水流拖曳力对斜坡浅层土稳定性的影响分析
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  • 英文篇名:Analysis for influence of water flow drag force on stability of slope shallow soil
  • 作者:王启茜 ; 周洪福 ; 符文熹 ; 叶飞
  • 英文作者:WANG Qi-qian;ZHOU Hong-fu;FU Wen-xi;YE Fei;State Key Laboratory of Hydraulics and Mountain River Engineering, Sichuan University;College of Water Resource & Hydropower, Sichuan University;Chengdu Center of China Geological Survey;
  • 关键词:拖曳力效应 ; 斜坡土浅层稳定性 ; 径流渗流耦合 ; 流速分布
  • 英文关键词:drag force effect;;stability of slope shallow soil;;coupling of runoff and seepage;;velocity distribution
  • 中文刊名:YTLX
  • 英文刊名:Rock and Soil Mechanics
  • 机构:四川大学水力学与山区河流开发保护国家重点实验室;四川大学水利水电学院;中国地质调查局成都地质调查中心;
  • 出版日期:2018-07-16 16:30
  • 出版单位:岩土力学
  • 年:2019
  • 期:v.40;No.299
  • 基金:国家重点基础研究发展规划(973计划)项目(No.2015CB057903);; 国家自然科学基金(No.41772321);; 中国地质调查局基础地质调查项目(No.DD20160272);; 四川省国际合作项目(No.2018HH0082)~~
  • 语种:中文;
  • 页:YTLX201902039
  • 页数:8
  • CN:02
  • ISSN:42-1199/O3
  • 分类号:345-352
摘要
为研究强降雨条件下地表径流和裂隙水流的拖曳力作用对斜坡稳定性的影响,建立斜坡地表径流和地下水渗流耦合分析模型。采用Navier-Stokes方程描述地表径流和裂隙水流,Brinkman-extended Darcy方程描述土体和岩石中的渗流,并根据不同介质交界面处流速相等及剪应力连续的边界条件,推求各介质中的流速分布。应用Newton内摩擦定律求得水流对斜坡产生的拖曳力,进而将拖曳力嵌入刚体极限平衡理论对斜坡稳定性进行分析。典型斜坡实例计算结果表明,当未考虑拖曳力效应时,斜坡的安全系数为1.164,考虑水流对斜坡土体产生拖曳力效应时,斜坡的安全系数为1.089,斜坡安全系数降低了6.44%。这表明拖曳力作用对斜坡的稳定性存在不利影响,斜坡土体在近乎临界稳定状态下拖曳力将对斜坡失稳起到决定性作用。最后分别讨论了考虑拖曳力和不考虑拖曳力情况下斜坡的安全系数与径流水深、斜坡倾角、土层厚度之间的关系。分析表明,在其他条件相似的条件下,斜坡越陡,斜坡土体的安全系数下降越明显;斜坡安全系数随着斜坡倾角增加而不断降低,随着土层厚度的增加而不断降低。
        The coupling analysis model of the surface runoff and water flow in fissures is established to study the effect of surface runoff and groundwater seepage on the stability of slope under heavy rainfall condition. The Navier–Stokes is used to describe the runoff and subsurface runoff, and the Brinkman-extended Darcy equation is used to describe the seepage in the soil and rock. Under the boundary conditions of the equal velocity and continuous shear stress at the interface of different media, we could inquire into the flow distribution of internal seepage and subsurface runoff. The drag force generated by water flow on the slope is obtained by applying the Newtonian friction law, and the drag force is embedded into the rigid body equilibrium theory to analyze the slope stability. The calculation results of the actual slope show that the safety coefficient of the slope is 1.164 when the effect of drag force is not considered. And the safety coefficient of the slope is 1.089 when the drag effect exerted by the water flow on the slope soil is taken into consideration, and the safety factor of the slope is decreased by 6.44%. It shows that the drag force effect has a great negative influence on the stability of the slope, and the drag force can play a decisive role in the critical steady state. Finally, the relationships between the safety coefficient of slope and runoff depth, soil thickness and slope inclination are discussed respectively considering drag force or not. The analysis shows that under similar conditions, the steeper the slope, the more obvious the decrease of the safety factor of the slope soil. The safety factor of the slope decreases with the increase of the slope inclination and the thickness of the soil layer.
引文
[1]任姗姗.斜坡高扬程虹吸排水效果与影响因素研究[D].杭州:浙江大学,2014.REN Shan-shan.Research on the effect and influencing factors of slope high-lift siphon drainage[D].Hangzhou:Zhejiang University,2014.
    [2]张群,许强,易靖松,等.南江红层地区缓倾角浅层土质滑坡降雨入渗深度与成因机理研究[J].岩土工程学报,2016,38(8):1447-1455.ZHANG Qun,XU Qiang,YI Jing-song,et al.Rainfall infiltration depth and formation mechanism of slow-inclination soil landslides in Nanjiang[J].Chinese Journal of Geotechnical Engineering,2016,38(8):1447-1455.
    [3]王发读.浅层堆积物滑坡特征及其与降雨的关系初探[J].水文地质工程地质,1995,(1):20-23.WANG Fa-du.Relationship between characteristics of the Shallow landslide and rainfall[J].Hydrogeology&Engineering Geology,1995,(1):20-23.
    [4]PRADEL D,RAAD G.Effect of permeability on surficial stability of homogeneous slopes[J].Journal of Geotechnical Engineering,1993,119(2):315-332.
    [5]李宁,许建聪,钦亚洲.降雨诱发浅层滑坡稳定性的计算模型研究[J].岩土力学,2012,33(5):209-214.LI Ning,XU Jian-cong,QIN Ya-zhou.Research on calculation model for stability evaluation of rainfallinduced shallow landslides[J].Rock and Soil Mechanics,2012,33(5):209-214.
    [6]许建聪,尚岳全,陈侃福,等.强降雨作用下的浅层滑坡稳定性分析[J].岩石力学与工程学报,2005,24(18):3246-3251.XU Jian-cong,SHANG Yue-quan,CHEN Kan-fu,et al.Analysis of shallow landslide stability under intensive rainfall[J].Chinese Journal of Rock Mechanics and Engineering,2005,24(18):3246-3251.
    [7]MUNTOHAR A S,LIAO H J.Rainfall infiltration:infinite slope model for landslides triggering by rainstorm[J].Natural Hazards,2010,54(3):967-984.
    [8]魏宁,茜平一,傅旭东,等.降雨和蒸发对土质斜坡稳定性的影响[J].岩土力学,2006,27(5):778-781.WEI Ning,QIAN Ping-yi,FU Xu-dong,et al.Effects of rainfall infiltration and evaporation on soil slope stability[J].Rock and Soil Mechanics,2006,27(5):778-781.
    [9]YEH H F,LEE C C,LEE C H.A rainfall-infiltration model for unsaturated soil slope stability[J].Journal of Environmental and Management,2008,18(4):261-268.
    [10]常金源,包含,伍法权,等.降雨条件下浅层滑坡稳定性探讨[J].岩土力学,2015,36(4):995-1001.CHANG Jin-yuan,BAO Han,WU Fa-quan,et al.Discussion on stability of shallow landslide under rainfall[J].Rock and Soil Mechanics,2015,36(4):995-1001.
    [11]SKEMPTON A W,DELORY F A.Stability of natural slopes in London clay[C]//Proceedings of 4th International Conference on Soil Mechanics and Foundation Engineering.[S.l.]:[s.n.],1957:378-381.
    [12]CHEN Xiao-dong,GUO Hong-xian,SONG Er-xiang.Analysis method for slope stability under rainfall action[M]//Landslides and Engineered Slopes.London:Taylor&Francis Group,2008:1507-1515.
    [13]吴持恭.水力学[M].2版.北京:高等教育出版社,1982.WU Chi-gong.Hydraulics[M].2nd ed.Beijing:Higher Education Press,1982.
    [14]DENG C,MARTINEZ D M.Viscous flow in a channel partially filled with a porous medium and with wall suction[J].Chemical Engineering Science,2005,60(2):329-336.
    [15]NEALE G,NADER W.Practical significance of brinkman's extension of Darcy's law:Coupled parallel flows within a channel and a bounding porous medium[J].Canadian Journal of Chemical Engineering,1974,52(4):475-478.
    [16]杨进良.土力学[M].4版.北京:中国水利水电出版社,2009.YANG Jin-liang.Soil mechanics[M].4th ed.Beijing:China Water and Power Press,2009.
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