Numerical modeling of laser generated cavitation bubbles with the finite volume and volume of fluid method, using OpenFOAM

Computers & Fluids - Tập 126 - Trang 71-90 - 2016
Max Koch1, Christiane Lechner2, Fabian Reuter1, Karsten Köhler1, Robert Mettin1, Werner Lauterborn1
1Christian Doppler Laboratory for Cavitation and Micro-Erosion, Drittes Physikalisches Institut, Georg-August-Universität Göttingen, Friedrich-Hund-Platz 1, Göttingen 37077, Germany
2Institute of Fluid Mechanics and Heat Transfer, TU Wien, Getreidemarkt 9, Vienna 1060, Austria

Tóm tắt

Từ khóa


Tài liệu tham khảo

Akhatov, 2001, Collapse and rebound of a laser-induced cavitation bubble, Phys Fluids, 13, 2805, 10.1063/1.1401810

Berberović, 2009, Drop impact onto a liquid layer of finite thickness: dynamics of the cavity evolution, Phys Rev E, 79, 036306, 10.1103/PhysRevE.79.036306

Best, 1992, A numerical investigation of nonspherical rebounding bubbles, J Fluid Mech, 245, 137, 10.1017/S0022112092000387

Blake, 1986, Transient cavities near boundaries. I. Rigid boundary, J Fluid Mech, 170, 479, 10.1017/S0022112086000988

Blake, 1987, Transient cavities near boundaries. II. Free surface, J Fluid Mech, 181, 197, 10.1017/S0022112087002052

Brackbill, 1992, A continuum method for modeling surface tension, J Comput Phys, 100, 335, 10.1016/0021-9991(92)90240-Y

Brennen, 1995

Chahine, 2014, Modeling of cavitation dynamics and interaction with material, 123

Christian, 2012

Christian, 2012, Modeling laser-generated cavitation bubbles

Cole, 1948

Doihara, 2001, Numerical calculation of laser-produced bubble near a solid boundary until the second collapse, JSME Int J, 44, 238, 10.1299/jsmeb.44.238

Dreyer, 2012, Bubbles in liquids with phase transition. Part 1. On phase change of a single vapor bubble in liquid water, Continuum Mech Thermodyn, 24, 461, 10.1007/s00161-011-0225-6

Ferziger, 1997

Fujikawa, 1980, Effects of the non-equilibrium condensation of vapour on the pressure wave produced by the collapse of a bubble in a liquid, J Fluid Mech, 97, 481, 10.1017/S0022112080002662

Fuster, 2009, Numerical simulation of droplets, bubbles, and waves: state of the art, Fluid Dyn Res, 41, 065001, 10.1088/0169-5983/41/6/065001

Fuster, 2011, Liquid compressibility effects during the collapse of a single cavitating bubble, J Acoust Soc Am, 129, 122, 10.1121/1.3502464

Geers, 2012, Acoustic-wave effects in violent bubble collapse, J Appl Phys, 112, 054910, 10.1063/1.4748870

Geuzaine, 2009, Gmsh: A 3-D finite element mesh generator with built-in pre- and post-processing facilities, Int J Numer Methods Eng, 79, 1309, 10.1002/nme.2579

Gilmore, 1952

Han, 2015, Dynamics of laser-induced bubble pairs, J Fluid Mech, 771, 706, 10.1017/jfm.2015.183

Hegedűs, 2013, The effect of high viscosity on compressible and incompressible Rayleigh–Plesset-type bubble models, Int J Heat Fluid Flow, 42, 200, 10.1016/j.ijheatfluidflow.2013.04.004

Hickling, 1964, Collapse and rebound of a spherical bubble in water, Phys Fluids, 7, 7, 10.1063/1.1711058

Hilgenfeldt, 1996, Phase diagrams for sonoluminescing bubbles, Phys Fluids, 8, 2808, 10.1063/1.869131

Hirt, 1981, Volume of fluid (VOF) method for the dynamics of free boundaries, J Comput Phys, 39, 201, 10.1016/0021-9991(81)90145-5

Holzfuss, 2008, Surface-wave instabilities, period doubling, and an approximate universal boundary of bubble stability at the upper threshold of sonoluminescence, Phys Rev E, 77, 066309, 10.1103/PhysRevE.77.066309

Ishiyama, 2013, Nonequilibrium kinetic boundary condition at the vapor-liquid interface of argon, Phys Rev E – Stat Nonlinear Soft Matter Phys, 88, 042406, 10.1103/PhysRevE.88.042406

Ivan, 2015, High-order central ENO finite-volume scheme for hyperbolic conservation laws on three-dimensional cubed-sphere grids, J Comput Phys, 282, 157, 10.1016/j.jcp.2014.11.002

Jasak, 1996

Jinbo, 2015, Influence of the nonequilibrium phase transition on the collapse of inertia nonspherical bubbles in a compressible liquid, Exp Therm Fluid Sci, 60, 374, 10.1016/j.expthermflusci.2014.07.021

Johnsen, 2009, Numerical simulations of non-spherical bubble collapse, J Fluid Mech, 629, 231, 10.1017/S0022112009006351

Keller, 1980, Bubble oscillations of large amplitude, J Acoust Soc Am, 68, 628, 10.1121/1.384720

Kirkwood, 1942

Koch, 2014

Koch, 2011, Bubble dynamics in a standing sound field: the bubble habitat, J. Acoust Soc Am, 130, 3370, 10.1121/1.3626159

Koch, 2012, Time-resolved measurements of shock-induced cavitation bubbles in liquids, Appl Phys B, 108, 345, 10.1007/s00340-012-5070-1

Kröninger, 2008

Köhler, 2010

Lauer, 2012, Numerical modelling and investigation of symmetric and asymmetric cavitation bubble dynamics, Comput. Fluids, 69, 1, 10.1016/j.compfluid.2012.07.020

Lauterborn, 1974, Kavitation durch Laserlicht (Laser-induced cavitation), Acustica, 31, 51

Lauterborn, 1975, Experimental investigations of cavitation-bubble collapse in the neighbourhood of a solid boundary, J Fluid Mech, 72, 391, 10.1017/S0022112075003448

Lauterborn, 1994, Approaching bubble dynamics with lasers, holography and computers, 299

Lauterborn, 2010, Physics of bubble oscillations, Rep Prog Phys, 73, 106501, 10.1088/0034-4885/73/10/106501

Lauterborn, 2013, Shock wave emission by laser generated bubbles, vol. 8, 67

Lee, 2007, On the boundary integral method for the rebounding bubble, J Fluid Mech, 570, 407, 10.1017/S0022112006003296

Leighton, 1994

Li, 1967, Equations of state of water and sea water, J Geophys Res, 72, 2665, 10.1029/JZ072i010p02665

Lin, 2002, Rayleigh–Taylor instability of violently collapsing bubbles, Phys Fluids, 14, 2925, 10.1063/1.1490138

Lindau, 2003, Cinematographic observation of the collapse and rebound of a laser-produced cavitation bubble near a wall, J Fluid Mech, 479, 327, 10.1017/S0022112002003695

Löfstedt, 1993, Toward a hydrodynamic theory of sonoluminescence, Phys Fluids A, 5, 2911, 10.1063/1.858700

Marek, 2001, Analysis of the evaporation coefficient and the condensation coefficient of water, Int J Heat Mass Transf, 44, 29, 10.1016/S0017-9310(00)00086-7

Miller, 2013, A pressure-based, compressible, two-phase flow finite volume method for underwater explosions, Comput Fluids, 87, 132, 10.1016/j.compfluid.2013.04.002

Müller, 2009, Comparison and validation of compressible flow simulations of laser-induced cavitation bubbles, Comput Fluids, 38, 1850, 10.1016/j.compfluid.2009.04.004

Müller, 2010, Numerical simulation of a single bubble by compressible two-phase fluids, Int J Numer Methods in Fluids, 62, 591, 10.1002/fld.2033

Noltingk, 1950, Cavitation produced by ultrasonics, Proc Phys Soc B, 63, 674, 10.1088/0370-1301/63/9/305

Obreschkow, 2013, The quest for the most spherical bubble: Experimental setup and data overview, Exp Fluids, 54, 1, 10.1007/s00348-013-1503-9

Ochiai, 2011, Numerical analysis of nonspherical bubble collapse behavior and induced impulsive pressure during first and second collapses near the wall boundary, J Fluid Sci Technol, 6, 860, 10.1299/jfst.6.860

Ochiai, 2014, Numerical analysis of single bubble behavior in a megasonic field by non-spherical Eulerian simulation, ECS J Solid State Sci Technol, 3, N3112, 10.1149/2.020401jss

OpenFOAM-extend project communityOpenFOAM-extend project, download at http://sourceforge.net/projects/openfoam-extend/files/foam-extend-3.0/ (June 2014), http://www.extend-project.de/.

OpenFOAM foundationOpenFOAM – the open source CFD toolbox – user guide, version 2.1.1; 2012.

Philipp, 1998, Cavitation erosion by single laser-produced bubbles, J Fluid Mech, 361, 75, 10.1017/S0022112098008738

Plesset, 1954, On the stability of fluid flows with spherical symmetry, J Appl Phys, 25, 96, 10.1063/1.1721529

Plesset, 1971, Collapse of an initially spherical vapour cavity in the neighbourhood of a solid boundary, J Fluid Mech, 47, 283, 10.1017/S0022112071001058

Plesset, 1977, Bubble dynamics and cavitation, Annu Rev Fluid Mech, 9, 145, 10.1146/annurev.fl.09.010177.001045

Prosperetti, 1986, Bubble dynamics in a compressible liquid. Part 1. First-order theory, J Fluid Mech, 168, 457, 10.1017/S0022112086000460

Rattray, 1951

Rayleigh, 1917, On the pressure developed in a liquid during the collapse of a spherical cavity, Philos Mag Ser 6, 34, 94, 10.1080/14786440808635681

Ronchi, 1996, The ”cubed sphere”: a new method for the solution of partial differential equations in spherical geometry, J Comput Phys, 124, 93, 10.1006/jcph.1996.0047

Sankin, 2005, Shock wave interaction with laser-generated single bubbles, Phys Rev Lett, 95, 034501, 10.1103/PhysRevLett.95.034501

Sod, 1978, A survey of several finite difference methods for systems of nonlinear hyperbolic conservation laws, J Comput Phys, 1, 10.1016/0021-9991(78)90023-2

Strube, 1971, Numerische Untersuchungen zur Stabilität nichtsphärisch schwingender Blasen (Numerical investigations on the stability of bubbles oscillating non-spherically), Acustica, 25, 289

Tryggvason, 2001, A front-tracking method for the computations of multiphase flow, J Comput Phys, 169, 708, 10.1006/jcph.2001.6726

Vogel, 1996, Shock wave emission and cavitation bubble generation by picosecond and nanosecond optical breakdown in water, J Acoust Soc Am, 100, 148, 10.1121/1.415878

Vogel, 1988, Acoustic transient generation by laser-produced cavitation bubbles near solid boundaries, J Acoust Soc Am, 84, 719, 10.1121/1.396852

Wang, 2015, Numerical modeling of the 3D dynamics of ultrasound contrast agent microbubbles using the boundary integral method, Phys Fluids, 27, 022104, 10.1063/1.4908045

Wang, 2013, Non-spherical bubble dynamics of underwater explosions in a compressible fluid, Phys Fluids, 25, 072104, 10.1063/1.4812659

Wang, 2014, Multi-oscillations of a bubble in a compressible liquid near a rigid boundary, J Fluid Mech, 745, 509, 10.1017/jfm.2014.105

Wang, 2010, Non-spherical bubble dynamics in a compressible liquid. Part 1. Travelling acoustic wave, J Fluid Mech, 659, 191, 10.1017/S0022112010002430

Wang, 2011, Non-spherical bubble dynamics in a compressible liquid. Part 2. Acoustic standing wave, J Fluid Mech, 679, 559, 10.1017/jfm.2011.149

Weller, 2008

Wischnewski B. http://www.peacesoftware.de/einigewerte/wasser_dampf.html (Accessed December 2015).

Zein, 2013, On the modeling and simulation of a laser-induced cavitation bubble, Int J Numer Methods in Fluids, 73, 172, 10.1002/fld.3796

Zhang, 2001, 3D jet impact and toroidal bubbles, J Comput Phys, 166, 336, 10.1006/jcph.2000.6658