CFD applied to electronic systems: a review
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[1] A. Viault,et al. EXPERIMENTAL AND NUMERICAL INVESTIGATIONS OF HEAT TRANSFER IN ENCLOSURES CONTAINING HEAT DISSIPATING PLATES , 1990 .
[2] M. M. Yovanovich. HEAT TRANSFER IN ELECTRONIC PACKAGING , 1994 .
[3] Asako Yutaka,et al. Three-dimensional heat transfer analysis of arrays of heated square blocks , 1989 .
[4] D. Torok,et al. Flow and thermal fields in channels between corotating disks , 1988, InterSociety Conference on Thermal Phenomena in the Fabrication and Operation of Electronic Components. I-THERM '88.
[5] Yassin A. Hassan,et al. A Stable Mass-Flow-Weighted Two-Dimensional Skew Upwind Scheme , 1983 .
[6] Sumanta Acharya,et al. Source term decomposition to improve convergence of swirling flow calculations , 1988 .
[7] H. Y. Wong,et al. Handbook of essential formulae and data on heat transfer for engineers , 1977 .
[8] Yutaka Asako,et al. Three-Dimensional Heat Transfer and Fluid Flow Analysis of Arrays of Square Blocks Encountered in Electronic Equipment , 1988 .
[9] Kriss J. Kennedy,et al. Dust control research for SEI , 1992 .
[10] A. D. Gosman,et al. Transfer of Heat in Rotating Systems , 1976 .
[11] Clayton T. Crowe,et al. Review—Numerical Models for Dilute Gas-Particle Flows , 1982 .
[12] Theodore J. Heindel,et al. Assessment of turbulence models for natural convection in an enclosure , 1994 .
[13] Nestor V. Queipo,et al. Genetic algorithms for thermosciences research: application to the optimized cooling of electronic components , 1994 .
[14] F. Durst,et al. Numerical simulation and optimization of the aerodynamics flow field inside fume cupboards , 1992 .
[15] Cristina H. Amon. Heat Transfer Enhancement by Flow Destabilization in Electronic Chip Configurations , 1992 .
[16] Theodore J. Heindel,et al. Enhancement of natural convection heat transfer from an array of discrete heat sources , 1996 .
[17] Sehyun Shin,et al. The effects of the Reynolds number and width ratio on the flow distribution in manifolds of liquid cooling modules for electronic packaging , 1993 .
[18] Anthony T. Patera,et al. Exploiting hydrodynamic instabilities. Resonant heat transfer enhancement , 1986 .
[19] Dimos Poulikakos,et al. Turbulent forced convective cooling of microelectronic devices , 1990 .
[20] Cristina H. Amon,et al. Forced Convective Cooling Enhancement of Electronic Package Configurations Through Self-Sustained Oscillatory Flows , 1993 .
[21] K. Kelkar,et al. Numerical prediction of periodically fully developed natural convection in a vertical channel with surface mounted heat generating blocks , 1993 .
[22] S. P. Vanka,et al. Study of second order upwind differencing in a recirculating flow , 1985 .
[23] Sasa Kenjeres,et al. Natural convection in partitioned two-dimensional enclosures at higher Rayleigh numbers , 1996 .
[24] Theodore J. Heindel,et al. Conjugate natural convection from an array of discrete heat sources: Part 1 Two- and three-dimensi , 1995 .
[25] Cristina H. Amon,et al. Effect of material composition and localized heat generation on time-dependent conjugate heat transport , 1995 .
[26] Franz Durst,et al. Predictions and measurements of laminar flow over two-dimensional obstacles , 1987 .
[27] A. Latrobe,et al. Simulation and Experimentation of Air Flow in Electronic Racks , 1986, INTELEC '86 - International Telecommunications Energy Conference.
[28] A. Gosman,et al. Aspects of Computer Simulation of Liquid-Fueled Combustors , 1983 .
[29] Dennis Torok,et al. Developing flows in narrow channels, containing heated obstacles , 1988 .
[30] A. F. Mills,et al. A model of particle re-entrainment in electrostatic precipitators , 1995 .
[31] Cristina H. Amon. Spectral element-Fourier method for transitional flows in complex geometries , 1993 .
[32] D. Spalding,et al. A calculation procedure for heat, mass and momentum transfer in three-dimensional parabolic flows , 1972 .
[33] Jerzy M. Floryan,et al. A Numerical Study of Developing Free Convection Between Isothermal Vertical Plates , 1991 .
[34] B. Launder,et al. The numerical computation of turbulent flows , 1990 .
[35] R. J. Schnipke,et al. A monotone streamline upwind finite element method for convection-dominated flows , 1985 .
[36] Christopher J. Freitas,et al. Perspective: Selected Benchmarks From Commercial CFD Codes , 1995 .
[37] James R. Brock,et al. On the theory of thermal forces acting on aerosol particles , 1962 .
[38] V. Maudgal,et al. Numerical simulation of natural convection cooled electronic enclosures , 1995, 1995 Proceedings. 45th Electronic Components and Technology Conference.
[39] Z. Zhou,et al. Natural convection in a partially-open cavity with a divider , 1992 .
[40] A. D. Gosman,et al. Heat and Mass Transfer in Recirculating Flows , 1969 .
[41] Wei Shyy,et al. Adaptive Grid Solution for Buoyancy-Induced Flow in Vertical Slots , 1992 .
[42] S. Sridhar. Evaluation of a thermal design tool for electronics-a three chip MCM as a case study , 1995, 1995 Proceedings. 45th Electronic Components and Technology Conference.
[43] J. Srinivasan,et al. Analysis of conjugate laminar mixed convection cooling in a shrouded array of electronic components , 1992 .
[44] M. Hasnaoui,et al. NATURAL CONVECTION IN PARTITIONED ENCLOSURES WITH LOCALIZED HEATING , 1993 .
[45] R. Karunakaran,et al. Package Design Advisor-mechanical, electrical and thermal analysis in one CAD tool , 1995, 1995 Proceedings. 45th Electronic Components and Technology Conference.
[46] Theodore J. Heindel,et al. Conjugate natural convection from an array of discrete heat sources: Part 2 — A numerical parametric study , 1995 .
[47] C. Prakash,et al. Analysis of Laminar Fully Developed Flow in Plate-Fin Passages: Effect of Fin Shape , 1986 .
[48] F. Harlow,et al. Numerical Calculation of Time‐Dependent Viscous Incompressible Flow of Fluid with Free Surface , 1965 .
[49] C. J. Hoogendoorn,et al. COMPARISON EXERCISE FOR COMPUTATIONS OF TURBULENT NATURAL CONVECTION IN ENCLOSURES , 1995 .
[50] Dimos Poulikakos,et al. Natural Convection in a Confined Fluid-Filled Space Driven by a Single Vertical Wall With Warm and Cold Regions , 1985 .
[51] Theodore J. Heindel,et al. CONJUGATE NATURAL CONVECTION FROM AN ARRAY OF PROTRUDING HEAT SOURCES , 1996 .
[52] Young I. Cho,et al. The effect of header shapes on the flow distribution in a manifold for electronic packaging applications , 1995 .
[53] S. Drake,et al. Computational Analysis of Air and Heat Flow in Electronic Systems , 1994 .
[54] Suhas V. Patankar,et al. NUMERICAL PREDICTION OF NATURAL CONVECTION IN SQUARE PARTITIONED ENCLOSURES , 1990 .
[55] Mohammad Faghri,et al. PREDICTION OF TURBULENT HEAT TRANSFER IN THE ENTRANCE OF AN ARRAY OF HEATED BLOCKS USING LOW-REYNOLDS-NUMBER κ-ε MODEL , 1994 .
[56] M. Durbin,et al. Impingement Cooling of Electronics , 1992 .
[57] D. Spalding. A novel finite difference formulation for differential expressions involving both first and second derivatives , 1972 .
[58] Wei Shyy,et al. Simulation of Transient Natural Convection Around an Enclosed Vertical Channel , 1993 .
[59] Cristina H. Amon,et al. Spectral element-Fourier method for unsteady conjugate heat transfer in complex geometry flows , 1995 .
[60] S. Patankar. Numerical Heat Transfer and Fluid Flow , 2018, Lecture Notes in Mechanical Engineering.
[61] Suhas V. Patankar,et al. Numerical Prediction of Heat Transfer and Fluid Flow in Rectangular Offset-Fin Arrays , 1989 .
[62] A. Gosman,et al. Aspects of computer simulation of liquid-fuelled combustors , 1981 .
[63] D. Brandt,et al. Multi-level adaptive solutions to boundary-value problems math comptr , 1977 .
[64] F. S. Sandroff,et al. Reliability qualification test for circuit boards exposed to airborne hygroscopic dust , 1992, 1992 Proceedings 42nd Electronic Components & Technology Conference.
[65] A. Viault,et al. Thermal simulations for electronic equipment using the software package THEBES , 1989, Conference Proceedings., Eleventh International Telecommunications Energy Conference.
[66] R. Zerkle,et al. Prediction of Turbulent Flow and Heat Transfer in a Ribbed Rectangular Duct With and Without Rotation , 1993 .
[67] E. Bilgen,et al. Natural convection in inclined enclosures with multiple conducting partitions , 1995 .
[68] Anthony T. Patera,et al. Numerical investigation of incompressible flow in grooved channels. Part 2. Resonance and oscillatory heat-transfer enhancement , 1986, Journal of Fluid Mechanics.
[69] Kanchan M. Kelkar,et al. NUMERICAL METHOD FOR THE COMPUTATION OF CONJUGATE HEAT TRANSFER IN NONORTHOGONAL BOUNDARY-FITTED COORDINATES , 1991 .
[70] Mohammad Faghri,et al. PREDICTION OF TURBULENT THREE-DIMENSIONAL HEAT TRANSFER OF HEATED BLOCKS USING LOW-REYNOLDS NUMBER TWO-EQUATION MODEL , 1994 .
[71] H. I. Rosten,et al. Development, validation and application of a thermal model of a plastic quad flat pack , 1995, 1995 Proceedings. 45th Electronic Components and Technology Conference.
[72] S. Acharya,et al. Comparison of the Piso, Simpler, and Simplec Algorithms for the Treatment of the Pressure-Velocity Coupling in Steady Flow Problems , 1986 .
[73] A. Viault,et al. THERMAL FIELD PREDICTION IN ELECTRONIC EQUIPMENT , 1986 .
[74] C. J. Hoogendoorn,et al. Scaling of the Turbulent Natural Convection Flow in a Heated Square Cavity , 1994 .
[75] E.S. Sproles,et al. Dust test results on multicontact, circuit board connectors , 1991, 1991 Proceedings 41st Electronic Components & Technology Conference.
[76] Wei Shyy,et al. Computation of complex fluid flows using an adaptive grid method , 1988 .
[77] Sehyun Shin,et al. The effect of area ratio on the flow distribution in liquid cooling module manifolds for electronic packaging , 1993 .
[78] Cristina H. Amon,et al. Time-Dependent Conjugate Heat Transfer Characteristics of Self-Sustained Oscillatory Flows in a Grooved Channel , 1994 .
[79] G. Ellison. Thermal computations for electronic equipment , 1984 .
[80] P. Le Quéré,et al. Three-dimensional transition of natural-convection flows , 1996, Journal of Fluid Mechanics.
[81] J. P. V. Doormaal,et al. ENHANCEMENTS OF THE SIMPLE METHOD FOR PREDICTING INCOMPRESSIBLE FLUID FLOWS , 1984 .
[82] B. Mikic,et al. Numerical investigation of incompressible flow in grooved channels. Part 1. Stability and self-sustained oscillations , 1986, Journal of Fluid Mechanics.
[83] R.J. Schnipke,et al. A fluid flow and heat transfer analysis for evaluating the effectiveness of an IC package heat sink , 1989, Fifth Annual IEEE Semiconductor Thermal and Temperature Measurement Symposium.
[84] A. Gosman,et al. Solution of the implicitly discretised reacting flow equations by operator-splitting , 1986 .
[85] B. R. Baliga,et al. A NEW FINITE-ELEMENT FORMULATION FOR CONVECTION-DIFFUSION PROBLEMS , 1980 .
[86] G. de Vahl Davis,et al. Natural convection in a square cavity: A comparison exercise , 1983 .
[87] Ram S. Viswanath,et al. Thermal modeling of high performance packages in portable computers , 1995, 1995 Proceedings. 45th Electronic Components and Technology Conference.
[88] Cristina H. Amon,et al. Numerical prediction of convective heat transfer in self-sustained oscillatory flows , 1990 .
[89] I. S. Nigen,et al. Concurrent thermal designs of PCBs: balancing accuracy with time constraints , 1992 .
[90] Sadik Kakaç,et al. Numerical and experimental analysis of unsteady laminar forced convection in channels , 1991 .
[91] Michael S. Engelman,et al. Grey‐body surface radiation coupled with conduction and convection for general geometries , 1991 .
[92] Wei Shyy,et al. Effect of aspect ratio on laminar heat transfer behavior of a non-Newtonian fluid in an electronics coldplate , 1992 .
[93] A. Patera. A spectral element method for fluid dynamics: Laminar flow in a channel expansion , 1984 .
[94] Mohammad Faghri,et al. Entrance analysis of turbulent flow in an array of heated rectangular blocks , 1994 .
[95] Cristina H. Amon,et al. Numerical and experimental studies of self-sustained oscillatory flows in communicating channels , 1992 .