• 全国中文核心期刊
  • 中国科技核心期刊
  • 美国工程索引(EI)收录期刊
  • Scopus数据库收录期刊

描述饱和土热固结过程的一个非线性模型及数值分析

郭志光, 白冰

郭志光, 白冰. 描述饱和土热固结过程的一个非线性模型及数值分析[J]. 岩土工程学报, 2018, 40(11): 2061-2067. DOI: 10.11779/CJGE201811012
引用本文: 郭志光, 白冰. 描述饱和土热固结过程的一个非线性模型及数值分析[J]. 岩土工程学报, 2018, 40(11): 2061-2067. DOI: 10.11779/CJGE201811012
GUO Zhi-guang, BAI Bing. Nonlinear model and numerical simulation of thermal consolidation process of saturated soils[J]. Chinese Journal of Geotechnical Engineering, 2018, 40(11): 2061-2067. DOI: 10.11779/CJGE201811012
Citation: GUO Zhi-guang, BAI Bing. Nonlinear model and numerical simulation of thermal consolidation process of saturated soils[J]. Chinese Journal of Geotechnical Engineering, 2018, 40(11): 2061-2067. DOI: 10.11779/CJGE201811012

描述饱和土热固结过程的一个非线性模型及数值分析  English Version

基金项目: 国家自然科学基金项目(51478034,51678043); 北京市自然科学基金项目(8182046)
详细信息
    作者简介:

    郭志光(1987- ),男,博士研究生,主要从事岩土工程等方面的研究工作。E-mail:zgguo_87@126.com。

    通讯作者:

    白冰,E-mail:baibing66@263.net

  • 中图分类号: TU43

Nonlinear model and numerical simulation of thermal consolidation process of saturated soils

  • 摘要: 基于多孔介质热-水-力耦合过程理论模型,给出饱和土的热固结控制方程及状态方程。考虑温度和孔隙水压力对排水模量的影响,建立了弹性模量的非线性表达式。且与已有热固结试验结果进行了对比,计算结果与试验结论基本相符。分析表明:饱和土试样中孔隙水渗透率的变化,对水压力消散及体应变的演化过程有非常明显的影响;等温排水固结过程中固体基质被压缩且体应变的变化较大,而升温不排水过程中固体基质有发生膨胀的趋势;重力影响下,饱和土试样上部体应变较下部体应变大;温度荷载加载等级的增加,使得饱和土试样中不断产生较大的孔隙水压力,且随孔隙水的排出整体平均体应变逐渐增大。
    Abstract: The governing equations and state equations for the thermosetting consolidation of saturated soils are given based on the coupled equations of thermo-hydro-mechanical coupling in porous media. And considering the influences of temperature and pore water pressure on the drained bulk modulus, the expression for nonlinear elastic modulus is established. The results are compared with those of the existing thermal consolidation tests, and the calculated results are in good agreement with the experimental results. The calculated results show that the change of permeability of water in soil specimens has a significant influence on the dissipation of water pressure and the evolution of volumetric strain. And the solid matrix is compressed and the bulk strain changes greatly in the isothermal consolidation process, whereas the solid matrix has a tendency to expand in the non-drainage heating consolidation process. Moreover, the upper bulk strain of porous media is larger than that of lower part due to the influences of gravity. The increase of temperature loading steps causes the pore water pressure to be continuously generated in the porous media, and the mean bulk strain increases with the discharge of pore water.
  • [1] 白冰, 赵成刚. 温度对黏土介质力学特性的影响[J]. 岩土力学, 2003, 24(4): 533-537.
    (BAI Bing, ZHAO Cheng-gang.Temperature effects on mechanical characteristics of clay soils[J]. Rock and Soil Mechanics, 2003, 24(4): 533-537. (in Chinese))
    [2] 白冰. 岩土颗粒介质非等温一维热固结特性研究[J]. 工程力学, 2005, 22(5): 186-191.
    (BAI Bing.One-dimensional thermal consolidation characteristics of geotechnical media under non-isothermal condition[J]. Engineering Mechanics, 2005, 22(5): 186-191. (in Chinese))
    [3] BAI Bing, GUO Lan-jie, HAN Song.Pore pressure and consolidation of saturated silty clay induced by progressively heating/cooling[J]. Mechanics of Materials, 2014, 75: 84-94.
    [4] CHEN Xiao-hui, PAO W, THORNTON S, et al.Unsaturated hydro-mechanical-chemical constitutive coupled model based on mixture coupling theory: hydration swelling and chemical osmosis[J]. International Journal of Engineering Science, 2016, 104: 97-109.
    [5] CHEN Yi-feng, ZHOU Chuang-bing, JING Lan-ru.Modeling coupled THM processes of geological porous media with multiphase ?ow: theory and validation against laboratory and field scale experiments[J]. Computers and Geotechnics, 2009, 36: 1308-1329.
    [6] PAASWELL R.Temperature effects on clay consolidation[J]. Journal of Soil Mechanics and Foundation Engineering Division, 1967, 93(3): 9-21.
    [7] BOOKER J R, SAVVIDOU C.Consolidation around a spherical heat source[J]. International Journal of Solids and Structures, 1984, 20(11/12): 1079-1090.
    [8] SAVVIDOU C, BOOKER J R.Consolidation around a heat source buried deep in a porous thermoelastic medium with anisotropic ?ow properties[J]. International Journal of Numerical and Analytical Methods in Geomechanics, 1989, 13(1): 75-90.
    [9] 白冰. 岩土介质非稳态热固结耦合问题的热源函数法[J]. 力学学报, 2004, 36(4): 427-433.
    (BAI Bing.Heat source function method for coupling analyses of thermal consolidation in saturated soil[J]. Acta Mechanica Sinica, 2004, 36(4): 427-433. (in Chinese))
    [10] 王路君, 艾智勇. 衰变热源作用下饱和多孔介质热固结问题的扩展精细积分法[J]. 力学学报, 2017, 49(2): 324-334.
    (WANG Lu-jun, AI Zhi-yong.Epim for thermal consolidation problems of saturated porous media subjected to a decaying heat source[J]. Chinese Journal of Theoretical and Applied Mechanics, 2017, 49(2): 324-334. (in Chinese))
    [11] 白冰, 张鹏远, 闫瑜龙, 等. 内外边界施加温度荷载的中空圆柱试样热固结试验[J]. 岩土工程学报, 2015, 37(1): 67-74.
    (BAI Bing, ZHANG Peng-yuan, YAN Yu-long, et al.Consolidation tests on saturated soils subjected to thermal loading on inner and outer surfaces of hollow cylindrical specimens[J]. Chinese Journal of Geotechnical Engineering, 2015, 37(1): 67-74. (in Chinese))
    [12] 白冰, 赵晓龙, 许韬. 多级升温及降温引起的饱和红黏土的热响应试验研究[J]. 岩土力学, 2016, 37(1): 25-32.
    (BAI Bing, ZHAO Xiao-long, XU Tao.An experimental study of thermal response of saturated red clay subjected to progressively heating and cooling processes[J]. Rock and Soil Mechanics ,2016, 37(1): 25-32. (in Chinese))
    [13] 姚仰平, 万征, 杨一帆, 等. 饱和黏土不排水剪切的热破坏[J]. 岩土力学, 2011, 32(9): 2561-2569.
    (YAO Yang-ping, WAN Zheng, YANG Yi-fan, et al.Thermal failure for saturated clay under undrained condition[J]. Rock and Soil Mechanics, 2011, 32(9): 2561-2569. (in Chinese))
    [14] 白冰. 土的动力特性及应用[M]. 北京: 中国建筑工业出版社, 2016: 56-86.
    (BAI Bing.Soil dynamic and application[M]. Beijing: China Architecture & Building Press, 2016: 58-86. (in Chinese))
    [15] 李广信. 高等土力学[M]. 2版. 北京: 清华大学出版社, 2016: 58-75.
    (LI Guang-xin.Advanced soil mechanics[M]. 2nd ed. Beijing: Tsinghua University Press, 2016: 58-75. (in Chinese))
    [16] SELIG E T.Soil parameters for design of buried pipelines[M]. New York: American Society of Civil Engineers, 2015: 99-116.
    [17] BURLON S, MROUEH H, CAO J P.‘Skipped cycles’ method for studying cyclic loading and soil-structure interface[J]. Computers and Geotechnics, 2014, 61: 209-220.
    [18] RUTQVIST J, BORGESSON J, CHIJIMATSU M, et al.Thermohydromechanics of partially saturated geological media: governing equations and formulation of four finite element models[J]. International Journal of Rock Mechanics & Mining Sciences, 2001, 38: 105-127.
    [19] WANG Xue-rui, SHAO Hua, HESSER J, et al.Numerical analysis of thermal impact on hydro-mechanical properties of clay[J]. Journal of Rock Mechanics and Geotechnical Engineering, 2014, 6: 405-417.
    [20] BAI B, RAO D Y, XU T, et al.SPH-FDM boundary for the analysis of thermal process in homogeneous media with a discontinuous interface[J]. International Journal of Heat and Mass Transfer, 2018, 117: 517-526.
    [21] 郭志光, 白冰. 饱和度对多孔介质中热-水-力耦合响应的影响[J]. 岩土工程学报, 2018, 40(6): 1021-1028.
    (GUO Zhi-guang, BAI Bing.Effect of saturation on thermo- hydro-mechanical coupled responses in porous media[J]. Chinese Journal of Geotechnical Engineering, 2018, 40(6): 1021-1028. (in Chinese))
  • 期刊类型引用(19)

    1. 杜岩,张洪达,谢谟文,蒋宇静,张明,贾北凝. 矿山采空区边坡动态稳定性评价方法. 工程科学学报. 2025(02): 215-223 . 百度学术
    2. 潘网生,马宗源,傅良同. 贵州三叠纪垄头组软岩优势结构面研究意义和进展. 绿色科技. 2024(06): 236-240 . 百度学术
    3. 陶通铭. 采动作用下岩质斜坡变形破坏机制研究——以贵州龙场崩塌为例. 中国水运(下半月). 2024(11): 113-114+145 . 百度学术
    4. 陶通铭. 采动作用下岩质斜坡变形破坏机制研究——以贵州龙场崩塌为例. 中国水运. 2024(22): 113-114+145 . 百度学术
    5. 梁博,杨更社,冯伟,潘振兴,孙杰龙,刘慧,陈奇. 冻融诱发平面滑移型岩质边坡失稳模型试验研究. 西安科技大学学报. 2024(06): 1118-1126 . 百度学术
    6. 于群群,孙朝燚. 顺层岩质边坡滑剪破坏规律研究. 河南城建学院学报. 2023(01): 15-21 . 百度学术
    7. 杨忠平,向宫固,赵茜,刘新荣,赵亚龙. 水动力-溶蚀作用下灰岩结构面剪切力学特性. 岩土工程学报. 2023(08): 1555-1563 . 本站查看
    8. 李华. 基于无人机航摄三维模型的地质信息提取和数值模拟应用. 中国水运(下半月). 2023(09): 31-33 . 百度学术
    9. 牛犇,冯春,丛俊余,孙子正,张一鸣. 基于CDEM颗粒流的三维高速远程滑坡成灾范围分析. 岩石力学与工程学报. 2023(S2): 4018-4027 . 百度学术
    10. 杨小龙,王刚. 滑坡堆积体反粒序现象的离散元数值分析. 工程地质学报. 2023(06): 1941-1950 . 百度学术
    11. 李华. 基于无人机航摄三维模型的地质信息提取和数值模拟应用. 中国水运. 2023(18): 31-33 . 百度学术
    12. 穆成林,裴向军,王睿,王超. 基于物理模型试验的含多层软弱夹层顺层开挖高边坡变形破坏特征分析. 中国地质灾害与防治学报. 2022(03): 61-67 . 百度学术
    13. 朱彦鹏,杜一博,杨校辉,张卫雄,朱鋆川. 甘肃舟曲河那滑坡变形特征及孕灾机理. 科学技术与工程. 2022(25): 10884-10895 . 百度学术
    14. 朱赛楠,殷跃平,王猛,朱茂,王晨辉,王文沛,李俊峰,赵慧. 金沙江结合带高位远程滑坡失稳机理及减灾对策研究——以金沙江色拉滑坡为例. 岩土工程学报. 2021(04): 688-697 . 本站查看
    15. 易连兴,李瑜. 岩溶及水动力对鸡尾山滑坡影响作用研究. 工程地质学报. 2021(03): 583-592 . 百度学术
    16. 刘宁波,钟立力,龙森. 山区公路单斜坡回头曲线路段滑坡成因及治理方案研究. 路基工程. 2020(03): 190-195 . 百度学术
    17. 李巧学,周洪福,冉涛,铁永波. 中倾侧向坡中一种岩体破坏过程的模拟研究. 路基工程. 2020(04): 62-65+72 . 百度学术
    18. 崔芳鹏,李滨,杨忠平,吴乐乐,李宁,彭健全. 贵州纳雍普洒滑坡动力触发机制离散元模拟分析. 中国岩溶. 2020(04): 524-534 . 百度学术
    19. 何忠明,杨煜,曾新发,刘森峙. 土洞演化过程中路基变形的响应分析. 中南大学学报(自然科学版). 2018(12): 3068-3076 . 百度学术

    其他类型引用(28)

计量
  • 文章访问数:  229
  • HTML全文浏览量:  8
  • PDF下载量:  160
  • 被引次数: 47
出版历程
  • 收稿日期:  2017-09-26
  • 发布日期:  2018-11-24

目录

    /

    返回文章
    返回