参考文献
[1]Zimmerman R W,Yeo I W.Fluid Flow in Rock Fractures:From the Navier Stokes Equations to the Cubic Law[J].Dynamics of Fluids in Fractured Rock,2000:213-224.
[2]Oron A P,Berkowitz B.Flow in rock fractures:The local cubic law assumption reexamined[J].Water Resources Research,1998,34(11):2811-2825.
[3]Zimmerman R W,Bodvarsson G S.Hydraulic conductivity of rock fractures[J].Transport in Porous Media,1996,23(1):1-30.
[4]Moreno L,Tsang Y W,Tsang C F,et al.Flow and tracer transport in a single fracture:A stochastic model and its relation to some field observations[J].Water Resources Research,1988,24(12):2033-2048.
[5]Brown S R.Fluid flow through rock joints:the effect of surface roughness[J].Journal of Geophysical Research:Solid Earth,1987,92(B2):1337-1347.
[6]Schrauf T W,Evans D D.Laboratory Studies of Gas Flow Through a Single Natural Fracture[J].Water Resources Research,1986,22(7):1038-1050.
[7]Tsang Y W.The effect of tortuosity on fluid flow through a single fracture[J].Water Resources Research,1984,20(9):1209-1215.
[8]Hasegawa E,Izuchi H.On Steady Flow through a Channel Consisting of an Uneven Wall and a Plane Wall:Part 1.Case of No Relative Motion in Two Walls[J].Bull Jap Soc Mech Eng,1983,26(214):514-520.
[9]Iwai K.Fundamental studies of fluid flow through a single fracture[D].University of California,Berkeley,1976.
[10]Sharp J C,Maini Y.Fundamental considerations on the hydraulic characteristics of joints in rock[C].Proceeding of the International Symposium on Percolation through Fissured Rock.Stuttgart.1972:1-15.
[11]Brown S R,Stockman H W,Reeves S J.Applicability of the Reynolds equation for modeling fluid flow between rough surfaces[J].Geophysical Research Letters,1995,22(18):2537-2540.
[12]Mourzenko V V,Thovert J,Adler P M.Permeability of a single fracture;validity of the Reynolds equation[J].Journal de PhysiqueⅡ,1995,5(3):465-482.
[13]Brush D J,Thomson N R.Fluid flow in synthetic rough-walled fractures:Navier-Stokes,Stokes,and local cubic law simulations[J].Water Resources Research,2003,39(4):1037-1041.
[14]Lomize G M.Flow in Fractured Rock[M].Gosemergoizdat,Moscow,1951:127-129.
[15]Romm E S.Flow characteristics of fractured rocks[M].Nedra Moscow,1966.
[16]Louis C.A study of groundwater flow in jointed rock and its influence on the stability of rock masses[M].London,Eng.:Imperial College of Science and Technology,1969.
[17]Reynolds O.On the Theory of Lubrication and Its Application to Mr.Beauchamp Tower's Experiments,Including an Experimental Determination of the Viscosity of Olive Oil.[J].Proceedings of the Royal Society of London,1886,40(242-245):191-203.
[18]Bird R B,Stewart W E,Lightfoot E N.Transport phenomena[J].John Wiley&Sons,1960,28(2):338-359.
[19]Zimmerman R W,Al-Yaarubi A,Pain C C,et al.Non-linear regimes of fluid flow in rock fractures[J].International Journal of Rock Mechanics and Mining Sciences,2004(41):163-169.
[20]Zimmerman R W,Kumar S,Bodvarsson G S.Lubrication theory analysis of the permeability of rough-walled fractures[J].International Journal of Rock Mechanics & Mining Sciences &Geomechanics Abstracts,1991,28(91):325-331.
[21]Neuzil C E,Tracy J V.Flow through fractures[J].Water Resources Research,1981,17(1):191-199.
[22]Patir N,Cheng H S.An average flow model for determining effects of three-dimensional roughness on partial hydrodynamic lubrication[J].Journal of Tribology,1978,100(1):12-17.
[23]Gelher L W.Applications of stochastic models to solute transport in fractured rocks[M].SKB,1987.
[24]Thompson M E,Brown S R.The effect of anisotropic surface roughness on flow and transport in fractures[J].Journal of Geophysical Research:Solid Earth,1991,96(B13):21923-21932.
[25]Brown S,Caprihan A,Hardy R.Experimental observation of fluid flow channels in a single fracture[J].Journal of Geophysical Research:Solid Earth,1998,103(B3):5125-5132.
[26]Ge S.A governing equation for fluid flow in rough fractures[J].Water Resources Research,1997,33(1):53-61.
[27]Koyama T,Neretnieks I,Jing L.A numerical study on differences in using Navier-Stokes and Reynolds equations for modeling the fluid flow and particle transport in single rock fractures with shear[J].International Journal of Rock Mechanics& Mining Sciences,2008,45(7):1082-1101.
[28]Glass R J,Nicholl M J,Thompson M E.Comparison of measured and calculated permeability for a saturated,rough-walled fracture[J].Eos Trans.AGU,1991,72(44):216.
[29]Reimus P W,Robinson B A,Glass R J.Aperture characteristics,saturated fluid-flow and tracer-transports calculations for a natural fracture[R].American Nuclear Society,La Grange Park,IL(United States);American Society of Civil Engineers,New York,NY(United States),1993.
[30]Nicholl M J,Rajaram H,Glass R J,et al.Saturated flow in a single fracture:Evaluation of the Reynolds equation in measured aperture fields[J].Water Resources Research,1999,35(11):3361-3373.
[31]Boussinesq J.Mémoire sur l'influence des frottements dans les mouvements réguliers des fluides[J].Journal de Mathématiques Pures et Appliquées,1868:377-424.
[32]Snow D T.A parallel plate model of fractured permeable media[D].University of California,Berkeley,1965.
[33]Jacob B.Dynamics of fluids in porous media[J].Soil Science,1972.
[34]Baker W J.Flow in Fissured Formations[C].World Petroleum Congress,1955.
[35]Louis C.A study of groundwater flow in jointed rock and its influence on the stability of rock masses[M].London,Eng.:Imperial College of Science and Technology,1969.
[36]Sharp J C.Fluid flow through fissured media[D].Imperial College London(University of London),1970.
[37]Gale J E.A numerical,field and laboratory study of flow in rocks with deformable fractures[J].Inland Waters Directorate,1977.
[38]Iwai K.Fundamental studies of fluid flow through a single fracture[D].University of California,Berkeley,1976.
[39]Walsh J B.Effect of pore pressure and confining pressure on fracture permeability[C].Elsevier,1981.
[40]周创兵,熊文林.岩石节理的渗流广义立方定理[J].岩土力学,1996(4):1-7.
[41]Barton N,Bandis S,Bakhtar K.Strength,deformation and conductivity coupling of rock joints[J].International Journal of Rock Mechanics&Mining Sciences&Geomechanics Abstracts,1985,22(85):121-140.
[42]Witherspoon P A,Wang J S Y,Iwai K,et al.Validity of Cubic Law for fluid flow in a deformable rock fracture[J].Water Resources Research,1980,16(6):1016-1024.
[43]Tsang Y W.Hydromechanical behavior of a deformable rock fracture subject to normal stress[J].Journal of Geophysical Research,1981,86(B10):9287-9298.
[44]Elsworth D,Goodman R E.Characterization of rock fissure hydraulic conductivity using idealized wall roughness profiles[C].Elsevier,1986.
[45]王媛,速宝玉,徐志英.粗糙裂隙渗流及其受应力作用的计算机模拟[J].河海大学学报:自然科学版,1997(6):80-85.
[46]潘国营,韩星霞.单一粗糙隙缝水流非线性运动实验[J].重庆大学学报(自然科学版),2000(z1):207-209.
[47]许光祥,张永兴,哈秋舲.粗糙裂隙渗流的超立方和次立方定律及其试验研究[J].水利学报,2003,3(3):74-79.
[48]张柬,邢军,张希巍.岩体裂隙渗流特性的试验研究[A]//第九届全国岩石力学与工程学术大会论文集[C].2006.
[49]卢占国,姚军,王殿生,等.平行裂缝中立方定律修正及临界速度计算[J].实验室研究与探索,2010,29(4):14-19.
[50]Nikuradse J.Gesetzmäβigkeiten der turbulenten Strömung in glatten Rohren(Nachtrag)[J].Forschung im Ingenieurwesen,1933,4(1):44.
[51]赵坚,赖苗,沈振中.适于岩溶地区渗流场计算的改进折算渗透系数法和变渗透系数法[J].岩石力学与工程学报,2005,24(8):1341-1347.
[52]Burman E,Hansbo P.A unified stabilized method for Stokes and Darcy's equations[J].Journal of Computational and Applied Mathematics,2007,198(1):35-51.
[53]Burman E,Hansbo P.Stabilized Crouzeix Raviart element for the Darcy Stokes problem[J].Numerical Methods for Partial Differential Equations,2005,21(5):986-997.
[54]王腊春,汪文富.贵州普定后寨地下河流域岩溶水特征研究[J].地理科学,2000,20(6):557-562.
[55]卢耀如,杰显义,张上林,等.中国岩溶(喀斯特)发育规律及其若干水文地质工程地质条件[J].地质学报,1973(1):121-136.
[56]钱家忠,杨立华,李如忠,等.基岩裂隙系统中地下水运动物理模拟研究进展[J].合肥工业大学学报(自然科学版),2003,26(4):510-513.
[57]崔光中,朱远峰,覃小群.岩溶水系统的混合模拟——以北山岩溶水系统模拟为例[J].中国岩溶,1988(3):253-258.
[58]李文兴,郭纯青.岩溶管道水系统物理模拟——以岩滩水电站板文地下河系为例[J].中国岩溶,1996(4):351-357.
[59]李文兴,王刚.岩溶管道水流的等效管束组合模拟[J].中国岩溶,1997(3):227-233.
[60]李耀祥,韦兵,李文兴.百龙滩水电站库区岩溶内涝的物理模拟[J].水电站设计,1999(3):105-108.
[61]耿克勤,陈凤翔.岩体裂隙渗流水力特性的实验研究[J].清华大学学报(自然科学版),1996(1):102-106.
[62]张祯武,吕文星.岩溶水管流场与分散流场示踪识别研究[J].工程勘察,1997(3):42-45.
[63]王恩志,孙役,黄远智,等.三维离散裂隙网络渗流模型与实验模拟[J].水利学报,2002(5):37-40.
[64]陈崇希,万军伟,詹红兵,等.“渗流-管流耦合模型”的物理模拟及其数值模拟[J].水文地质工程地质,2004,31(8):1-8.
[65]沈振中,陈雰,赵坚.岩溶管道与裂隙交叉渗流特性试验研究[J].水利学报,2008,39(2):137-145.
[66]Faulkner J,Hu B X,Kish S,et al.Laboratory analog and numerical study of groundwater flow and solute transport in a karst aquifer with conduit and matrix domains[J].Journal of Contaminant Hydrology,2009,110(1):34-44.
[67]季叶飞,束龙仓,董贵明,等.基于物理试验的岩溶区PSSK转化关系研究[J].水文地质工程地质,2010,2(37):91-94.
[68]钱坤,方绍林,张林祥.高速公路岩溶塌陷物理模拟试验研究[J].公路交通科技(应用技术版),2014(8):137-139.
[69]White W B.A brief history of karst hydrogeology:contributions of the NSS[J].Journal of Cave and Karst Studies,2007,69(1):13-26.
[70]Kaufmann G.A model comparison of karst aquifer evolution for different matrix-flow formulations[J].Journal of Hydrology,2003,283(1):281-289.
[71]Ashby W R.An introduction to cybernetics[J].An Introduction to Cybernetics,1956,22(12):1421.
[72]Labat D,Ababou R,Mangin A.Linear and nonlinear input/output models for karstic springflow and flood prediction at different time scales[J].Stochastic Environmental Research and Risk Assessment,1999,13(5):337-364.
[73]Dreiss S J.Linear unit-response functions as indicators of recharge areas for large karst springs[J].Journal of Hydrology,1983,61(1):31-44.
[74]Dreiss S J.Linear Kernels for karst aquifers[J].Water Resources Research,1982,18(4):865-876.
[75]Lambrakis N,Andreou A S,Polydoropoulos P,et al.Nonlinear analysis and forecasting of a brackish karstic spring[J].Water Resources Research,2000,36(4):875-884.
[76]Kurtulus B,Razack M.Modeling daily discharge responses of a large karstic aquifer using soft computing methods:artificial neural network and neuro-fuzzy[J].Journal of Hydrology,2010,381(1):101-111.
[77]Hu C,Hao Y,Yeh T C J,et al.Simulation of spring flows from a karst aquifer with an artificial neural network[J].Hydrological Processes,2008,22(5):596-604.
[78]Paleologos E K,Skitzi I,Katsifarakis K,et al.Neural network simulation of spring flow in karst environments[J].Stochastic Environmental Research and Risk Assessment,2013,27(8):1829-1837.
[79]Wicks C M,Hoke J A.Linear systems approach to modeling groundwater flow and solute transport through karstic basins[C].DTIC Document,1999.
[80]Denic Jukic V,Jukiv D.Composite transfer functions for karst aquifers[J].Journal of Hydrology,2003,274(1):80-94.
[81]Scanlon B R,Mace R E,Barrett M E,et al.Can we simulate regional groundwater flow in a karst system using equivalent porous media models?Case study,Barton Springs Edwards aquifer,USA[J].Journal of Hydrology,2003,276(1):137-158.
[82]Maillet E.Sur les fonctions monodromes et les nombres transcendants[J].Journal de Mathématiques Pures et Appliquées,1904:275-363.
[83]Fleury P,Plagnes V,Bakalowicz M.Modelling of the functioning of karst aquifers with a reservoir model:Application to Fontaine de Vaucluse(South of France)[J].Journal of Hydrology,2007,345(1):38-49.
[84]Arikan A.MODALP:a deterministic rainfall-runoff model for large karstic areas[J].Hydrological Sciences Journal,1988,33(4):401-414.
[85]Bonacci O,Bojanic D.Rhythmic karst springs[J].Hydrological Sciences Journal,1991,36(1):35-47.
[86]Juki'c D,Deni'cjuki'c V.Groundwater balance estimation in karst by using a conceptual rainfall-runoff model[J].Journal of Hydrology,2009,373(3-4):302-315.
[87]Tritz S,Guinot V,Jourde H.Modelling the behaviour of a karst system catchment using non-linear hysteretic conceptual model[J].Journal of Hydrology,2011,397(3):250-262.
[88]Coppola Jr E,Szidarovszky F,Poulton M,et al.Artificial neural network approach for predicting transient water levels in a multilayered groundwater system under variable state,pumping,and climate conditions[J].Journal of Hydrologic Engineering,2003,8(6):348-360.
[89]Ghasemizadeh R,Hellweger F,Butscher C,et al.Review:Groundwater flow and transport modeling of karst aquifers,with particular reference to the North Coast Limestone aquifer system of Puerto Rico[J].Hydrogeology Journal,2012,20(8):1441-1461.
[90]朱岳明.裂隙岩体渗流研究述评[J].河海科技进展,1991(2):16-25.
[91]Cacas M C,Ledoux E,Marsily G D,et al.Modeling fracture flow with a stochastic discrete fracture network:Calibration and validation:1.The Flow mode[J].Water Resources Research,1990,26(3):479-489.
[92]Dverstorp B,Andersson J,Nordqvist W.Discrete fracture network interpretation of field tracer migration in sparsely fractured rock[J].Water Resources Research,1992,28(9):2327-2343.
[93]仵彦卿.岩体水力学概述[J].地质灾害与环境保护,1995(1):57-64.
[94]仵彦卿.岩体水力学基础(五)——岩体渗流场与应力场耦合的裂隙网络模型[J].水文地质工程地质,1997(5):41-45.
[95]速宝玉,詹美礼,郭笑娥.交叉裂隙水流的模型实验研究[J].水利学报,1997(5):1-6.
[96]Dershowitz W S,Fidelibus C.Derivation of equivalent pipe network analogues for three dimensional discrete fracture networks by the boundary element method[J].Water Resources Research,1999,35(9):2685-2691.
[97]陈雰.岩溶与裂隙交叉渗流特性试验及数值模拟研究[D].南京:河海大学,2006.
[98]Ghasemizadeh R,Hellweger F,Butscher C,et al.Review:Groundwater flow and transport modeling of karst aquifers,with particular reference of the North Coast Limestone aquifer system of Puerto Rico[J].Hydrogeology Journal,2012,20(8):1441-1461.
[99]Quinn J J,Tomasko D,Kuiper J A.Modeling complex flow in a karst aquifer[J].Sedimentary Geology,2006,184(3):343-351.
[100]Wilson C R,Witherspoon P A,Long J,et al.Large-scale hydraulic conductivity measurements in fractured granite[C].Elsevier,1983.
[101]Neuzil C E,Tracy J V.Flow through fractures[J].Water Resources Research,1981,17(1):191-199.
[102]Louis C.Rock hydraulics[M].Rock mechanics,Springer,1972,299-387.
[103]Snow D T.Anisotropie permeability of fractured media[J].Water Resources Research,1969,5(6):1273-1289.
[104]Barenblatt G I,Zheltov I P,Kochina I N.Basic concepts in the theory of seepage of homogeneous liquids in fissured rocks[strata][J].Journal of Applied Mathematics and Mechanics,1960,24(5):1286-1303.
[105]Warren J E,Root P J.The behavior of naturally fractured reservoirs[J].Society of Petroleum Engineers Journal,1963,3(3):245-255.
[106]Khaled M.Y.,Beskos D.E.,Aifantis E.C.On the theory of consolidation with double porosityⅡA finite element formulation[J].International Journal for Numerical and Analytical Methods in Geomechanics,1984,8(2):101-123.
[107]Streltsova T D.Well testing in heterogeneous formations[J].New York,Joho Wiley and Sons Inc.,1987.
[108]夏日元,郭纯青.岩溶地下水系统单元网络数学模拟方法研究[J].中国岩溶,1992(4):267-278.
[109]Fujio K.A macroscopic momentum equation for flow in porous media of dual structure[J].Proceeding of Japan,2000,6(26):837-841.
[110]Cornation F,Perrochet P.Analytical 1D dual-porosity equivalent solutions to 3D discrete single-continuum models.Application to karstic spring hydrograph modelling[J].Journal of Hydrology,2002,262(1):165-176.
[111]吴世艳,周启友,杨国勇,等.双重介质模型在岩溶地下水流动系统模拟中的应用[J].水文地质工程地质,2008(6):16-21.
[112]董贵明,束龙仓,王茂枚,等.渗流-水平井流耦合数学模型和数值模拟[J].水科学进展,2009(6):830-837.
[113]Kordilla J,Sauter M,Reimann T,et al.Simulation of saturated and unsaturated flow in karst systems at catchment scale using a double continuum approach[J].Hydrology and Earth System Sciences,2012,16(10):3909-3923.
[114]Abdassah D,Ershaghi I.Triple-porosity systems for representing naturally fractured reservoirs[J].SPE Formation Evaluation,1986,1(2):113-127.
[115]Jalali Y,Ershaghi I.Pressure transient analysis of heterogeneous naturally fractured reservoirs[C].Society of Petroleum Engineers,1987.
[116]陈崇希.岩溶管道-裂隙-孔隙三重空隙介质地下水流模型及模拟方法研究[J].地球科学,1995,20(4):361-366.
[117]成建梅,陈陆希.广西北山岩溶管道-裂隙-孔隙地下水流数值模拟初探[J].水文地质工程地质,1998(4):50-54.
[118]潘国营,邓清海,闫芙蓉.预测矿坑突水量的广义三重空隙介质渗流模型[J].煤炭学报,2003(5):509-512.
[119]姜媛媛,沈振中,郭娜,等.岩溶-裂隙介质渗流的三重介质模型[J].中国科学技术大学学报,2004(z1):361-366.
[120]赵坚,赖苗,沈振中.适于岩溶地区渗流场计算的改进折算渗透系数法和变渗透系数法[J].岩石力学与工程学报,2005(8):1341-1347.
[121]束龙仓,陶玉飞,董贵明,等.岩溶多重介质泉水流量衰减过程的室内模拟及分析[J].工程勘察,2008(9):32-35.
[122]董贵明,束龙仓,田娟,等.西南岩溶地下河系统水流运动数值模型[J].吉林大学学报:地球科学版,2011,4(4):1136-1143.
[123]常勇,刘玲.岩溶地区水文模型综述[J].工程勘察,2015,43(3):37-44.
[124]Kiraly,Morel L.Remarques sur l'hydrogramme des sources karstiques simulépar modèles mathématiques[J].Bulletin du Centre d'Hydrogéologie,1976(1):37-60.
[125]Hu B X.Examining a coupled continuum pipe-flow model for groundwater flow and solute transport in a karst aquifer[J].Acta carsologica,2010,39(2):347-358.
[126]Bauer S,Liedl R,Sauter M.Modeling of karst aquifer genesis:Influence of exchange flow[J].Water Resources Research,2003,39(10):371-375.
[127]Liedl R,Sauter M,Hückinghaus D,et al.Simulation of the development of karst aquifers using a coupled continuum pipe flow model[J].Water Resources Research,2003,39(3):597-676.
[128]Shoemaker W B,Kuniansky E L,Birk S,et al.Documentation of a conduit flow process(CFP)for MODFLOW-2005[M].Techniques& Methods,2008.
[129]Kuniansky E L,Halford K J,Shoemaker W B.Permeameter data verify new turbulence process for Modflow[J].Groundwater,2008,46(5):768-771.
[130]Shoemaker W B,Cunningham K J,Kuniansky E L,et al.Effects of turbulence on hydraulic heads and parameter sensitivities in preferential groundwater flow layers[J].Water Resources Research,2008,44(3):380-384.
[131]Hill M E,Stewart M T,Martin A.Evaluation of the MODFLOW 2005 Conduit Flow Process[J].Groundwater,2010,48(4):549-559.
[132]Gallegos J J.Modeling groundwater flow in karst aquifers:an evaluation of MODFLOW-CFP at the laboratory and sub-regional scales[D].Florida State University,2011.
[133]蒋宇静,李博,王刚,等.岩石裂隙渗流特性试验研究的新进展[J].岩石力学与工程学报,2009,27(12):2377-2386.
[134]杨剑明,张兆干,王祥,等.贵州普定后寨地下河流域地下含水空间结构特征[J].中国岩溶,1996(3):246-252.
[135]杨立铮.地下河流域岩溶水天然资源类型及评价方法[J].水文地质工程地质,1982(4):22-25.
[136]章宝华.流体力学[M].北京:北京大学出版社,2013.
[137]Qian J,Zhan H,Zhao W,et al.Experimental study of turbulent unconfined groundwater flow in a single fracture[J].Journal of Hydrology,2005,311(1):134-142.
[138]Kiraly L.Modelling karst aquifers by the combined discrete channel and continuum approach[J].Bulletin Dydroglogie,1998,16:77-98.
[139]White W B.Geomorphology and hydrology of karst terrains[M].Politics,1988.
[140]Ford D C,Ewers R O.The development of limestone cave systems in the dimensions of length and depth[J].Canadian Journal of Earth Sciences,1978,15(11):1783-1798.
[141]Civita M V.An improved method for delineating source protection zones for karst springs based on analysis of recession curve data[J].Hydrogeology Journal,2008,16(5):855-869.
[142]Kong-A-Siou L,Cros K,Johannet A,et al.Knox method,or Knowledge Extraction from neural network model.Case study on the Lez karst aquifer(southern France)[J].Journal of Hydrology,2013(507):19-32.
[143]Ghasemizadeh R,Hellweger F,Butscher C,et al.Review:Groundwater flow and transport modeling of karst aquifers,with particular reference to the North Coast Limestone aquifer system of puerto Rico[J].Hydrogeology Journal,2012,20(8):1441-1461.
[144]Gallegos J J,Hu B X,Davis H.Simulating flow in karst aquifers at laboratory and sub-regional scales using MODFLOW CFP.Hydrogeol[J].Hydrogeology Journal,2013,21(8):1749-1760.
[145]Criss R E,Winston W E.Hydrograph for small basins following intense storms[J].Geophysical Research Letters,2003,30(30):41-47.
[146]Liu L,Shu L,Chen X,et al.Rainfall-Driven Spring Hydrograph Modeling in a Karstic Water System,Southwestern China[J].Water Resources Management,2010,24(11):2689-2701.
[147]Juki'c D,Deni'c-Juki'c V.Groundwater balance estimation in karst by using a conceptual rainfall-runoff mode[J].Journal of Hydrology,2009,373(s3-4):302-315.
[148]Tritz S,Guinot V,Jourde H.Modelling the behaviour of a karst system catchment using nonlinear hysteretic conceptual model[J].Journal of Hydrology,2011,397(3):250-262.
[149]Kurtulus B,Razack M.Evaluation of the ability of and artificial neural network nodel to simulate the input-output responses of a large karstic aquifer:the La Rochefoucauld aquifer(Charente,France)[J].Hydrogeology Journal,2007,15(2):241-254.
[150]Siou L K A,Johannet A,Borrell V,et al.Complexity selection of a neural network model for karst flood forecasting:The case of the Lez Basin(southern France)[J].Journal of Hydrology,2011,403(s3-4):367-380.
[151]Padilla A,Pulido-Bosch A.Study of hydrographs of karstic aquifers by means of correlation and cross-spectral analysis[J].Journal of Hydrology,1995,168(s1-4)73-89.
[152]Labat D,Ababou R,Mangin A.Rainfall-runoff relations for karstic springs.PartⅡ:continuous wavelet and discrete orthogonal multiresolution analyses[J].Journal of Hydrology,2000,238(s3-4):149-178.
[153]Coppola E A,Rana A J,Poulton M M,et al.A neural network model for predicting aquifer water level elevations[J].Groundwater,2005,43(2):231-241.
[154]Feng S,Kang S,Huo Z,et al.Neural Networks to Simulate Regional Ground Water Levels Affected by Human Activities[J].Groundwater,2007,46(1):80-90.
[155]Lallahem S,Mania J,Hani A,et al.On the use of neural networks to evaluate groundwater levels in fractured media[J].Journal of Hydrology,2005,307(s1-4):92-111.
[156]Nayak P C,Rao Y R S,Sudheer K P.Groundwater Level Forecasting in a Shallow Aquifer Using Artificial Neural Network Approach[J].Water Resources Management,2006,20(1):77-90.
[157]Trichakis I C,Nikoloc I K,Karatzas G P.Optimal Selection of Artificial Neural Network Parameters for the Prediction of a Karstic Aquifer's Response[J].Hydrological Processes,2009,23(20):2956-2969.
[158]Trichakis I C,Nikolos I K,Karatzas G P.Artificial Neural Network(ANN)Based Modeling for Karstic Groundwater Level Simulation[J].Water Resources Management,2011,25(25):1143-1152.
[159]Campbell C W,Sullivan S M.Simulating time-varying cave flow and water levels using the Storm Water Management Mode[J].Engineering Geology,2002,65(s2-3):133-139.
[160]Peterson E W,Wicks C M.Assessing the importance of conduit grometry and physical parameters in karst systems using the storm water management model(SWMM)[J].Journal of Hydrology,2006,329(1):294-305.
[161]Fan Y,Huo X,Hao Y,et al.An assembled extreme value statistical model of karst spring discharge[J].Journal of Hydrology,2013,504(8):57-68.
[162]Pochon A,Tripet J P,Kozel R,et al.Groundwater protection in fractured media:A vulnerability-based approach for delineating protection zones in Switzerland[J].Hydrogeology Journal,2008,16(7):1267-1281.
[163]Katsanou K,Maramathas A,Lambrakis N.The use of hydrographs in the study of the water regime of the Louros watershed karst formations[M].Advances in the Research of Aquatic Environment,Springer,2011:493-501.