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Numerical Heat Transfer, Part B: Fundamentals
An International Journal of Computation and Methodology
Volume 45, 2004 - Issue 1
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Original Articles

A COMPARATIVE ASSESSMENT WITHIN A MULTIGRID ENVIRONMENT OF SEGREGATED PRESSURE-BASED ALGORITHMS FOR FLUID FLOW AT ALL SPEEDS

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Pages 49-74 | Received 01 Apr 2003, Accepted 01 Jun 2003, Published online: 17 Aug 2010

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Read on this site (7)

M. Darwish, W. Geahchan & F. Moukalled. (2017) Fully implicit method for coupling multiblock meshes with nonmatching interface grids. Numerical Heat Transfer, Part B: Fundamentals 71:2, pages 109-132.
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Fadl Moukalled, Luca Mangani & Marwan Darwish. (2016) Implementation of boundary conditions in the finite-volume pressure-based method—Part I: Segregated solvers. Numerical Heat Transfer, Part B: Fundamentals 69:6, pages 534-562.
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M. Darwish, A. Abdel Aziz & F. Moukalled. (2015) A Coupled Pressure-Based Finite-Volume Solver for Incompressible Two-Phase Flow. Numerical Heat Transfer, Part B: Fundamentals 67:1, pages 47-74.
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M. Darwish & F. Moukalled. (2014) A Fully Coupled Navier-Stokes Solver for Fluid Flow at All Speeds. Numerical Heat Transfer, Part B: Fundamentals 65:5, pages 410-444.
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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.
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A. Vidal & J. Rodríguez. (2007) A Direct Pressure-Linking Method for Turbulent Flow Computations. Numerical Heat Transfer, Part B: Fundamentals 52:6, pages 531-549.
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F. Moukalled & M. Darwish. (2004) PRESSURE-BASED ALGORITHMS FOR MULTIFLUID FLOW AT ALL SPEEDS—PART I: MASS CONSERVATION FORMULATION. Numerical Heat Transfer, Part B: Fundamentals 45:6, pages 495-522.
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Articles from other publishers (10)

Umurdin Dalabaev & Malika Ikramova. 2023. Numerical Simulation - Advanced Techniques for Science and Engineering. Numerical Simulation - Advanced Techniques for Science and Engineering.
Mohammad Hossein Zolfagharnasab, Milad Salimi & Cyrus Aghanajafi. (2021) Application of non-pressure-based coupled procedures for the solution of heat and mass transfer for the incompressible fluid flow phenomenon. International Journal of Heat and Mass Transfer 181, pages 121851.
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Nelson O. Moraga, Juan I. Jaime & Roberto C. Cabrales. (2021) An approach to accelerate the convergence of SIMPLER algorithm for convection-diffusion problems of fluid flow with heat transfer and phase change. International Communications in Heat and Mass Transfer 129, pages 105715.
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HuiJie Zhang, WeiBing Zhu & Hong Chen. (2020) A robust and efficient segregated algorithm for fluid flow: The EPPL method. Journal of Computational Physics 423, pages 109823.
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F. Pimenta & M.A. Alves. (2019) A coupled finite-volume solver for numerical simulation of electrically-driven flows. Computers & Fluids 193, pages 104279.
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Xiang Liu, Fei Guo, Yun Zhang, Junjie Liang, Dequn Li & Huamin Zhou. (2019) An efficient coupled pressure–velocity solver for three-dimensional injection molding simulation using Schur complement preconditioned FGMRES. Engineering Computations 36:4, pages 1101-1120.
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M. Darwish, L. Mangani & F. Moukalled. (2018) Implicit boundary conditions for coupled solvers. Computers & Fluids 168, pages 54-66.
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F. Moukalled, L. Mangani & M. DarwishF. Moukalled, L. Mangani & M. Darwish. 2016. The Finite Volume Method in Computational Fluid Dynamics. The Finite Volume Method in Computational Fluid Dynamics 561 654 .
Andrés Vidal, Damian Dechev & Alain Kassab. (2012) Evaluation of Two Acceleration Techniques in a Multithreaded 2D Poisson Equation Solver. Procedia Computer Science 9, pages 2016-2019.
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R.J. Goldstein, W.E. Ibele, S.V. Patankar, T.W. Simon, T.H. Kuehn, P.J. Strykowski, K.K. Tamma, J.V.R. Heberlein, J.H. Davidson, J. Bischof, F.A. Kulacki, U. Kortshagen, S. Garrick, V. Srinivasan, K. Ghosh & R. Mittal. (2010) Heat transfer—A review of 2004 literature. International Journal of Heat and Mass Transfer 53:21-22, pages 4343-4396.
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