Adhesive particulate flow: The discrete-element method and its application in energy and environmental engineering
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Qiang Yao | Shuiqing Li | Jeffrey S. Marshall | J. Marshall | Q. Yao | Shuiqing Li | Guanqing Liu | Guanqing Liu
[1] Carlos I. Calle,et al. Calculating the trajectories of triboelectrically charged particles using Discrete Element Modeling (DEM) , 2008 .
[2] E. Cunningham. On the Velocity of Steady Fall of Spherical Particles through Fluid Medium , 1910 .
[3] A. Gómez-Barea,et al. Modeling of biomass gasification in fluidized bed , 2010 .
[4] Torsten Gröger,et al. Modelling and measuring of cohesion in wet granular materials , 2003 .
[5] Juan A. Gallego-Juárez,et al. Application of Acoustic Agglomeration to Reduce Fine Particle Emissions from Coal Combustion Plants , 1999 .
[6] O. Velev,et al. Dielectrophoretic Assembly of Electrically Functional Microwires from Nanoparticle Suspensions , 2001, Science.
[7] A. Jagota,et al. The Role of Viscoelastic Adhesive Contact in the Sintering of Polymeric Particles. , 2001, Journal of colloid and interface science.
[8] Yong-Won Jung,et al. A simulation study on the compression behavior of dust cakes , 2004 .
[9] Lev A. Ostrovsky,et al. The influence of Basset force on particle dynamics in two-dimensional flows , 1994 .
[10] Jin Young Choi,et al. A Brownian dynamics simulation method for analyzing particle behavior in nonuniform and alternating electric fields , 2007 .
[11] Jonathan Seville,et al. Processing of Particulate Solids , 1997 .
[12] A. Jagota,et al. Viscosities and Sintering Rates of Composite Packings of Spheres , 1995 .
[13] Victor Steinberg,et al. Continuous particle size separation and size sorting using ultrasound in a microchannel , 2006 .
[14] Witold Dzwinel,et al. A discrete-particle model of blood dynamics in capillary vessels. , 2003, Journal of colloid and interface science.
[15] Alexander G. G. M. Tielens,et al. Resistance to sliding on atomic scales in the adhesive contact of two elastic spheres , 1996 .
[16] R. Weber,et al. Effect of Fuel Type and Deposition Surface Temperature on the Growth and Structure of an Ash Deposit Collected during Co-firing of Coal with Sewage Sludge and Sawdust , 2009 .
[17] A. Pacek,et al. De-agglomeration of goethite nano-particles using ultrasonic comminution device , 2008 .
[18] Cell-cell, cell-substrate adhesion: theoretical and experimental considerations. , 1990, Journal of biomechanical engineering.
[19] Runyu Yang,et al. Characterization of interparticle forces in the packing of cohesive fine particles. , 2008, Physical review. E, Statistical, nonlinear, and soft matter physics.
[20] B. Bruno,et al. Particle removal by focused ultrasound , 1994 .
[21] Jean-Jacques Greffet,et al. Heat transfer between two nanoparticles through near field interaction. , 2005, Physical review letters.
[22] J. McLaughlin. Inertial migration of a small sphere in linear shear flows , 1991, Journal of Fluid Mechanics.
[23] G. Ristow. Pattern Formation in Granular Materials , 1999 .
[24] Kyoji Yamamoto,et al. Thermophoresis of a spherical particle in a rarefied gas of a transition regime , 1988 .
[25] Barton Dahneke,et al. Measurements of bouncing of small latex spheres , 1973 .
[26] Roland Clift,et al. MOTION OF PARTICLES IN TURBULENT GAS STREAMS , 1971 .
[27] N. Kotov,et al. On the origin of a permanent dipole moment in nanocrystals with a cubic crystal lattice: effects of truncation, stabilizers, and medium for CdS tetrahedral homologues. , 2006, The journal of physical chemistry. B.
[28] Jeffrey S. Marshall,et al. Particle aggregation and capture by walls in a particulate aerosol channel flow , 2007 .
[29] R. P. Donovan. Fabric Filtration for Combustion Sources , 2020 .
[30] Søren Knudsen Kær,et al. Use of numerical modeling in design for co-firing biomass in wall-fired burners , 2004 .
[31] Louis Vessot King,et al. On the Acoustic Radiation Pressure on Spheres , 1934 .
[32] A. A. Sickafoose,et al. Contact charging of lunar and Martian dust simulants , 2002 .
[33] J. Marshall,et al. Inviscid Incompressible Flow , 2001 .
[34] D. Torney,et al. The reaction-limited kinetics of membrane-to-surface adhesion and detachment , 1988, Proceedings of the Royal Society of London. Series B. Biological Sciences.
[35] K. Johnson,et al. Mechanics of adhesion , 1998 .
[36] D. Saville,et al. Particle capture on fibers in strong electric fields: I. Experimental studies of the effects of fiber charge, fiber configuration, and dendrite structure , 1985 .
[37] A. Robinson,et al. Pilot-Scale Investigation of the Influence of Coal−Biomass Cofiring on Ash Deposition , 2002 .
[38] Qiang Yao,et al. Studies on formation and control of combustion particulate matter in China: A review , 2009 .
[39] Shu-San Hsiau,et al. Mixing in vibrated granular beds with the effect of electrostatic force , 2005 .
[40] Katalin Bagi,et al. A definition of particle rolling in a granular assembly in terms of particle translations and rotations , 2004 .
[41] M. M. Nicolson,et al. The interaction between floating particles , 1949, Mathematical Proceedings of the Cambridge Philosophical Society.
[42] Hywel Morgan,et al. Dielectrophoretic separation of nano-particles , 1997 .
[43] Jean Cross,et al. Electrostatics, Principles, Problems and Applications , 1987 .
[44] G. A. D. Briggs,et al. The effect of tangential force on the contact of elastic solids in adhesion , 1977, Proceedings of the Royal Society of London. A. Mathematical and Physical Sciences.
[45] Hertz. On the Contact of Elastic Solids , 1882 .
[46] J. Roux,et al. Computer simulation of model cohesive powders: influence of assembling procedure and contact laws on low consolidation states. , 2007, Physical review. E, Statistical, nonlinear, and soft matter physics.
[47] Raymond M. Brach,et al. Experiments on the Low-Velocity Impact of Microspheres with Planar Surfaces , 1995 .
[48] M. Ashby,et al. A second report on sintering diagrams , 1981 .
[49] B. K Mishra,et al. A review of computer simulation of tumbling mills by the discrete element method , 2003 .
[50] Raymond D. Mindlin,et al. Compliance of elastic bodies in contact , 1949 .
[51] Joseph J. McCarthy,et al. Discrete characterization tools for cohesive granular material , 2001 .
[52] Chi Tien,et al. Dynamics of particle deposition in model fiber filters , 1982 .
[53] Cetin Cetinkaya,et al. Non-contact microsphere--surface adhesion measurement via acoustic base excitations. , 2005, Journal of colloid and interface science.
[54] Shuiqing Li,et al. Discrete element simulation of micro-particle deposition on a cylindrical fiber in an array , 2007 .
[55] Alexander L. Brown,et al. Soot in coal combustion systems , 1997 .
[56] C. Wen. Mechanics of Fluidization , 1966 .
[57] Bandaru V. Ramarao,et al. Calculation of single fiber efficiencies for interception and impaction with superposed brownian motion , 1994 .
[58] H. Van Dyke Parunak,et al. Agent-Based Modeling vs. Equation-Based Modeling: A Case Study and Users' Guide , 1998, MABS.
[59] Menachem Elimelech,et al. Particle Deposition and Aggregation: Measurement, Modelling and Simulation , 1995 .
[60] Yutaka Tsuji,et al. Lagrangian numerical simulation of plug flow of cohesionless particles in a horizontal pipe , 1992 .
[61] Gretar Tryggvason,et al. Computational Methods for Multiphase Flow: Frontmatter , 2007 .
[62] Y. Sone,et al. A similarity solution of the linearized Boltzmann equation with application to thermophoresis of a spherical particle , 1983 .
[63] Q. Yao,et al. Effects of Dipole Moment and Temperature on the Interaction Dynamics of Titania Nanoparticles during Agglomeration , 2010 .
[64] Gilles Flamant,et al. DEM-LES simulation of coal combustion in a bubbling fluidized bed Part II: coal combustion at the particle level , 2004 .
[65] Damien Garcia,et al. A Particle Dynamic Model of Red Blood Cell Aggregation Kinetics , 2009, Annals of Biomedical Engineering.
[66] J.A.M. Kuipers,et al. Gas-particle interactions in dense gas-fluidised beds , 2003 .
[67] Farzad Mashayek,et al. Analytical description of particle/droplet-laden turbulent flows , 2003 .
[68] I. Manas‐Zloczower,et al. Prediction of the dispersion of particle clusters in the nano-scale—Part I: Steady shearing responses , 2006 .
[69] I. E. M. Severens,et al. Discrete Element Method Simulations of Toner Behavior in the Development Nip of the Océ Direct Imaging Print Process , 2006 .
[70] M. L. Laucks,et al. Aerosol Technology Properties, Behavior, and Measurement of Airborne Particles , 2000 .
[71] D. Maugis. Adherence of elastomers: Fracture mechanics aspects , 1987 .
[72] W. Greason,et al. Investigation of a test methodology for triboelectrification , 1999, Electrical Overstress/Electrostatic Discharge Symposium Proceedings. 1999 (IEEE Cat. No.99TH8396).
[73] Qiang Yao,et al. Flow patterns of solids in a two-dimensional spouted bed with draft plates: PIV measurement and DEM simulations , 2008 .
[74] D. Maugis. Contact, Adhesion and Rupture of Elastic Solids , 2000 .
[75] Representation and calculation of photophoretic forces and torques , 1995 .
[76] Germany,et al. A discrete model for long time sintering , 2002, cond-mat/0211280.
[77] G. Christofori,et al. Cell adhesion in tumor invasion and metastasis: loss of the glue is not enough. , 2001, Biochimica et biophysica acta.
[78] Nerys E. Thomas,et al. Sub-micron particle manipulation in an ultrasonic standing wave: Applications in detection of clinically important biomolecules , 2000, Bioseparation.
[79] R. Adrian,et al. Flow past a sphere with an oscillation in the free-stream velocity and unsteady drag at finite Reynolds number , 1992, Journal of Fluid Mechanics.
[80] Scott M. Johnson,et al. Simulating the Effects of Interparticle Cohesion in Micron‐Scale Powders , 2009 .
[81] Colin Thornton,et al. Interparticle sliding in the presence of adhesion , 1991 .
[82] R. J. Lang,et al. Ultrasonic Atomization of Liquids , 1962 .
[83] Clayton T. Crowe,et al. Numerical models for two-phase turbulent flows , 1996 .
[84] J. Marshall,et al. Spin Coating of a Colloidal Suspension , 2006 .
[85] P. Debye,et al. Der Lichtdruck auf Kugeln von beliebigem Material , 2014 .
[86] Robert M. McMeeking,et al. A network model for initial stage sintering , 1998 .
[87] Peter S. Weitzman,et al. Discrete Element Modeling (DEM) of Triboelectrically Charged Particles: Revised Experiments , 2009 .
[88] H. Berthiaux,et al. A numerical model to identify the structure of a high-dilution powder mixture , 2002 .
[89] Anand Jagota,et al. Viscosities and sintering rates of a two-dimensional granular composite , 1993 .
[90] R. Adrian,et al. Unsteady drag on a sphere at finite Reynolds number with small fluctuations in the free-stream velocity , 1991, Journal of Fluid Mechanics.
[91] R. Behringer. Sands, Powders, and Grains: An Introduction to the Physics of Granular Materials , 1999 .
[92] W. Ding,et al. Rolling Resistance Moment-Based Adhesion Characterization of Microspheres , 2008 .
[93] S. Balachandar,et al. A locally implicit improvement of the equilibrium Eulerian method , 2003 .
[94] Roux,et al. Brownian dynamics and kinetic glass transition in colloidal suspensions. , 1991, Physical review. A, Atomic, molecular, and optical physics.
[95] X. Chateau,et al. Liquid Bridge between Two Moving Spheres: An Experimental Study of Viscosity Effects. , 2000, Journal of colloid and interface science.
[96] Carl Hägglund,et al. Nanoscience and nanotechnology for advanced energy systems , 2006 .
[97] Jonathan Seville,et al. Capillary Bridges between Two Spherical Bodies , 2000 .
[98] L. Douglas Smoot,et al. Coal Combustion and Gasification , 1985 .
[99] Berend Smit,et al. Phase behavior of monomeric mixtures and polymer solutions with soft interaction potentials , 2001 .
[100] Kefa Cen,et al. Experimental study of acoustic agglomeration of coal-fired fly ash particles at low frequencies , 2009 .
[101] S. S. Lokare. Mechanistic Investigation of Ash Deposition in Pulverized-Coal and Biomass Combustion , 2008 .
[102] Q. Yao,et al. On the applicability of different adhesion models in adhesive particulate flows , 2010 .
[103] M. Matthewson. Adhesion of spheres by thin liquid films , 1988 .
[104] J. Koelman,et al. Simulating microscopic hydrodynamic phenomena with dissipative particle dynamics , 1992 .
[105] Spahn,et al. Model for collisions in granular gases. , 1996, Physical review. E, Statistical physics, plasmas, fluids, and related interdisciplinary topics.
[106] Xiao-yan Li,et al. Modeling particle-size distribution dynamics in a flocculation system , 2003 .
[107] K. Danov,et al. Erythrocyte attachment to substrates: determination of membrane tension and adhesion energy , 2000 .
[108] Sanyal,et al. Brownian dynamics simulation of dense binary colloidal mixtures. I. Structural evolution and dynamics. , 1995, Physical review. E, Statistical physics, plasmas, fluids, and related interdisciplinary topics.
[109] H. Dwyer,et al. A sphere in shear flow at finite Reynolds number: effect of shear on particle lift, drag, and heat transfer , 1990, Journal of Fluid Mechanics.
[110] Junru Wu,et al. Dislodgement and removal of dust-particles from a surface by a technique combining acoustic standing wave and airflow. , 2010, The Journal of the Acoustical Society of America.
[111] J. Marshall,et al. Structural Analysis of Red Blood Cell Aggregates Under Shear Flow , 2010, Annals of Biomedical Engineering.
[112] E. James Davis,et al. The Airborne Microparticle: Its Physics, Chemistry, Optics, and Transport Phenomena , 2012 .
[113] Simon L. Goren,et al. Measurements of Kinetic Energy Loss for Particles Impacting Surfaces , 1990 .
[114] Hamid Arastoopour,et al. Extension of kinetic theory to cohesive particle flow , 2002 .
[115] L. Talbot. Thermophoresis - A review , 1981 .
[116] P. Richardson,et al. Effect of red blood cells on platelet aggregation , 2009, IEEE Engineering in Medicine and Biology Magazine.
[117] R. Schefer,et al. Thermophoresis of particles in a heated boundary layer , 1980, Journal of Fluid Mechanics.
[118] W. Shyy,et al. Computational modeling of cell adhesion and movement using a continuum-kinetics approach. , 2003, Biophysical journal.
[119] A. Warshel. Computer simulations of enzyme catalysis: methods, progress, and insights. , 2003, Annual review of biophysics and biomolecular structure.
[120] Keith Richards,et al. Discrete–element modelling: methods and applications in the environmental sciences , 2004, Philosophical Transactions of the Royal Society of London. Series A: Mathematical, Physical and Engineering Sciences.
[121] C. Zhu,et al. Kinetics and mechanics of cell adhesion. , 2000, Journal of biomechanics.
[122] José García de la Torre,et al. Brownian dynamics simulation of rigid particles of arbitrary shape in external fields. , 2002, Biophysical journal.
[123] Chi Tien,et al. Granular Filtration of Aerosols and Hydrosols , 2007 .
[124] J. Marshall,et al. Effect of particle collisions and aggregation on red blood cell passage through a bifurcation. , 2009, Microvascular research.
[125] S. Ergun. Fluid flow through packed columns , 1952 .
[126] van Aa Anton Steenhoven,et al. Influence of sintering on the growth rate of particulate fouling layers , 2007 .
[127] X. Chateau,et al. Rupture energy of a pendular liquid bridge , 2001 .
[128] L. N. Rogers,et al. The adhesion of particles undergoing an elastic-plastic impact with a surface , 1984 .
[129] H. Nirschl,et al. Distinguishing between aggregates and agglomerates of flame-made TiO2 by high-pressure dispersion , 2008 .
[130] Reifenberger,et al. Identification of electrostatic and van der Waals interaction forces between a micrometer-size sphere and a flat substrate. , 1996, Physical review. B, Condensed matter.
[131] R. Brach,et al. Three-Dimensional Modeling of Microsphere Contact/Impact with Smooth, Flat Surfaces , 2002 .
[132] Q. Song,et al. The progressive formation of submicron particulate matter in a quasi one-dimensional pulverized coal combustor , 2009 .
[133] Jürgen Tomas,et al. Fundamentals of cohesive powder consolidation and flow , 2004 .
[134] J. Israelachvili. Intermolecular and surface forces , 1985 .
[135] Petros Koumoutsakos,et al. Vortex Methods: Theory and Practice , 2000 .
[136] P. Español,et al. Statistical Mechanics of Dissipative Particle Dynamics. , 1995 .
[137] C. Zhu,et al. Measuring two-dimensional receptor-ligand binding kinetics by micropipette. , 1998, Biophysical journal.
[138] Alexander A. Doinikov,et al. Acoustic radiation force on a spherical particle in a viscous heat-conducting fluid. I. General formula , 1997 .
[139] B. Luan,et al. The breakdown of continuum models for mechanical contacts , 2005, Nature.
[140] C. Thornton,et al. A theoretical model for the stick/bounce behaviour of adhesive, elastic-plastic spheres , 1998 .
[141] F.W. Schmidlin,et al. A new nonlevitated mode of traveling wave toner transport , 1988, Conference Record of the 1988 IEEE Industry Applications Society Annual Meeting.
[142] S. I. Rubinow,et al. The transverse force on a spinning sphere moving in a viscous fluid , 1961, Journal of Fluid Mechanics.
[143] Icíar González Gómez,et al. Visualization of Hydrodynamic Particle Interactions: Validation of a Numerical Model , 2002 .
[144] Ryoichi Kurose,et al. Drag and lift forces on a rotating sphere in a linear shear flow , 1999, Journal of Fluid Mechanics.
[145] Erich Raask,et al. Mineral impurities in coal combustion : behavior, problems, and remedial measures , 1985 .
[146] C. Sheng,et al. Simulation of Acoustic Agglomeration Processes of Poly-Disperse Solid Particles , 2007 .
[147] S. Pratsinis,et al. Design of high-temperature, gas-phase synthesis of hard or soft TiO2 agglomerates , 2006 .
[148] Grenmarie Agresar,et al. A computational environment for the study of circulating cell mechanics and adhesion. , 1996 .
[149] Basil R. Marple,et al. Thermal Spray Coatings Engineered from Nanostructured Ceramic Agglomerated Powders for Structural, Thermal Barrier and Biomedical Applications: A Review , 2007 .
[150] H. Hertz. Ueber die Berührung fester elastischer Körper. , 1882 .
[151] S. Balachandar,et al. A fast Eulerian method for disperse two-phase flow , 2001 .
[152] A. Polycarpou,et al. Adhesive transition from noncontacting to contacting elastic spheres: extension of the Maugis-Dugdale model. , 2005, Journal of colloid and interface science.
[153] Ng Niels Deen,et al. Review of discrete particle modeling of fluidized beds , 2007 .
[154] R. Tiwary,et al. Hydrodynamic interaction of spherical aerosol particles in a high intensity acoustic field , 1986 .
[156] Hai Wang,et al. Synthesis of nano-phase TiO2 crystalline films over premixed stagnation flames , 2009 .
[157] J. Monaghan,et al. Extrapolating B splines for interpolation , 1985 .
[158] S. S. Kim,et al. Brownian dynamic simulation for the aggregation of charged particles , 2001 .
[159] T. Laurell,et al. Free flow acoustophoresis: microfluidic-based mode of particle and cell separation. , 2007, Analytical chemistry.
[160] Mihail C. Roco,et al. Particulate two-phase flow , 1993 .
[161] J. S. Marshall,et al. Discrete-element modeling of particulate aerosol flows , 2009, J. Comput. Phys..
[162] J. A. Greenwood,et al. Adhesion of elastic spheres , 1997, Proceedings of the Royal Society of London. Series A: Mathematical, Physical and Engineering Sciences.
[163] S. Balachandar,et al. Equilibrium expansion for the Eulerian velocity of small particles , 2002 .
[164] Jeffrey S. Marshall,et al. Effect of particle adhesion and interactions on motion by traveling waves on an electric curtain , 2010 .
[165] Anoop Gupta,et al. Load Balancing and Data locality in Adaptive Hierarchical N-Body Methods: Barnes-Hut, Fast Multipole, and Rasiosity , 1995, J. Parallel Distributed Comput..
[166] Kenneth T. Christensen,et al. Microstreaming Effects on Particle Concentration in an Ultrasonic Standing Wave , 2003 .
[167] Q. Yao,et al. A JKR-based dynamic model for the impact of micro-particle with a flat surface , 2011 .
[168] D. van den Ende,et al. Capillary forces between spherical particles floating at a liquid-liquid interface. , 2005, Langmuir : the ACS journal of surfaces and colloids.
[169] A. Kinloch. Adhesion and adhesives , 1987 .
[170] Q. Song,et al. Experimental investigation on the particle capture by a single fiber using microscopic image technique , 2006 .
[171] P. Král,et al. Dipole-dipole interactions in nanoparticle superlattices. , 2007, Nano letters.
[172] Bin Zhao,et al. Ultrafine anatase TiO2 nanoparticles produced in premixed ethylene stagnation flame at 1 atm , 2005 .
[173] Wolfgang Fritzsche,et al. Pearl chain formation of nanoparticles in microelectrode gaps by dielectrophoresis. , 2004, Langmuir : the ACS journal of surfaces and colloids.
[174] Robert L. Coble,et al. Initial Sintering of Alumina and Hematite , 1958 .
[175] J. Marshall,et al. Mesoscale Analysis of Blood Flow , 2010 .
[176] C. Dominik,et al. Resistance to rolling in the adhesive contact of two elastic spheres , 1995 .
[177] A. Doinikov. Acoustic radiation pressure on a rigid sphere in a viscous fluid , 1994, Proceedings of the Royal Society of London. Series A: Mathematical and Physical Sciences.
[178] T. Czech,et al. Modern electrostatic devices and methods for exhaust gas cleaning: A brief review , 2007 .
[179] J. Tersoff,et al. Modeling solid-state chemistry: Interatomic potentials for multicomponent systems. , 1989, Physical review. B, Condensed matter.
[180] Masayuki Horio,et al. Numerical simulation of cohesive powder behavior in a fluidized bed , 1998 .
[181] Luis Olmos,et al. Discrete element modeling of metallic powder sintering , 2006 .
[182] M. V. Beek. Gas-side fouling in heat-recovery boilers , 2001 .
[183] P. Cundall,et al. A discrete numerical model for granular assemblies , 1979 .
[184] P. Morse. Diatomic Molecules According to the Wave Mechanics. II. Vibrational Levels , 1929 .
[185] Runyu Yang,et al. Computer simulation of the packing of fine particles , 2000, Physical review. E, Statistical physics, plasmas, fluids, and related interdisciplinary topics.
[186] Stal' P Bakanov. Thermophoresis in Gases at Small Knudsen Numbers , 1991 .
[187] P. Biswas,et al. Nanostructured photoactive films synthesized by a flame aerosol reactor , 2007 .
[188] Chikao Kanaoka,et al. Stochastic simulation of the agglomerative deposition process of aerosol particles on an electret fiber , 2001 .
[189] John D Sherwood,et al. A review of the terms agglomerate and aggregate with a recommendation for nomenclature used in powder and particle characterization. , 2002, Journal of pharmaceutical sciences.
[190] J. Marshall,et al. Aggregate growth and breakup in particulate suspension flow through a micro-nozzle , 2010 .
[191] H. Rohatschek,et al. Semi-empirical model of photophoretic forces for the entire range of pressures , 1995 .
[192] Kyung-Sang Cho,et al. Designing PbSe nanowires and nanorings through oriented attachment of nanoparticles. , 2005, Journal of the American Chemical Society.
[193] G. I. Bell. Models for the specific adhesion of cells to cells. , 1978, Science.
[194] A. Polycarpou,et al. An elastic-plastic hybrid adhesion model for contacting rough surfaces in the presence of molecularly thin lubricant. , 2005, Journal of colloid and interface science.
[195] S. Balachandar,et al. Shear versus vortex-induced lift force on a rigid sphere at moderate Re , 2002, Journal of Fluid Mechanics.
[196] Louis D. Musinski,et al. Investigation of a Micro- and Nano-Particle In-Space Electrostatic Propulsion Concept. , 2009 .
[197] Chikao Kanaoka,et al. Convective diffusional deposition and collection efficiency of aerosol on a dust‐loaded fiber , 1983 .
[198] Daniel Coombs,et al. Equilibrium thermodynamics of cell-cell adhesion mediated by multiple ligand-receptor pairs. , 2004, Biophysical journal.
[199] M. S. Abd-Elhady,et al. Gas-Side Particulate Fouling in Biomass Gasifiers , 2010 .
[200] D. Ermak,et al. Brownian dynamics with hydrodynamic interactions , 1978 .
[201] J.A. Schwartz,et al. A three-dimensional dielectrophoretic particle focusing channel for microcytometry applications , 2005, Journal of Microelectromechanical Systems.
[202] M. Oda,et al. Rolling Resistance at Contacts in Simulation of Shear Band Development by DEM , 1998 .
[203] K. Kendall,et al. Surface energy and the contact of elastic solids , 1971, Proceedings of the Royal Society of London. A. Mathematical and Physical Sciences.
[204] P. Saffman. The lift on a small sphere in a slow shear flow , 1965, Journal of Fluid Mechanics.
[205] Wojciech Strojny,et al. Stiffness of normal and pathological erythrocytes studied by means of atomic force microscopy. , 2006, Journal of biochemical and biophysical methods.
[206] Quelques résultats nouveaux concernant les forces exercées sur une inclusion sphérique par un écoulement accéléré , 1991 .
[207] R. D. Felice,et al. The voidage function for fluid-particle interaction systems , 1994 .
[208] Witold Dzwinel,et al. Mesoscopic dispersion of colloidal agglomerate in a complex fluid modelled by a hybrid fluid-particle model. , 2002, Journal of colloid and interface science.
[209] SIMULATED LAND-BASED TURBINE DEPOSITS GENERATED IN AN ACCELERATED DEPOSITION FACILITY , 2005 .
[210] R. Mei. An approximate expression for the shear lift force on a spherical particle at finite reynolds number , 1992 .
[211] P. B. Warren,et al. DISSIPATIVE PARTICLE DYNAMICS : BRIDGING THE GAP BETWEEN ATOMISTIC AND MESOSCOPIC SIMULATION , 1997 .
[212] Q. Yao,et al. Discrete‐element method for particle capture by a body in an electrostatic field , 2010 .
[213] Barton Dahneke,et al. Further measurements of the bouncing of small latex spheres , 1975 .
[214] F. Bertrand,et al. DEM-based models for the mixing of granular materials , 2005 .
[215] P. T. Cummings,et al. Brownian dynamics simulation of bead-spring chain models for dilute polymer solutions in elongational flow , 1995 .
[216] R. German. Sintering theory and practice , 1996 .
[217] J. Katz,et al. Drag and lift forces on microscopic bubbles entrained by a vortex , 1995 .
[218] J. Tyndall. Dust and Disease , 1870, Nature.
[219] Runyu Yang,et al. Discrete particle simulation of particulate systems: A review of major applications and findings , 2008 .
[220] Runyu Yang,et al. Role of interparticle forces in the formation of random loose packing. , 2006, Physical review letters.
[221] E Riera-Franco de Sarabia,et al. Investigation of the influence of humidity on the ultrasonic agglomeration of submicron particles in diesel exhausts. , 2003, Ultrasonics.
[222] Johannes M. Nitsche,et al. Break-up of a falling drop containing dispersed particles , 1997, Journal of Fluid Mechanics.
[223] Robert M. McMeeking,et al. Deformation of Interparticle Necks by Diffusion-Controlled Creep , 2005 .
[224] Pratim Biswas,et al. A Brownian Dynamics Simulation to Predict Morphology of Nanoparticle Deposits in the Presence of Interparticle Interactions , 2004 .
[225] Albert S Kim,et al. Brownian Dynamics, Molecular Dynamics, and Monte Carlo modeling of colloidal systems. , 2004, Advances in colloid and interface science.
[226] G. Koopmann,et al. VISUALIZATION OF ACOUSTIC PARTICLE INTERACTION AND AGGLOMERATION : THEORY EVALUATION , 1997 .
[227] Q. Yao,et al. Synthesis of TiO2 nanoparticles by premixed stagnation swirl flames , 2011 .
[228] Mironov,et al. Mean force on a small sphere in a sound field in a viscous fluid , 2000, The Journal of the Acoustical Society of America.
[229] C. Wang,et al. Electrostatic forces in fibrous filters—a review , 2001 .
[230] J. Happel,et al. Low Reynolds number hydrodynamics: with special applications to particulate media , 1973 .
[231] M Jekel,et al. Observation of yeast cell movement and aggregation in a small-scale MHz-ultrasonic standing wave field , 2000, Bioseparation.
[232] T. Cameron,et al. The effects of orthokinetic collision, acoustic wake, and gravity on acoustic agglomeration of polydisperse aerosols , 2006 .
[233] Ko Higashitani,et al. Simulation of deformation and breakup of large aggregates in flows of viscous fluids , 2001 .
[234] M. D. Murthy Peri,et al. Rolling resistance moment of microspheres on surfaces , 2005 .
[235] Bryan J. Ennis,et al. The influence of viscosity on the strength of an axially strained pendular liquid bridge , 1990 .
[236] Robert H. Davis,et al. The influence of surface interactions on the elastohydrodynamic collision of two spheres , 1986 .
[237] B. V. Derjaguin,et al. Effect of contact deformations on the adhesion of particles , 1975 .
[238] Bruce Caswell,et al. Dissipative particle dynamics simulations of polymer chains: scaling laws and shearing response compared to DNA experiments. , 2005, Physical review letters.
[239] T. Schwager,et al. Computational Granular Dynamics: Models and Algorithms , 2005 .
[240] D. Torney,et al. Thermodynamics of cell adhesion. II. Freely mobile repellers. , 1986, Biophysical journal.
[241] Brahmeshwar Mishra,et al. A review of computer simulation of tumbling mills by the discrete element method: Part I—contact mechanics , 2003 .
[242] D. Tabor. Surface Forces and Surface Interactions , 1977 .
[243] R. S. Bradley,et al. LXXIX. The cohesive force between solid surfaces and the surface energy of solids , 1932 .
[244] Lee R. White,et al. The interaction of colloidal particles collected at fluid interfaces , 1981 .
[245] Carlos I. Calle,et al. Particle removal by electrostatic and dielectrophoretic forces for dust control during lunar exploration missions , 2009 .
[246] K. Sung,et al. Theoretical and experimental studies on cross-bridge migration during cell disaggregation. , 1989, Biophysical journal.
[247] J. Riley,et al. Equation of motion for a small rigid sphere in a nonuniform flow , 1983 .
[248] D. Quesnel,et al. Electrophotography as a Means of Nanofabrication: The Role of Electrodynamic and Electrostatic Forces , 2005, NIP & Digital Fabrication Conference.
[249] J. Visser,et al. Van der Waals and other cohesive forces affecting powder fluidization , 1989 .
[250] Roberto Zenit,et al. Particle–wall collisions in a viscous fluid , 2001, Journal of Fluid Mechanics.
[251] Sotiris E. Pratsinis,et al. Flame aerosol synthesis of ceramic powders , 1998 .
[252] S. Luding. Cohesive, frictional powders: contact models for tension , 2008 .
[253] Q. Yao,et al. Effect of Co-firing Straw with Two Coals on the Ash Deposition Behavior in a Down-Fired Pulverized Coal Combustor† , 2010 .
[254] Colin Thornton,et al. Impact of elastic spheres with and without adhesion , 1991 .
[255] Johnson,et al. An Adhesion Map for the Contact of Elastic Spheres , 1997, Journal of colloid and interface science.
[256] M. Adams,et al. Discrete particle-continuum fluid modelling of gas–solid fluidised beds , 2002 .
[257] C. Zhu,et al. Modeling concurrent binding of multiple molecular species in cell adhesion. , 2000, Biophysical journal.
[258] S. Loyalka. Thermophoretic force on a single particle. I : Numerical solution of the linearized Boltzmann equation , 1992 .
[259] N. Filipovic,et al. Modelling thrombosis using dissipative particle dynamics method , 2008, Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences.
[260] Chu-Wan Hong,et al. New Concept for Simulating Particle Packing in Colloidal Forming Processes , 2005 .
[261] Tatsushi Matsuyama,et al. Electrostatic field and force calculation for a chain of identical dielectric spheres aligned parallel to uniformly applied electric field , 2002 .
[262] Peter Greil,et al. Discrete element modeling of solid formation during electrophoretic deposition , 2004 .
[263] Anthony W Smith,et al. Biofilms and antibiotic therapy: is there a role for combating bacterial resistance by the use of novel drug delivery systems? , 2005, Advanced drug delivery reviews.
[264] Robert A. Millikan. The General Law of Fall of a Small Spherical Body through a Gas, and its Bearing upon the Nature of Molecular Reflection from Surfaces , 1980 .
[265] David Y. H. Pui,et al. Thermophoretic effect of particle deposition on a free standing semiconductor wafer in a clean room , 1991 .
[266] Colin Thornton,et al. A Theoretical Study of the Liquid Bridge Forces between Two Rigid Spherical Bodies , 1993 .
[267] Christopher E. Wilmer,et al. Nanoscale forces and their uses in self-assembly. , 2009, Small.
[268] Otis R. Walton,et al. Review of Adhesion Fundamentals for Micron-Scale Particles , 2008 .
[269] J. Marshall,et al. Blood cell transport and aggregation using discrete ellipsoidal particles , 2009 .
[270] Alexander G. G. M. Tielens,et al. The Physics of Dust Coagulation and the Structure of Dust Aggregates in Space , 1997 .
[271] R. Kurose,et al. Numerical Simulations of Pulverized Coal Combustion , 2009 .
[272] Thomas B. Jones,et al. Electromechanics of Particles , 1995 .
[273] E. J. Hinch,et al. The elastohydrodynamic collision of two spheres , 1986, Journal of Fluid Mechanics.
[274] Guillermo Rus,et al. Nanotechnology for sustainable energy , 2009 .
[275] J. Marshall,et al. DEM simulation of the particle dynamics in two-dimensional spouted beds , 2008 .
[276] A Rojnuckarin,et al. Brownian dynamics simulations of protein folding: access to milliseconds time scale and beyond. , 1998, Proceedings of the National Academy of Sciences of the United States of America.
[277] P Bongrand,et al. Cell adhesion. Competition between nonspecific repulsion and specific bonding. , 1984, Biophysical journal.
[278] S. Balachandar,et al. Effect of free rotation on the motion of a solid sphere in linear shear flow at moderate Re , 2002 .
[279] K. Sastry,et al. Pendular bond strength between unequal-sized spherical particles , 1980 .
[280] M. Sommerfeld,et al. Multiphase Flows with Droplets and Particles , 2011 .