Publication Cover
Numerical Heat Transfer, Part B: Fundamentals
An International Journal of Computation and Methodology
Volume 41, 2002 - Issue 3-4
740
Views
87
CrossRef citations to date
0
Altmetric
Original Articles

VOLUME-OF-FLUID CALCULATION OF HEAT OR MASS TRANSFER ACROSS DEFORMING INTERFACES IN TWO-FLUID FLOW

Pages 291-308 | Published online: 30 Nov 2010

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (10)

Jeffrey Yanke, Kyle Fezi, RodneyW. Trice & MatthewJohn M. Krane. (2015) Simulation of Slag-Skin Formation in Electroslag Remelting Using a Volume-of-Fluid Method. Numerical Heat Transfer, Part A: Applications 67:3, pages 268-292.
Read now
Yeng-Yung Tsui, Shi-Wen Lin & Kuen-Je Ding. (2014) Modeling of Heat Transfer Across the Interface in Two-Fluid Flows. Numerical Heat Transfer, Part B: Fundamentals 66:2, pages 162-180.
Read now
Meng Huang, Lilong Wu & Bin Chen. (2012) A Piecewise Linear Interface-Capturing Volume-of-Fluid Method Based on Unstructured Grids. Numerical Heat Transfer, Part B: Fundamentals 61:5, pages 412-437.
Read now
Tien-Mo Shih, Chandrasekhar Thamire, Chao-Ho Sung & An-Lu Ren. (2010) Literature Survey of Numerical Heat Transfer (2000–2009): Part I. Numerical Heat Transfer, Part A: Applications 57:3-4, pages 159-296.
Read now
R. Banerjee. (2007) A Numerical Study of Combined Heat and Mass Transfer in an Inclined Channel Using the VOF Multiphase Model. Numerical Heat Transfer, Part A: Applications 52:2, pages 163-183.
Read now
Y. F. Yap, J. C. Chai, T. N. Wong, K. C. Toh & H. Y. Zhang. (2006) A Global Mass Correction Scheme for the Level-Set Method. Numerical Heat Transfer, Part B: Fundamentals 50:5, pages 455-472.
Read now
Y. F. Yap, J. C. Chai, K. C. Toh & T. N. Wong. (2006) Modeling the Flows of Two Immiscible Fluids in a Three-Dimensional Square Channel Using the Level-Set Method. Numerical Heat Transfer, Part A: Applications 49:9, pages 893-904.
Read now
R. Banerjee & K. M. Isaac. (2006) A Study to Determine Vapor Generation from the Surface of Gasoline Flowing in an Inclined Channel Using a Continuous Thermodynamics Approach. Numerical Heat Transfer, Part A: Applications 50:8, pages 705-729.
Read now
Vala Mehdi-Nejad, Javad Mostaghimi & Sanjeev Chandra. (2005) Modeling interfacial heat transfer from single or multiple deforming droplets. International Journal of Computational Fluid Dynamics 19:2, pages 105-113.
Read now
Huanxin Lai, Hongbo Zhang & Yuying Yan. (2004) NUMERICAL STUDY OF HEAT AND MASS TRANSFER IN RISING INERT BUBBLES USING A CONJUGATE FLOW MODEL. Numerical Heat Transfer, Part A: Applications 46:1, pages 79-98.
Read now

Articles from other publishers (77)

Suhas S. Jain & Ali Mani. (2023) A computational model for transport of immiscible scalars in two-phase flows. Journal of Computational Physics 476, pages 111843.
Crossref
Palas Kumar Farsoiya, Quentin Magdelaine, Arnaud Antkowiak, Stéphane Popinet & Luc Deike. (2023) Direct numerical simulations of bubble-mediated gas transfer and dissolution in quiescent and turbulent flows. Journal of Fluid Mechanics 954.
Crossref
Xin Sha, Li Chen, Xiaofei Zhu, Sen Wang, Qihong Feng & Wen-Quan Tao. (2022) Pore-scale study of three-phase reactive transport processes in porous media. Physics of Fluids 34:12.
Crossref
Shahab Mirjalili, Suhas S. Jain & Ali Mani. (2022) A computational model for interfacial heat and mass transfer in two-phase flows using a phase field method. International Journal of Heat and Mass Transfer 197, pages 123326.
Crossref
Kota Fujiwara, Kohei Yoshida, Akiko Kaneko & Yutaka Abe. (2022) Experimental and numerical investigations of aerosol transportation phenomena from single bubbles. International Journal of Heat and Mass Transfer 195, pages 123160.
Crossref
Yuzhe Qin, Huaxiong Huang, Yi Zhu, Chun Liu & Shixin Xu. (2022) A phase field model for mass transport with semi-permeable interfaces. Journal of Computational Physics 464, pages 111334.
Crossref
Shuai Zhai, Sheng Chen & Guoqiang Wu. (2022) Simulation of conjugate mass transfer in multiphase flow: A new unified approach based on the phase field method. International Communications in Heat and Mass Transfer 133, pages 105965.
Crossref
Kota FUJIWARA & Akiko KANEKO. (2022) Visualization of Particle Mass Transfer from Bubble Interface干渉計を用いた気泡界面における微粒子の物質輸送現象の可視化. Journal of the Visualization Society of Japan 42:163, pages 11-14.
Crossref
Néstor Balcázar-Arciniega, Joaquim Rigola & Assensi Oliva. 2022. Computational Science – ICCS 2022. Computational Science – ICCS 2022 284 296 .
Palas Kumar Farsoiya, Stéphane Popinet & Luc Deike. (2021) Bubble-mediated transfer of dilute gas in turbulence. Journal of Fluid Mechanics 920.
Crossref
Michael SchlüterSonja Herres-PawlisUlrich NiekenUte TuttliesDieter Bothe. (2021) Small-Scale Phenomena in Reactive Bubbly Flows: Experiments, Numerical Modeling, and Applications. Annual Review of Chemical and Biomolecular Engineering 12:1, pages 625-643.
Crossref
A. Panda, H.V. Patel, E.A.J.F. Peters, M.W. Baltussen & J.A.M. Kuipers. (2020) A multiple resolution approach using adaptive grids for fully resolved boundary layers on deformable gas-liquid interfaces at high Schmidt numbers. Chemical Engineering Science 227, pages 115900.
Crossref
Ashish Pathak & Mehdi Raessi. (2020) An implicit, sharp numerical treatment of viscous terms at arbitrarily shaped liquid-gas interfaces in evaporative flows. Journal of Computational Physics 418, pages 109625.
Crossref
Jonathan Reutzsch, Corine Kieffer-Roth & Bernhard Weigand. (2020) A consistent method for direct numerical simulation of droplet evaporation. Journal of Computational Physics 413, pages 109455.
Crossref
Claire M. Y. Claassen, Shafiul Islam, E. A. J. F. (Frank) Peters, Niels G. Deen, J. A. M. (Hans) Kuipers & Maike W. Baltussen. (2019) An improved subgrid scale model for front‐tracking based simulations of mass transfer from bubbles. AIChE Journal 66:4.
Crossref
E. Karimi-Sibaki, A. Kharicha, A. Vakhrushev, M. Wu, A. Ludwig & J. Bohacek. (2020) A volume of fluid (VOF) method to model shape change during electrodeposition. Electrochemistry Communications 112, pages 106675.
Crossref
Meisam Adibifard, Ali Nabizadeh & Mohammad Sharifi. (2020) Computational Fluid Dynamics to develop novel correlations for residual saturation of the displaced fluid in a capillary tube. Journal of Molecular Liquids 299, pages 112122.
Crossref
L. Yang, E.A.J.F. Peters, L. Fries, Y.M. Harshe, J.A.M. Kuipers & M.W. Baltussen. (2020) Direct numerical simulation of mass transfer and mixing in complex two-phase systems using a coupled volume of fluid and immersed boundary method. Chemical Engineering Science: X 5, pages 100059.
Crossref
Jiyizhe Zhang, Yundong Wang, Geoffrey W. Stevens & Weiyang Fei. (2019) A state-of-the-art review on single drop study in liquid–liquid extraction: Experiments and simulations. Chinese Journal of Chemical Engineering 27:12, pages 2857-2875.
Crossref
Néstor Balcázar-Arciniega, Oscar Antepara, Joaquim Rigola & Assensi Oliva. (2019) A level-set model for mass transfer in bubbly flows. International Journal of Heat and Mass Transfer 138, pages 335-356.
Crossref
J.H. Lu, H.Y. Lei & C.S. Dai. (2019) Analysis of Henry’s law and a unified lattice Boltzmann equation for conjugate mass transfer problem. Chemical Engineering Science 199, pages 319-331.
Crossref
Qun Mei, Xiangqian Wei, Weitao Sun, Xinghua Zhang, Wenzhi Li & Longlong Ma. (2019) Liquid membrane catalytic model of hydrolyzing cellulose into 5-hydroxymethylfurfural based on the lattice Boltzmann method. RSC Advances 9:23, pages 12846-12853.
Crossref
J.H. Lu, H.Y. Lei & C.S. Dai. (2019) Lattice Boltzmann equation for mass transfer in multi solvent systems. International Journal of Heat and Mass Transfer 132, pages 519-528.
Crossref
M.C.F. Silva, J.B.L.M. Campos & J.D.P. Araújo. (2019) Mass transfer from a soluble Taylor bubble to the surrounding flowing liquid in a vertical macro tube — A numerical approach. Chemical Engineering Research and Design 144, pages 47-62.
Crossref
Néstor Balcázar-Arciniega, Joaquim Rigola & Assensi Oliva. 2019. Computational Science – ICCS 2019. Computational Science – ICCS 2019 596 610 .
L. J. Cooper, K. R. Daly, P. D. Hallett, N. Koebernick, T. S. George & T. Roose. (2018) The effect of root exudates on rhizosphere water dynamics. Proceedings of the Royal Society A: Mathematical, Physical and Engineering Sciences 474:2217, pages 20180149.
Crossref
Meisam Adibifard. (2018) A novel analytical solution to estimate residual saturation of the displaced fluid in a capillary tube by matching time-dependent injection pressure curves. Physics of Fluids 30:8.
Crossref
D. Deising, D. Bothe & H. Marschall. (2018) Direct numerical simulation of mass transfer in bubbly flows. Computers & Fluids 172, pages 524-537.
Crossref
Mino Woo, Martin Wörner, Steffen Tischer & Olaf Deutschmann. (2017) Validation of a numerical method for interface-resolving simulation of multicomponent gas-liquid mass transfer and evaluation of multicomponent diffusion models. Heat and Mass Transfer 54:3, pages 697-713.
Crossref
Andre Weiner & Dieter Bothe. (2017) Advanced subgrid-scale modeling for convection-dominated species transport at fluid interfaces with application to mass transfer from rising bubbles. Journal of Computational Physics 347, pages 261-289.
Crossref
Gim Yau Soh, Guan Heng Yeoh & Victoria Timchenko. (2017) A CFD model for the coupling of multiphase, multicomponent and mass transfer physics for micro-scale simulations. International Journal of Heat and Mass Transfer 113, pages 922-934.
Crossref
Lu Yang, Maria Jose Nieves-Remacha & Klavs F. Jensen. (2017) Simulations and analysis of multiphase transport and reaction in segmented flow microreactors. Chemical Engineering Science 169, pages 106-116.
Crossref
Carolyn Sawyer, Kaushik Iyer, Xun Zhu, Michael Kelly, Darren Luke & David Amdahl. (2017) Two-dimensional laser-induced thermal ablation modeling with integrated melt flow and vapor dynamics. Journal of Laser Applications 29:2.
Crossref
Yu-Hang Fu, Lin Bai, Kai-Hong Luo, Yong Jin & Yi Cheng. (2017) Modeling mass transfer and reaction of dilute solutes in a ternary phase system by the lattice Boltzmann method. Physical Review E 95:4.
Crossref
Qifang Luo, Rui Ma, Bo Dong, Weizhong Li & Jing Gong. (2016) Simulation on heat and mass transfer for a subcooled droplet falling freely in saturated steam by the lattice Boltzmann method. International Journal of Heat and Mass Transfer 101, pages 226-239.
Crossref
I. Roghair, M. Van Sint Annaland & J.A.M. Kuipers. (2016) An improved Front-Tracking technique for the simulation of mass transfer in dense bubbly flows. Chemical Engineering Science 152, pages 351-369.
Crossref
Yeng-Yung Tsui & Shi-Wen Lin. (2016) Three-dimensional modeling of fluid dynamics and heat transfer for two-fluid or phase change flows. International Journal of Heat and Mass Transfer 93, pages 337-348.
Crossref
Rihito ADACHI, Takeshi OMORI & Takeo KAJISHIMA. (2016) Development of numerical method for mass transfer from a buoyant bubble under a high Schmidt number condition. Transactions of the JSME (in Japanese) 82:839, pages 16-00079-16-00079.
Crossref
Daniel Deising, Holger Marschall & Dieter Bothe. (2016) A unified single-field model framework for Volume-Of-Fluid simulations of interfacial species transfer applied to bubbly flows. Chemical Engineering Science 139, pages 173-195.
Crossref
Z. Dong, H. Zhu, Z. Yan & S. Zhou. (2015) Investigation of an Agent’s Transportation in Microcapsule Self-Healing Concrete. Investigation of an Agent’s Transportation in Microcapsule Self-Healing Concrete.
María José Nieves-Remacha, Lu Yang & Klavs F. Jensen. (2015) OpenFOAM Computational Fluid Dynamic Simulations of Two-Phase Flow and Mass Transfer in an Advanced-Flow Reactor. Industrial & Engineering Chemistry Research 54:26, pages 6649-6659.
Crossref
Li Chen, Qinjun Kang, Qing Tang, Bruce A. Robinson, Ya-Ling He & Wen-Quan Tao. (2015) Pore-scale simulation of multicomponent multiphase reactive transport with dissolution and precipitation. International Journal of Heat and Mass Transfer 85, pages 935-949.
Crossref
Gretar TRYGGVASON & Jiacai LU. (2015) Direct numerical simulations of bubbly flows. Mechanical Engineering Reviews 2:2, pages 15-00220-15-00220.
Crossref
Abhijit Rao, Rupesh K. Reddy, Kalliat T. Valsaraj, Krishnaswamy Nandakumar, Shashank Pandey & Chunliang Wu. (2015) Influence of unsteady mass transfer on dynamics of rising and sinking droplet in water: Experimental and CFD study. AIChE Journal 61:1, pages 342-354.
Crossref
Xiaobo Gong, Zhaoxin Gong & Huaxiong Huang. (2014) An immersed boundary method for mass transfer across permeable moving interfaces. Journal of Computational Physics 278, pages 148-168.
Crossref
B. Aboulhasanzadeh & G. Tryggvason. (2014) Effect of bubble interactions on mass transfer in bubbly flow. International Journal of Heat and Mass Transfer 79, pages 390-396.
Crossref
T. Kunugi, Y. Ose, T. Enomoto & S. Urata. (2014) Numerical Study on Mass Transfer of a Vapor Bubble Rising in Very High Viscous Fluid. The Journal of Computational Multiphase Flows 6:3, pages 271-281.
Crossref
Monica Gumulya, Ranjeet P. Utikar, Vishnu Pareek, Moses O. Tade, Subhasish Mitra & Geoffrey M. Evans. (2014) Modelling of the interaction between a falling n-heptane droplet and hot solid surface. Chemical Engineering Science 116, pages 23-37.
Crossref
Peyman Zahedi, Reza Saleh, Roberto Moreno-Atanasio & Kianoosh Yousefi. (2014) Influence of fluid properties on bubble formation, detachment, rising and collapse; Investigation using volume of fluid method. Korean Journal of Chemical Engineering 31:8, pages 1349-1361.
Crossref
Herbert Obame Mve, Romuald Rullière, Rémi Goulet & Phillippe Haberschill. (2014) Numerical Analysis of Heat Transfer of a Flow Confined by Wire Screen in Lithium Bromide Absorption Process. Defect and Diffusion Forum 348, pages 40-50.
Crossref
J.D. Berry, M.R. Davidson & D.J.E. Harvie. (2013) A multiphase electrokinetic flow model for electrolytes with liquid/liquid interfaces. Journal of Computational Physics 251, pages 209-222.
Crossref
Marianne M. Francois & Neil N. Carlson. (2013) The global embedded interface formulation for interfacial mass transfer within a volume tracking framework. Computers & Fluids 87, pages 102-114.
Crossref
Dieter Bothe & Stefan Fleckenstein. (2013) A Volume-of-Fluid-based method for mass transfer processes at fluid particles. Chemical Engineering Science 101, pages 283-302.
Crossref
R. Banerjee. (2013) Numerical investigation of evaporation of a single ethanol/iso-octane droplet. Fuel 107, pages 724-739.
Crossref
C. Ma & D. Bothe. (2013) Numerical modeling of thermocapillary two-phase flows with evaporation using a two-scalar approach for heat transfer. Journal of Computational Physics 233, pages 552-573.
Crossref
Amin Hassanvand & Seyed Hassan Hashemabadi. (2012) Direct numerical simulation of mass transfer from Taylor bubble flow through a circular capillary. International Journal of Heat and Mass Transfer 55:21-22, pages 5959-5971.
Crossref
Holger Marschall, Korbinian Hinterberger, Christian Schüler, Florian Habla & Olaf Hinrichsen. (2012) Numerical simulation of species transfer across fluid interfaces in free-surface flows using OpenFOAM. Chemical Engineering Science 78, pages 111-127.
Crossref
B. Aboulhasanzadeh, S. Thomas, M. Taeibi-Rahni & G. Tryggvason. (2012) Multiscale computations of mass transfer from buoyant bubbles. Chemical Engineering Science 75, pages 456-467.
Crossref
Martin Wörner. (2012) Numerical modeling of multiphase flows in microfluidics and micro process engineering: a review of methods and applications. Microfluidics and Nanofluidics 12:6, pages 841-886.
Crossref
Kosuke Hayashi & Akio Tomiyama. (2011) Interface Tracking Simulation of Mass Transfer from a Dissolving Bubble. The Journal of Computational Multiphase Flows 3:4, pages 247-261.
Crossref
A. Hassanvand & S.H. Hashemabadi. (2011) Direct numerical simulation of interphase mass transfer in gas–liquid multiphase systems. International Communications in Heat and Mass Transfer 38:7, pages 943-950.
Crossref
Yutaro EZU, Takeshi OMORI & Takeo KAJISHIMA. (2011) . JAPANESE JOURNAL OF MULTIPHASE FLOW 24:5, pages 539-547.
Crossref
Ping Lu, Zhihui Wang, Chao Yang & Zai-Sha Mao. (2010) Experimental investigation and numerical simulation of mass transfer during drop formation. Chemical Engineering Science 65:20, pages 5517-5526.
Crossref
Jan B. Haelssig, Andre Y. Tremblay, Jules Thibault & Seyed Gh. Etemad. (2010) Direct numerical simulation of interphase heat and mass transfer in multicomponent vapour–liquid flows. International Journal of Heat and Mass Transfer 53:19-20, pages 3947-3960.
Crossref
A. Hassanvand, S.H. Hashemabadi & M. Bayat. (2010) Evaluation of gasoline evaporation during the tank splash loading by CFD techniques. International Communications in Heat and Mass Transfer 37:7, pages 907-913.
Crossref
Y. Haroun, D. Legendre & L. Raynal. (2010) Volume of fluid method for interfacial reactive mass transfer: Application to stable liquid film. Chemical Engineering Science 65:10, pages 2896-2909.
Crossref
Y. Haroun, D. Legendre & L. Raynal. (2010) Direct numerical simulation of reactive absorption in gas–liquid flow on structured packing using interface capturing method. Chemical Engineering Science 65:1, pages 351-356.
Crossref
Yeng-Yung Tsui, Shi-Wen Lin, Tong-Ting Cheng & Tian-Cherng Wu. (2009) Flux-blending schemes for interface capture in two-fluid flows. International Journal of Heat and Mass Transfer 52:23-24, pages 5547-5556.
Crossref
Alexandru Onea, Martin Wörner & Dan G. Cacuci. (2009) A qualitative computational study of mass transfer in upward bubble train flow through square and rectangular mini-channels. Chemical Engineering Science 64:7, pages 1416-1435.
Crossref
Jianfeng Wang, Ping Lu, Zhihui Wang, Chao Yang & Zai-Sha Mao. (2008) Numerical simulation of unsteady mass transfer by the level set method. Chemical Engineering Science 63:12, pages 3141-3151.
Crossref
Jan Schlottke & Bernhard Weigand. (2008) Direct numerical simulation of evaporating droplets. Journal of Computational Physics 227:10, pages 5215-5237.
Crossref
Huanxin Lai, Yuying Yan & Keqi Wu. (2007) Numerical simulation of time‐dependent heat and fluid flows inside and around single rising bubbles using a moving axisymmetric boundary‐fitted mesh system. International Journal of Numerical Methods for Heat & Fluid Flow 17:4, pages 418-438.
Crossref
Chao Yang & Zai-Sha Mao. (2005) Numerical simulation of interphase mass transfer with the level set approach. Chemical Engineering Science 60:10, pages 2643-2660.
Crossref
R.J. Goldstein, E.R.G. Eckert, W.E. Ibele, S.V. Patankar, T.W. Simon, T.H. Kuehn, P.J. Strykowski, K.K. Tamma, A. Bar-Cohen, J.V.R. Heberlein, J.H. Davidson, J. Bischof, F.A. Kulacki, U. Kortshagen, S. Garrick & V. Srinivasan. (2005) Heat transfer—a review of 2002 literature. International Journal of Heat and Mass Transfer 48:5, pages 819-927.
Crossref
V. Mehdi‐Nejad, J. Mostaghimi & S. Chandra. (2004) Modelling heat transfer in two‐fluid interfacial flows. International Journal for Numerical Methods in Engineering 61:7, pages 1028-1048.
Crossref
R Banerjee & K. M. Isaac. (2005) An algorithm to determine the mass transfer rate from a pure liquid surface using the volume of fluid multiphase model. International Journal of Engine Research 5:1, pages 23-37.
Crossref
D. Bothe, M. Koebe, K. Wielage, J. Prüss & H.-J. Warnecke. 2004. Bubbly Flows. Bubbly Flows 159 174 .

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.