[1] MARK D,HAEBERLE S,ROTH G,et al.Microfluidic lab-on-a-chip platforms:requirements,characteristics and applications[J].Chemical Society Reviews,2010,39(3):1153-1182. [2] YAGER P,EDWARDS T,et al.Microfluidic diagnostic technologies for global public health[J].Nature,2006,442(7101):412-418. [3] SONG H,BRINGER M R,TICE J D,et al.Experimental test of scaling of mixing by chaotic advection in droplets moving through microfluidic channels[J].Applied Physics Letters,2003,83(22):4664-4666. [4] KNIGHT J B,VISHWANATH A,BRODY J P,et al. Hydrodynamic focusing on a silicon chip:mixing nanoliters in microseconds[J].Physical Review Letters,1998,80(17):3863-3866. [5] SONG H,CHEN D L,ISMAGILOV R F,Reactions in droplets in microfluidic channels[J].Angewandte Chemie-International Edition,2006,45(44):7336-7356. [6] 吴梁玉.双乳液的制备及其流体动理学行为研究[D].南京:东南大学,2016. [7] 褚良银,汪伟,巨晓洁,等.微流控法构建微尺度相界面及制备新型功能材料研究进展[J].化工进展,2014,33(9):2229-2234. [8] SONG Y X,XU J L,YANG Y P,Stokes flow past a compound drop in a circular tube[J]. Physics of Fluids, 2010,22(7):072003. [9] CHEN H S,ZHAO Y J,LI J,et al.Reactions in double emulsions by flow-controlled coalescence of encapsulated drops[J].Lab on a Chip,2011,11(14):2312-2315 [10] WHITESIDES G M.The origins and the future of microfluidics[J].Nature,2006,442(7101):368-373. [11] CRISTINI V,TAN Y C.Theory and numerical simulation of droplet dynamics in complex flows-a review[J].Lab on a Chip,2004,4(4):257-264. [12] 吴文果,黄晓楠,王士斌,等.乳化法制备海藻酸钙/聚组氨酸微胶囊[J]. 化工进展,2009,28(4):673-677. [13] BEDRAM A,MOOSAVI A.Droplet breakup in an asymmetric microfluidic T junction[J].European Physical Journal E,2011,34(8):78. [14] STONE H A,LEAL L G.Breakup of concentric double emulsion droplets in linear flows[J].Journal of Fluid Mechanics,1990:123-156. [15] GUIDO S,SIMEONE M.Binary collision of drops in simple shear flow by computer-assisted video optical microscopy[J]. Journal of Fluid Mechanics,1998,357(357):1-20. [16] EDRIS A E,BERGNSTAHL B.Encapsulation of orange oil in a spray dried double emulsion.[J].Nahrung-food,2001,45(2):133-137. [17] ZHANG J,LIU Q,YANG B,et al.Facile fabrication of double-shelled hollow microspheres via double in situ miniemulsion polymerization[J].Polymer Chemistry,2012,3(10):2720-2722. [18] MARTINEZPALOU R,MOSQUEIRA M,ZAPATARENDON B,et al.Transportation of heavy and extra-heavy crude oil by pipeline:a review[J].Journal of Petroleum Science and Engineering,2011,75(3):274-282. [19] EASTBURN D J,SCIAMBI A,ABATE A R,et al. Ultrahigh-throughput Mammalian single-cell reverse-transcriptase polymerase chain reaction in microfluidic drops[J].Analytical Chemistry,2013,85(16):8016-8021. [20] 车得福,李会雄.多相流及其应用[M].西安:西安交通大学出版社,2007. [21] CRISTINI V,TAN Y.Theory and numerical simulation of droplet dynamics in complex flows-a review[J].Lab on a Chip,2004,4(4):257-264. [22] KARBALAEI A,KUMAR R,CHO H J,et al. Thermo-capillarity in microfluidics-a review[J]. Micromachines,2016,7(1):13. [23] SCANNAPIECO C,WADEPUHL M,PARRY O H,et al.The Aquila comparison project:the effects of feedback and numerical methods on simulations of galaxy formation[J].Monthly Notices of the Royal Astronomical Society,2012,423(2):1726-1749. [24] WARNICK K F,CHEW W C.Numerical simulation methods for rough surface scattering[J].Waves in Random Media,2001,11(1):R1-R30. [25] 陶文铨.计算热力学的近代进展[M].北京:科学出版社,2001. [26] 鲁钟琪.两相流与沸腾传热[M].北京:清华大学出版社,2002. [27] 周力行.湍流两相流动与燃烧的数值模拟[M].北京:清华大学出版社,2002. [28] LEBAIGUE O D,JAMET D,DUQUENNOY C,et al. Review of existing methods for direct numerical simulation of liquid-vapor two-phase flows[C]//Proceedings of 6th International Conference on Nuclear Engineering, San Diego,USA,1998:ICONE6-6348 [29] 郭照立,郑楚光,李青,等.流体动力学的格子Boltzamnn方法[M].武汉:湖北科学技术出版社,2002. [30] GUEYFFIER D,LI J,NADIM A,et al.Volume-of-fluid interface tracking with smoothed surface stress methods for three-dimensional flows[J].Journal of Computational Physics,1999,152(2):423-456. [31] CHEN Y,WU L,ZHANG C,et al.Emulsion droplet formation in coflowing liquid streams[J].Physical Review E,2013,87(1):013002. [32] TEZDUYAR T E.Interface-tracking and interface-capturing techniques for finite element computation of moving boundaries and interfaces[J]. Computer Methods in Applied Mechanics and Engineering,2006,195(23):2983-3000. [33] SHAPIRO E,DRIKAKIS D,GARGIULI J,et al.Interface capturing in dual-flow microfluidics[J]. Journal of Computational and Theoretical Nanoscience 2007,4:802-806. [34] HOU T Y,LOWENGRUB J,SHELLEY M J,et al. Boundary integral methods for multicomponent fluids and multiphase materials[J].Journal of Computational Physics,2001,169(2):302-362. [35] HAWKES P W,KASPER E.12-the finite-element method(FEM)[M]//HAWKES P W,KASPER E.Principles of electron optics.San Diego:Academic Press; 1996:175-187. [36] YOUNGREN G K,ACRIVOS A.Stokes flow past a particle of arbitrary shape:a numerical method of solution[J]. Journal of Fluid Mechanics,1975,69(2):377-403. [37] WANG J,LIU J,HAN J,et al.Rheology investigation of the globule of multiple emulsions with complex internal structures through a boundary element method[J].Chemical Engineering Science,2013,96:87-97. [38] WILKES E D,PHILLIPS S,BASARAN O A,et al. Compu-tational and experimental analysis of dynamics of drop formation[J].Physics of Fluids,1999,11(12):3577-3598. [39] HRENNIKOFF A.Solution of problems of elasticity by the framework method[J].Journal of Applied Mechanics,1941,8(4):169-175. [40] COURANT R.Variational methods for the solution of problems of equilibrium and vibrations[J].Bulletin of the American Mathematical Society,1943,49:1-23. [41] ZIENKIEWICZ O C.TAYLOR R L,ZHU J Z.The finite element method:its basis and fundamentals[M] 7th ed.Oxford:Butterworth-Heinemann,2013:641-645. [42] ZHOU C F,YUE P T,FENG J J.Formation of simple and compound drops in microfluidic devices[J].Physics of Fluids,2006,18(9):092105. [43] NOTZ P K,CHEN A U,BASARAN O A,et al.Satellite drops:Unexpected dynamics and change of scaling during pinch-off[J].Physics of Fluids,2001,13(3):549-552. [44] PESKIN C S.Flow patterns around heart valves:A numerical method[J].Journal of Computational Physics,1972,10(2):252-271. [45] MITTAL R.,IACCARINO G.Immersed boundary methods[J].Annual Review of Fluid Mechanics,2005,37:239-261 [46] HUA H,SHIN J,KIM J,et al.Dynamics of a compound droplet in shear flow[J].International Journal of Heat and Fluid Flow,2014,50:63-71. [47] CHRISPELL J C,CORTEZ R,KHISMATULLIN D B,et al.Shape oscillations of a droplet in an Oldroyd-B fluid[J]. Physica D:Nonlinear Phenomena,2011,240(20):1593-1601. [48] SETHIAN J A,SMEREKA P.Level set methods for fluid interfaces[J].Annual Review of Fluid Mechanics,2003,35:341-372. [49] TRYGGVASON G,BUNNER B,ESMAEELI A,et al.A front-tracking method for the computations of multiphase flow[J].Journal of Computational Physics,2001,169(2):708-759. [50] HIRT C W,NICHOLS B D.Volume of Transfer Fluid(VOF)Method for the dynamics of free boundaries[J]. Journal of Computational Physics,1981,39:201-225. [51] HERRADA M A,MONTANERO J M,FERRERA C,et al.Analysis of the dripping-jetting transition in compound capillary jets[J].Journal of Fluid Mechanics,2010,649:523-536. [52] CHEN Y,WU L,ZHANG L,et al.Dynamic behaviors of double emulsion formation in a flow-focusing device[J]. International Journal of Heat and Mass Transfer,2015,82:42-50. [53] UTADA A S,LORENCEAU E,LINK D R,et al. Mono-disperse double emulsions generated from a microcapillary device[J].Science,2005,308(5721):537-541. [54] OSHER S,SETHIAN J A.Fronts propagating with curvature-dependent speed:algorithms based on Hamilton-Jacobi formulations[J].Journal of Computational Physics,1988,79(1):12-49. [55] SMITH K A,OTTINO J M.Encapsulated drop breakup in shear flow[J].Physical Review Letters,2004,93(20):204501. [56] LAN W,LI S,LUO G,et al.Numerical and experimental investigation of dripping and jetting flow in a coaxial micro-channel[J].Chemical Engineering Science,2015,134:76-85. [57] VU T V,HOMMA S,TRYGGVASON G,et al. Compu-tations of breakup modes in laminar compound liquid jets in a coflowing fluid[J].International Journal of Multiphase Flow,2013,49:58-69. [58] NIE Z,XU S,SEO M,et al.Polymer particles with various shapes and morphologies produced in continuous microfluidic reactors[J].Journal of the American Chemical Society,2005,127(22):8058-8063. [59] HOMMA S,MORIGUCHI K,KIM T,et al. Compu-tations of compound droplet formation from a co-axial dual nozzle by a three-fluid front-tracking method[J].Journal of Chemical Engineering of Japan,2014,47(2):195-200. [60] Krüger T,Frijters S,Günther F,et al.Mesoscale simulations of fluid-fluid interfaces[J].High Performance Computing in Science and Engineering,2015,10:545-558. [61] VAN DER ZWAN E,DER SMAN R V,SCHROEN K,et al.Lattice Boltzmann simulations of droplet formation during microchannel emulsification[J].Journal of Colloid and Interface Science,2009,335(1):112-122. [62] FU Y,ZHAO S,BAI L,et al.Numerical study of double emulsion formation in microchannels by a ternary Lattice Boltzmann method[J].Chemical Engineering Science,2016,146:126-134. |