参考文献/References:
[1] 谢洪, 钟敦伦, 矫震, 等.2008年汶川地震重灾区的泥石流[J].山地学报.2009, 27(4): 501-509.[XIE Hong, ZHONG Dunlun, JIAO Zhen, et al.Debris flow in Wenchuan quake-hit area in 2008[J].Mountain Research, 2009, 27(4): 501-509.]
[2] 屈永平, 唐川, 王金亮, 等.强震区泥石流启动机制[J].山地学报.2012, 30(3): 336~341.[QU Yongping, TANG Chuan, WANG Jinliang, et al.Debris flow initiation mechanisms in strong earthquake area[J].Mountain Research, 2012,30(3): 336-341.]
[3] 崔鹏, 庄建琦, 陈兴长, 等.汶川地震区震后泥石流活动特征与防治对策[J].四川大学学报(工程科学版).2010, 42(5): 10-19.[CUI Peng, ZHUANG Jianqi, CHEN Xingchang, et al.Characteristics and countermeasures of debris flow in Wenchuan area after the earthquake[J].Journal of Sichuan University(Engine-ering Science Edition), 2010,42(5): 10-19.]
[4] 唐川, 梁京涛.汶川震区北川“9·24”暴雨泥石流特征研究[J].工程地质学报.2008, 16(6): 751-758.[TANG Chuan, LIANG Jingtao.Characteristics of debris flows in Beichuan epicenter of the Wenchuan earthquake triggered by rainstorm on september 24, 2008[J].Journal of Engineering Geology, 2008, 16(6): 751-758.]
[5] LIU C, HUANG H, DONG J.Impacts of September 21, 1999 Chi-Chi earthquake on the characteristics of gully-type debris flows in central Taiwan[J].Natural Hazards.2008, 47(3): 349-368.
[6] 周伟, 唐川, 周春花.汶川震区暴雨泥石流激发雨量特征[J].水科学进展.2012, 23(5): 650-655.[ZHOU Wei, TANG Chuan, ZHOU Chunhua.Critical rainfall characteristics for rainfall-induced debris flows in Wenchuan earthquake affected areas[J].Advances in Water Science, 2012,23(5): 650-655.]
[7] DAI F C, LEE C F, WANG S J.Analysis of rainstorm-induced slide-debris flows on natural terrain of Lantau Island, Hong Kong[J].Engineering Geology.1999, 51(4): 279-290.
[8] 戴福初, 李焯芬, 黄志全, et al.火山岩坡残积土地区暴雨滑坡泥石流的形成机理[J].工程地质学报.1999, 7(2): 147-153.[DAI Fuchu, LI Zhuofen, HUANG Zhiquan, et al.Mechanism for rainstorm-induced soil slide-debris flows in area with volcanic rock-derived soils[J].Journal of Engineering Geology, 1999, 7(2): 147-153.]
[9] 戴福初, 陈守义, 李焯芬.从土的应力应变特性探讨滑坡发生机理[J].岩土工程学报.2000, 22(1): 127-130.[DAI Fuchu, CHEN Shouyi, LI Zhuofen.Analysis of landslide initiative mechanism based on stress-strain behavior of soil[J].Chinese Journal Of Geotechnical Engineering, 2000, 22(1): 127-130.]
[10] DAI F C, LEE C F, WANG S J.Stress-strain behaviour of a loosely compacted voleanic-derived soil and its significance to rainfall-induced fill slope failures[J].Engineering Geology.1999, 53: 359-370.
[11] 戴福初, 王思敬, 李焯芬.松散击实火山岩坡残积土的应力应变特性及其对滑坡的意义[J].岩土工程学报.1999, 21(3): 257-262.[DAI Fuchu, WANG Sijing, LI Zhuofen.Stress-strain behavior of a loosely-compacted volcanic-derived soil and its implications to landsliding[J].Chinese Journal of Geotechnical Engineering, 1999, 21(3): 257-262.]
[12] FlEMING R W, ELLEN S D, ALGUS M A.Transformation of dilative and contractive landslide debris into debris flows—An example from marin County, California[J].Engineering Geology.1989, 27(1): 201-223.
[13] ANDERSON S A, REIMER M F.Collapse of saturated soil due to reduction in confinement[J].Journal of Geotechnical Engineering.1995, 121(2): 216-220.
[14] IVERSON R M, REID M E, Lahusen R G.Debris-flow mobilization from landslides[J].Annual.Review of Earth & Planetary Sciences.1997, 25: 85-138.
[15] CASTRO G.Liquefaction of sand[D].1969, Harvard University.
[16] CASAGRANDE A.Characteristics of cohesionless soils affecting the stability of slopes and earth fills[J].Journal of the Boston Society of Civil Engineers.1936, 23(1): 13-32.
[17] ROSCOE K H, SCHOFIELD A N, WROTH C P.On the yielding of soils[J].Geotechnique.1958, 8(1): 22-53.
[18] SCHOFIELD A N, WROTH C P, Critical state soil mechanics[M], 1968: University of Cambridge.
[19] WROTH C P, BASSETT R H.A stress-strain relationship for the shearing behaviour of a sand[J].Geotechnique 1965, 15(1): 32-56.
[20] STROUD M A.The behaviour of sand at low stress leuels in the simple shear apparatus[D].1971, University of Cambridge, UK.
[21] POULOS S J.The steady state of deformation[J].Journal of the Geotechnical Engineering Division.1981, 107(5): 553-562.
[22] CASAGRANDE A.Liquefaction and cyclic deformations of sands a critical review[C].Proc.of Fifth Panamerican Conference on Soil Mechanics and Foundation Engineering, Buenos Aires, Argentina.1975, 5: 79-133.
[23] BEEN K, JEFFERIES M G.A state parameter for sands[J].Geotechnique.1985, 35(2): 99-112.
[24] SLADEN J A, HOLLANDER R D, KRAHN J, et al.Back analysis of the Nerlerk berm liquefaction slides[J].Canadian Geotechnical Journal.1985, 22(4): 579-588
[25] ALARCON G, ALEONARDS G A.Discussion of ‘liquefaction evaluation procedure' by Steve J.Poulos, Gonzalo Castro, and John W.France[J].Journal of Geotechnical Engineering.1988, 114(2): 232-236.
[26] SASSA K.The mechanism to initiate debris flows as undrained shear of loose sediments[J].Internationales Symposium Interpraevent.1984: 73-87.
[27] WANG G H, SASSA K.Pore-pressure generation and movement of rainfall-induced landslides:effects of grainsize and fine-particle content[J].Engineering Geology.2003, 69: 109-125.
[28] IVERSON R M, REID M E, IVERSON N R, et al.Acute sensitivity of landslide rates to initial soil porosity[J].Science.2000, 290(5491): 513-516.
[29] IVERSON R M.Landslide triggering by rain infiltration[J].Water Resources Research.2000, 36(7): 1897-1910.
[30] IVERSON R M.Regulation of landslide motion by dilatancy and pore pressure feedback[J].Journal of Geophysical Research Atmospheres.2005, 110(F0): 1-16.
[31] VERDUGO R, ISHIHARA K.The steady state of sandy soils[J].Soil and Foundation.1996, 36(2): 81-91.
[32] GABET E J, MUDD S M.The mobilization of debris flows from shallow landslides[J].Geomorphology.2006, 74(1-4): 207-218.
[33] 董辉, 胡自然, 傅鹤林, 等.质量密度及围压影响的堆积碎石土变形特性分析[J].中南大学学报(自然科学版).2015, 46(10): 3879-3887.[DONG Hui, HU Ziran, FU Helin, et al.Analysis of deformation characteristics of eluvial gravel soil under mass density fand confining pressure[J].Journal of Central South University(Science and Technology), 2015, 46(10): 3879-3887.]
[34] 陈守义.试论土的应力应变模式与滑坡发育过程的关系[J].岩土力学.1996, 17(3): 21-26.[CHEN Shouyi.Relationship between stress-strain modes of soils and growing processes of landslides[J].Rock and Soil Mechanics,1996, 17(3): 21-26.]
[35] 朱颖彦.砾石土边坡稳定性研究—以泥石流堆积砾石土为例[D].2006, 中国科学院水利部成都山地灾害与环境研究所.[ZHU Yingyan.Research on the Stability of Gravel Soil Slope: Based on Debris Flow Sediment[D].2006, Chendu: Institute of Mountain Hazards and Environment, Chinese Academy of Sciences and Ministry of Water Conservancy]
[36] 朱颖彦, 崔鹏, 陈晓清.泥石流堆积体边坡失稳机理的试验与稳定性分析[J].岩石力学与工程学报.2005, 24(21): 3927-3934.[ZHU Yingyan, CUI Peng, CHEN Xiaoqing.Experiment on mechanism of slope failure of debris flow fan and stability analysis[J].Chinese Journal of Rock Mechanics and Engineering, 2005, 24(21): 3927-3934.]
[37] 金艳丽, 戴福初.灌溉诱发黄土滑坡机理研究[J].岩土工程学报.2007, 29(10): 1493-1499.[JIN Yanli, DAI Fuchu.The mechanism of irrigation-induced landslides of loess[J].Chinese Joural of Geotechnical Engineering, 2007, 29(10): 1493-1499.]
[38] 金艳丽, 戴福初.饱和黄土的静态液化特性试验研究[J].岩土力学.2008, 29(12): 3293-3298.[JIN Yanli, DAI Fuchu.Experimental investigation of static liquefaction of saturated loess[J].Rock and Soil Mechanics, 2008, 29(12): 3293-3298.]
[39] 魏厚振.蒋家沟泥石流砾石土力学性状与起动过程分析研究[D].2008, 中国科学院研究生院(武汉岩土力学研究所).[WEI Houzhen.Mechanical behavior of gravelly soil and analysis initiation of deris flows in Jiangjia ravine[D].2008, Institute of Rock & Soil Mechanics, Chinese Academy of Science.]
[40] 张明, 胡瑞林, 殷跃平.滑坡型泥石流转化机制环剪试验研究[J].岩石力学与工程学报.2010, 29(4): 822-832.[ZHANG Ming, HU Ruilin, YIN Yueping.Study of transform mechanism of landslide-debris flow with ring shear test[J].Chinese Journal of Rock Mechanics and Engineering, 2010, 29(4): 822-832.]
[41] 陈晓斌.红砂岩粗粒土剪胀效应大型三轴试验研究[J].岩土力学与工程学报.2010, 29(S1): 3145-3149.[CHEN Xiaobin.Study of dilatancy effect of redstone coarse grained soil by large scale triaxial tests[J].Chinese Journal of Rock Mechanics and Engineering, 2010, 29(S1): 3145-3149.]
[42] 刘恩龙, 陈生水, 李国英, 等.堆石料的临界状态与考虑颗粒破碎的本构模型[J].岩土力学.2011, 32(S2): 148-154.[LIU Enlong, CHEN Shengshui, LI Guoying, et al.Critical state of rockfill materials and a constitutive model considering grain crushing[J].Rock and Soil Mechanics, 2011, 32(S2): 148-154.]
[43] 刘恩龙, 覃燕林, 陈生水, 等.堆石料的临界状态探讨[J].水利学报.2012, 43(5): 505-519.[LIU Enlong, QIN Yanlin, CHEN Shengshui, et al.Investigation on critical state of rockfill materials[J].Shuili Xuebao, 2012, 43(5): 505-511,519.]
[44] 周跃峰, 谭国焕, 甄伟文, 等.入渗诱发黄土滑坡的力学机制[J].岩土力学.2013, 34(11): 3173-3179, 3186.[ZHOU Yuefeng, TAN Guohuan, ZHEN Weiwen, et al.Mechanism of infiltration-induced loess landslides[J].Rock and Soil Mechanics, 2013, 34(11): 3173-3179, 3186.]
[45] ZHOU Y F, THAM L G, YAN W M, et al.Laboratory study on soil behavior in loess slope subjected to infiltration[J].Engineering Geology.2014, 183: 31-38.
[46] 张登飞, 陈存礼, 李文文, 等.Q3 原状非饱和黄土的水量变化和临界状态特性[J].岩土工程学报.2015, 37(S1): 197-201.[ZHANG Dengfei, CHEN Cunli, LI Wenwen, et al.Charcteristics of critical state and water volume change for Q3 unsaturated intact loess[J].Chinese Journal of Geotechnical Engineering, 2015, 37(S1): 197-201.]
[47] 迟明杰, 赵成刚, 李小军.砂土剪胀机理的研究[J].土木工程学报.2009, 42(3): 99-104.[CHI Mingjie, ZHAO Chenggang, LI Xiaojun.Stress-dilation mechanism of sands[J].China civil engineering journal, 2009, 42(3): 99-104.]
[48] CHEN Ningsheng, ZHU Yunhua, HUANG Qi, et al.Mechanisms involved in triggering debris flows within a cohesive gravel soil mass on a slope: a case in SW China [J].Journal of Mountain Science.2017, 14(4): 611-620.
[49] 陈仲颐, 周景星, 王洪瑾.土力学[M], 北京: 清华大学出版社, 1994.[CHEN Zhongyi, ZHOU Jingxing, WANG Hongjin.Soil Mechanics[M], Beijing: Tsinghua University Press, 1994.]
[50] 陈宁生, 崔鹏, 王晓颖, 等.地震作用下泥石流源区砾石土体强度的衰减实验[J].岩石力学与工程学报.2004, 23(16): 2743-2747.[CHEN Ningsheng, CUI Peng, WANG Xiaoying, et al.Testing study on strength reduction of gravelly soil in triggering area of debris flow under earthquake[J].Chinese Journal of Rock Mechanics and Engineering, 2004, 23(16): 2743-2747.]
[51] 庄建琦, 崔鹏, 胡凯衡, 等.细颗粒迁移在泥石流形成过程中的作用[J].山地学报.2015, 33(6): 713-720.[ZHUANG Jianqi, CUI Peng, HU Kaiheng, et al.Fine particle size moving and it's effective on debris flow initiation[J].Mountain Research, 2015, 33(6): 713-720.]
[52] 高冰, 周健, 张姣.泥石流启动过程中水土作用机制的宏细观分析[J].岩石力学与工程学报.2011, 30(12): 2567-2573.[GAO Bing, ZHOU Jian, ZHANG Jiao.Macro-meso analysis of water-soil interaction mechanism of debris flow starting process[J].Chinese Journal of Rock Mechanics and Engineering, 2011, 30(12): 2567-2573.]
[53] 郭庆国.粗粒土的工程特性及应用[M], 郑州: 黄河水利出版社, 1998.[GUO Qingguo.Engineering features and utilization of coarse-grained soil, Zhengzhou: The Yellow River Water Conservancy Press, 1998.]
[54] 王志兵, 汪稔, 胡明鉴, 等.蒋家沟砾石土的特性及其对斜坡失稳的意义[J].岩土力学.2010, 31(S2): 206-211.[WANG Zhibin, WANG Nian, HU Mingjian, et al.Characteristics of gravelly soil and their implications for slope instability in Jiangjiagou ravine[J].Rock and Soil Mechanics, 2010, 31(S2): 206-211.]
[55] 蒋中明, 王为, 冯树荣, 等.砂砾石土渗透变形特性的应力状态相关性试验研究[J].水利学报.2013, 44(12): 1498-1505.[JIANG Zhongming, WANG Wei, FENG Shurong, et al.Experimental of study on the relevance between stress state and seepage failure of sandy-gravel soil[J].Shuili Xuebao, 2013, 44(12): 1498-1505.]
[56] 徐舜华, 郑刚, 徐光黎.考虑剪切硬化的砂土临界状态本构模型[J].岩土工程学报.2009, 31(6): 953-958.[XU Shunhua, ZHENG Gang, XU Guangli.Critical state constitutive model of sand with shear hardening[J].Chinese Journal of Geotechnical Engineering, 2009, 31(6): 953-958.]