H I.Seismic responses of reinforced soil retaining walls and the strain softening of backfill soils[J]. International Journal of Geomechanics, 2010, 12(4): 351-356.
    [24] LIU H B, WANG X Y, et al.Reinforcement load and deformation mode of geosynthetic-reinforced soil walls subject to seismic loading during service life[J]. Geotextiles & Geomembranes, 2011, 29(1): 1-16.
    [25] BHATTACHARJEE A, KRISHNA A M.Strain behavior of soil and reinforcement in wrap faced reinforced soil walls subjected to seismic excitation[J]. Indian Geotechnical Journal, 2015, 45(3): 318-331.
    [26] BHATTACHARJEE A, KRISHNA A M.Strain behavior of backfill soil in rigid faced reinforced soil walls subjected to seismic excitation[J]. International Journal of Geosynthetics & Ground Engineering, 2015, 1(2): 14.
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    其他类型引用(10)

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出版历程
  • 收稿日期:  2018-05-20
  • 发布日期:  2019-05-24

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