Publication Cover
Numerical Heat Transfer, Part B: Fundamentals
An International Journal of Computation and Methodology
Volume 29, 1996 - Issue 4
74
Views
53
CrossRef citations to date
0
Altmetric
Original Articles

NUMERICAL ALGORITHM USING MULTIZONE ADAPTIVE GRID GENERATION FOR MULTIPHASE TRANSPORT PROCESSES WITH MOVING AND FREE BOUNDARIES

, &
Pages 399-421 | Received 25 May 1995, Accepted 27 Oct 1995, Published online: 19 Apr 2007

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

Read on this site (10)

Shimin Wang, Amir Faghri & TheodoreL. Bergman. (2012) Melting in Cylindrical Enclosures: Numerical Modeling and Heat Transfer Correlations. Numerical Heat Transfer, Part A: Applications 61:11, pages 837-859.
Read now
Shimin Wang, Amir Faghri & TheodoreL. Bergman. (2012) A Comparison Study of Sensible and Latent Thermal Energy Storage Systems for Concentrating Solar Power Applications. Numerical Heat Transfer, Part A: Applications 61:11, pages 860-871.
Read now
Liancheng GUO, Yoshio KAWANO, Shuai ZHANG, Takahito SUZUKI, Koji MORITA & Kenji FUKUDA. (2010) Numerical Simulation of Rheological Behavior in Melting Metal Using Finite Volume Particle Method. Journal of Nuclear Science and Technology 47:11, pages 1011-1022.
Read now
Dawei Sun & SureshV. Garimella. (2007) Numerical and Experimental Investigation of Solidification Shrinkage. Numerical Heat Transfer, Part A: Applications 52:2, pages 145-162.
Read now
V. Kumar, F. Durst & S. Ray. (2006) Modeling Moving-Boundary Problems of Solidification and Melting Adopting an Arbitrary Lagrangian-Eulerian Approach. Numerical Heat Transfer, Part B: Fundamentals 49:4, pages 299-331.
Read now
Chin-Yuan Li, Suresh V. Garimella & James E. Simpson. (2003) FIXED-GRID FRONT-TRACKING ALGORITHM FOR SOLIDIFICATION PROBLEMS, PART II: DIRECTIONAL SOLIDIFICATION WITH MELT CONVECTION. Numerical Heat Transfer, Part B: Fundamentals 43:2, pages 143-166.
Read now
R. K. Sahoo & V. Prasad. (2002) APPLICATION OF COMPOSITE ADAPTIVE GRID GENERATION AND MIGRATION (CAGGM) SCHEME FOR PHASE-CHANGE MATERIALS PROCESSES. Numerical Heat Transfer, Part A: Applications 42:7, pages 707-732.
Read now
H. Zhang, L.L. Zheng, V. Prasad & T.Y. Hou. (1998) A CURVILINEAR LEVEL SET FORMULATION FOR HIGHLY DEFORMABLE FREE SURFACE PROBLEMS WITH APPLICATION TO SOLIDIFICATION. Numerical Heat Transfer, Part B: Fundamentals 34:1, pages 1-30.
Read now
B. Ghasemi & M. Molki. (1997) CYCLIC MELTING AND SOLIDIFICATION OF STEEL. Numerical Heat Transfer, Part A: Applications 32:8, pages 877-896.
Read now
J. Y. Tu. (1997) COMPUTATION OF TURBULENT TWO-PHASE FLOW ON OVERLAPPED GRIDS. Numerical Heat Transfer, Part B: Fundamentals 32:2, pages 175-195.
Read now

Articles from other publishers (43)

Vishal Ramesh, Shashank Terala, Sandip Mazumder, Gurpreet Matharu, Dhaval Vaishnav & Syed Ali. (2021) Development and Validation of a Model for Efficient Simulation of Freezing of Water in Large Tanks. Journal of Thermal Science and Engineering Applications 13:1.
Crossref
X. Ma, L.L. Zheng & H. Zhang. (2016) Silicon carbide particle formation/engulfment during directional solidification of silicon. International Journal of Heat and Mass Transfer 99, pages 76-85.
Crossref
Nachiket Patil, Deepankar Pal, H. Khalid Rafi, Kai Zeng, Alleyce Moreland, Adam Hicks, David Beeler & Brent Stucker. (2015) A Generalized Feed Forward Dynamic Adaptive Mesh Refinement and Derefinement Finite Element Framework for Metal Laser Sintering—Part I: Formulation and Algorithm Development. Journal of Manufacturing Science and Engineering 137:4.
Crossref
Xu Ma, Lili Zheng & Hui Zhang. (2014) System design and hot zone optimization of monocrystalline silicon directional solidification furnace for PV application. Journal of Crystal Growth 385, pages 28-33.
Crossref
Suramya D. Mihindukulasuriya & Loong-Tak Lim. (2013) Heat sealing of LLDPE films: Heat transfer modeling with liquid presence at film–film interface. Journal of Food Engineering 116:2, pages 532-540.
Crossref
Liancheng GUO, Yoshio KAWANO, Shuai ZHANG, Takahito SUZUKI, Koji MORITA & Kenji FUKUDA. (2010) Numerical Simulation of Rheological Behavior in Melting Metal Using Finite Volume Particle Method. Journal of Nuclear Science and Technology 47:11, pages 1011-1022.
Crossref
Michael J. Callahan & Qi-Sheng Chen. 2010. Springer Handbook of Crystal Growth. Springer Handbook of Crystal Growth 655 689 .
J.A. Wei, L.L. Zheng & H. Zhang. (2009) Suppression of melt convection in a proposed Bridgman crystal growth system. International Journal of Heat and Mass Transfer 52:15-16, pages 3747-3756.
Crossref
Dipankar Chatterjee. (2009) An enthalpy-based thermal lattice Boltzmann model for non-isothermal systems. EPL (Europhysics Letters) 86:1, pages 14004.
Crossref
Zoran S. Nikolic & Masahiro Yoshimura. (2007) Numerical simulation of rapid solidification of a spherical sample on a metallic substrate. Journal of Materials Science 42:18, pages 7729-7737.
Crossref
J. Fainberg, D. Vizman, J. Friedrich & G. Mueller. (2007) A new hybrid method for the global modeling of convection in CZ crystal growth configurations. Journal of Crystal Growth 303:1, pages 124-134.
Crossref
Yau-Chia Liu & Long-Sun Chao. (2007) Extra Nodes Added on the Solid/Liquid Interface to Solve the Mass Transfer Problem in a Directional Solidification Process. MATERIALS TRANSACTIONS 48:9, pages 2289-2296.
Crossref
S. Jana, S. Ray & F. Durst. (2007) A numerical method to compute solidification and melting processes. Applied Mathematical Modelling 31:1, pages 93-119.
Crossref
Benjamin J. Jones, Dawei Sun, Shankar Krishnan & Suresh V. Garimella. (2006) Experimental and numerical study of melting in a cylinder. International Journal of Heat and Mass Transfer 49:15-16, pages 2724-2738.
Crossref
Hong-Bing Xiong, Yuan Ma & Li-Li Zheng. (2006) Multiphase flow in directional solidification of metal matrix particulate composites. Modelling and Simulation in Materials Science and Engineering 14:3, pages 445-463.
Crossref
Jyotirmay Banerjee & K. Muralidhar. (2006) Simulation of transport processes during Czochralski growth of YAG crystals. Journal of Crystal Growth 286:2, pages 350-364.
Crossref
Y. Ma, L.L. Zheng & D.J. LarsonJr.Jr.. (2004) Microstructure formation during BiMn/Bi eutectic growth with applied alternating electric fields. Journal of Crystal Growth 262:1-4, pages 620-630.
Crossref
Q.-S. Chen, V. Prasad, H. Zhang & M. Dudley. 2003. Crystal Growth Technology. Crystal Growth Technology 233 269 .
Ramazan Kahraman. (2002) Numerical and experimental investigation of melting of ice involving natural convection. International Journal of Energy Research 26:4, pages 347-354.
Crossref
M. Gunzburger, E. Ozugurlu, J. Turner & H. Zhang. (2002) Controlling transport phenomena in the Czochralski crystal growth process. Journal of Crystal Growth 234:1, pages 47-62.
Crossref
Q.-S. Chen, H. Zhang, V. Prasad, C. M. Balkas & N. K. Yushin. (2001) Modeling of Heat Transfer and Kinetics of Physical Vapor Transport Growth of Silicon Carbide Crystals. Journal of Heat Transfer 123:6, pages 1098-1109.
Crossref
Q.-S. Chen, H. Zhang & V. Prasad. (2001) Heat transfer and kinetics of bulk growth of silicon carbide. Journal of Crystal Growth 230:1-2, pages 239-246.
Crossref
V. Prasad, Q.-S. Chen & H. Zhang. (2001) A process model for silicon carbide growth by physical vapor transport. Journal of Crystal Growth 229:1-4, pages 510-515.
Crossref
Q.-S. Chen, H. Zhang, R.-H. Ma, V. Prasad, C.M. Balkas & N.K. Yushin. (2001) Modeling of transport processes and kinetics of silicon carbide bulk growth. Journal of Crystal Growth 225:2-4, pages 299-306.
Crossref
Q.-S. Chen, H. Zhang, V. Prasad, C.M. Balkas, N.K. Yushin & S. Wang. (2001) Kinetics and modeling of sublimation growth of silicon carbide bulk crystal. Journal of Crystal Growth 224:1-2, pages 101-110.
Crossref
Suresh V. Garimella & James E. Simpson. (2001) Effect of thermosolutal convection on directional solidification. Sadhana 26:1-2, pages 121-138.
Crossref
S. Pendurti, H. Zhang & V. Prasad. (2001) Modelling of transport phenomena and defects in crystal growth processes. Sadhana 26:1-2, pages 71-101.
Crossref
A Roy, B Mackintosh, J.P Kalejs, Q.-S Chen, H Zhang & V Prasad. (2000) A numerical model for inductively heated cylindrical silicon tube growth system. Journal of Crystal Growth 211:1-4, pages 365-371.
Crossref
R.-H Ma, Q.-S Chen, H Zhang, V Prasad, C.M Balkas & N.K Yushin. (2000) Modeling of silicon carbide crystal growth by physical vapor transport method. Journal of Crystal Growth 211:1-4, pages 352-359.
Crossref
E.R.G. Eckert, R.J. Goldstein, W.E. Ibele, 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. Kulacki & U. Kortshagen. (2000) Heat transfer — a review of 1996 literature. International Journal of Heat and Mass Transfer 43:8, pages 1273-1371.
Crossref
Q.-S. Chen, V. Prasad & A. Chatterjee. (1999) Modeling of Fluid Flow and Heat Transfer in a Hydrothermal Crystal Growth System: Use of Fluid-Superposed Porous Layer Theory. Journal of Heat Transfer 121:4, pages 1049-1058.
Crossref
T. Zhang, F. Ladeinde & V. Prasad. (1999) Turbulent Convection in a Czochralski Silicon Melt. Journal of Heat Transfer 121:4, pages 1027-1041.
Crossref
T Zhang, G.-X Wang, H Zhang, F Ladeinde & V Prasad. (1999) Turbulent transport of oxygen in the Czochralski growth of large silicon crystals. Journal of Crystal Growth 198-199, pages 141-146.
Crossref
Y. F. Zou, G.-X. Wang, H. Zhang & V. Prasad. (1999) Mechanisms of Thermo-Solutal Transport and Segregation in High-Pressure Liquid-Encapsulated Czochralski Crystal Growth. Journal of Heat Transfer 121:1, pages 148-159.
Crossref
Frederic Thivet, Valerie Saint-Martin & Olivier Leschiera. (1999) Assessment of turbulence models for transonic flows around supercritical airfoil computed with a zonal method. Assessment of turbulence models for transonic flows around supercritical airfoil computed with a zonal method.
H. Zhang, L. L. Zheng, V. Prasad & D. J. LarsonJr.Jr.. (1998) Diameter-Controlled Czochralski Growth of Silicon Crystals. Journal of Heat Transfer 120:4, pages 874-882.
Crossref
H. Zhang, L. L. Zheng, V. Prasad & D. J. LarsonJr.Jr.. (1998) Local and Global Simulations of Bridgman and Liquid-Encapsulated Czochralski Crystal Growth. Journal of Heat Transfer 120:4, pages 865-873.
Crossref
James E. Simpson & Suresh V. Garimella. (1998) An investigation of the solutal, thermal and flow fields in unidirectional alloy solidification. International Journal of Heat and Mass Transfer 41:16, pages 2485-2502.
Crossref
L. L. Zheng, H. Zhang, D. J. LarsonJr.Jr. & V. Prasad. (1998) A Model for Solidification Under the Influence of Thermoelectric and Magnetohydrodynamic Effects: Application to Peltier Demarcation During Directional Solidification With Different Gravitational Conditions. Journal of Heat Transfer 120:2, pages 430-440.
Crossref
R Kahraman, H.D Zughbi, Y.N Al-Nassar, M.A Hastaoglu & N Sobh. (1998) A simplified numerical model for melting of ice with natural convection. International Communications in Heat and Mass Transfer 25:3, pages 359-368.
Crossref
H. Zhang, V. Prasad, A.P. Anselmo, D.F. Bliss & G. Iseler. (1997) Transport phenomena in a high pressure crystal growth system: In situ synthesis for InP melt. Journal of Crystal Growth 177:3-4, pages 196-206.
Crossref
G.-X. Wang, V. Prasad & E.F. Matthys. (1997) An interface-tracking numerical method for rapid planar solidification of binary alloys with application to microsegregation. Materials Science and Engineering: A 225:1-2, pages 47-58.
Crossref
V. Prasad, H. Zhang & A.P. Anselmo. 1997. 313 435 .

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.