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guest editorial

Heat Transfer, Fluid Mechanics, and Thermodynamics in Our Environment—HEFAT2012

REFERENCES

  • Meyer , J. P. 2011 . Constructal Law in Technology, Thermofluid and Energy Systems, and in Design Education . Physics of Life Reviews , 8 : 247 – 248 . no. 3
  • Lips , S. and Meyer , J. P. 2011 . Two-phase Flow in Inclined Tubes With Specific Reference to Condensation: A Review . International Journal of Multiphase Flow , 37 : 845 – 859 . no. 8
  • Lips , S. and Meyer , J. P. 2012 . Experimental Study of Convective Condensation in an Inclined Smooth Tube. Part I: Inclination Effect on Flow Pattern and Heat Transfer Coefficient . International Journal for Heat and Mass Transfer , 55 : 395 – 404 . issue 1–3
  • Lips , S. and Meyer , J. P. 2012 . Experimental Study of Convective Condensation in an Inclined Smooth Tube. Part II: Inclination Effect on Pressure Drops and Void Fractions . International Journal for Heat and Mass Transfer , 55 : 405 – 412 . issue 1–3
  • Dirker , J. and Meyer , J. P. 2002 . Heat Transfer Coefficients in Concentric Annuli . Journal of Heat Transfer , 124 : 1200 – 1202 . no. 6
  • Bukasa , J. P. , Liebenberg , L. and Meyer , J. P. 2004 . Heat Transfer Performance During Condensation Inside Spiraled Micro-Fin Tubes . Journal of Heat Transfer , 126 ( 3 ) : 321 – 328 .
  • Smit , F. J. , Thome , J. R. and Meyer , J. P. 2002 . Heat Transfer Coefficients During Condensation of the Zeotropic Refrigerant Mixture HCFC-22/HCFC-142b . Journal of Heat Transfer , 124 : 1137 – 1146 . no. 6
  • Canière , H. , T’Joen , C. , Willcockz , A. , De Paepe , M. , Christians , M. , Van Rooyen , E. , Liebenberg , L. and Meyer , J. P. 2007 . Horizontal Two-Phase Flow Characterization for Small Diameter Tubes With a Capacitance Sensor . Measurement Science and Technology , 18 : 2898 – 2906 .
  • Meyer , J. P. , Bukasa , J. M. and Kebonte , S. 2000 . Average Boiling and Condensation Heat Transfer Coefficients of the Zeotropic Refrigerant Mixture R22/R142b in a Coaxial Tube-in-tube Heat Exchanger . Journal of Heat Transfer , 122 : 186 – 188 . no. 1
  • Smith , C. , Coetzee , P. P. and Meyer , J. P. 2003 . The Effectiveness of a Magnetic Physical Water Treatment Device on Scaling in Domestic Hot-Water Storage Tanks . Water SA , 29 : 231 – 236 . no. 3
  • Bukasa , J. P. , Liebenberg , L. and Meyer , J. P. 2004 . Heat Transfer Performance During Condensation Inside Spiraled Micro-Fin Tubes . Journal of Heat Transfer , 126 : 321 – 328 . no. 3
  • Olivier , J. A. , Liebenberg , L. , Kedzierski , M. A. and Meyer , J. P. 2004 . Pressure Drop During Refrigerant Condensation Inside Horizontal Smooth, Helical Micro-Fin and Herringbone Micro-fin Tubes . Journal of Heat Transfer , 126 : 687 – 696 . no. 5
  • Smit , F. J. and Meyer , J. P. 2002 . R-22 and Zeotropic R-22/R-142b Mixture Condensation in Micro Fin, High-Fin and Twisted Tape Insert Tubes . Journal of Heat Transfer , 124 ( 5 ) : 912 – 921 .
  • Smit , F. J. and Meyer , J. P. 1998 . Investigation of the Potential Effect of Zeotropic Refrigerant Mixture on Performance of a Hot-Water Heat Pump . ASHRAE Transactions , 104 : 387 – 394 .
  • Oladiran , M. T. and Meyer , J. P. 2007 . Energy and Exergy Analyses of Energy Consumption in the Industrial Sector in South Africa . Applied Energy , 84 : 1056 – 1067 . no. 10
  • Meyer , J. P. , Raubenheimer , P. J. A. , Ubenheimer , P. J. A. and Krüger , E. 2000 . The Influence of Return Loop Flow Rate on Stratification in a Vertical Hot Water Storage Tank Connected to a Heat Pump Water Heater . Heat Transfer Engineering , 21 : 67 – 73 . no. 2
  • Vorster , P. P. J. and Meyer , J. P. 2000 . Wet Compression Versus Dry Compression in Heat Pumps Working With Pure Refrigerants or Non-Azeotropic Binary Mixtures for Different Heating Applications . International Journal of Refrigeration , 23 : 292 – 311 . no. 4
  • Afrin , N. , Zhang , Y. and Chen , J. K. 2011 . Thermal Lagging in Living Biological Tissue Based on Nonequilibrium Heat Transfer Between Tissue, Arterial and Venous Bloods . International Journal of Heat and Mass Transfer , 54 : 2419 – 2426 . no. 11–12
  • Zhang , Y. 2009 . Generalized Dual-Phase Lag Bioheat Equations Based on Nonequilibrium Heat Transfer in Living Biological Tissues . International Journal of Heat and Mass Transfer , 52 : 4829 – 4834 . no. 21–22
  • Huizenga , C. , Arasteh , D. K. , Finlayson , E. , Mitchell , R. , Griffith , B. and Curcija , D. 1999 . Teaching Students About Two-Dimensional Heat Transfer Effects in Buildings, Building Components, Equipment and Appliances Using THERM 2.0 . ASHRAE Transactions , 105 : CH-99-13 – 3 .
  • Tagliafico , L. and Tanda , G. 1997 . Radiation and Natural Convection Heat Transfer from Wire-and-Tube Heat Exchangers in Refrigeration Appliances . International Journal of Refrigeration , 20 : 461 – 469 . no. 7
  • Kingsley-Rowe , J. R. , Lock , G. D. and Davies , A. G. 2003 . Aerospace Applications of Luminescent Paint. Part Two: Heat Transfer Measurements . Aeronautical Journal , 107 : 649 – 656 . no. 1077
  • Bayazitoglu , Y. and Cameron , H. S. 2002 . Foreword: Heat Transfer Equipment Aerospace Heat Transfer Heat Transfer in Multiphase Systems Gas Turbine Heat Transfer . American Society of Mechanical Engineers, Heat Transfer Division , : iii HTD 372
  • Nottrott , A. , Onomura , S. , Inagaki , A. , Kanda , M. and Kleissl , J. 2011 . Convective Heat Transfer on Leeward Building Walls in an Urban Environment: Measurements in an Outdoor Scale Model . International Journal of Heat and Mass Transfer , 54 : 3128 – 3138 . no. 15–16
  • Abahri , K. , Belarbi , R. and Trabeisi , A. 2011 . Contribution to Analytical and Numerical Study of Combined Heat and Moisture Transfers in Porous Building Materials . Building and Environment , 46 : 1354 – 1360 . no. 7
  • Meyer , J. P. , Le Grange , L. A. and Meyer , J. P. 1991 . The Utilization of Air Scoops for the Improvement of Ventilation in a Coal Mine Heading . International Journal of Mining Science and Technology , 13 : 17 – 24 .
  • Meyer , J. P. and Marx , W. M. 1993 . “ The Minimizing of Pressure Losses in a Fan Drift-Mine Shaft Intersection, Using Computational Fluid Dynamics ” . In Research and Development Journal Vol. 9 , 1 – 7 . no. 3
  • Li , T. X. , Wang , R. Z. , Kiplagat , J. K. , Chen , H. and Wang , L. W. 2011 . A New Target-Oriented Methodology of Decreasing the Regeneration Temperature of Solid–Gas Thermochemical Sorption Refrigeration System Driven by Low-Grade Thermal Energy . International Journal of Heat and Mass Transfer , 54 : 4719 – 4729 . no. 21–22
  • Allison , J. M. , Staats , W. L. , McCarthy , M. , Jenicek , D. , Edoh , A. K. , Lang , J. H. , Wang , E. N. and Brisson , J. G. 2011 . Enhancement of Convective Heat Transfer in an Air-Cooled Heat Exchanger Using Interdigitated Impeller Blades . International Journal of Heat and Mass Transfer , 54 : 4549 – 4559 . no. 21–22
  • Dirker , J. , Van Wyk , J. D. and Meyer , J. P. 2006 . Cooling of Power Electronics by Embedded Solids . ASME Journal of Electronic Packaging , 128 : 388 – 397 .
  • Dirker , J. , Malan , A. G. and Meyer , J. P. 2007 . Thermal Characterization of Rectangular Cooling Shapes in Solids . International Journal of Numerical Methods for Heat and Fluid Flow , 17 : 361 – 383 . no. 4
  • Greyvenstein , G. P. and Meyer , J. P. 1991 . The Viability of Heat Pumps for the Heating of Swimming Pools in South Africa . Energy—The International Journal , 16 : 1031 – 1037 . no. 7
  • Meyer , J. P. and Greyvenstein , G. P. 1991 . Hot Water for Homes in South Africa With Heat Pumps . Energy—The International Journal , 16 : 1039 – 1044 . no. 7
  • Meyer , J. P. and Greyvenstein , G. P. 1992 . The Drying of Grain With Heat Pumps in South Africa . International Journal of Energy Research , 16 : 13 – 20 . no. 1
  • Meyer , J. P. and Greyvenstein , G. P. 1992 . Hot Water for Large Residential Units, Hospitals and Laundries With Heat Pumps in South Africa: A Techno-Economic Analysis . Energy Conversion and Management , 33 : 135 – 143 . no. 2
  • Greyvenstein , G. P. and Meyer , J. P. 1993 . The Cost-Effectiveness of Heat Pumps in Specific Buildings in South Africa . International Journal of Energy Research , 17 : 633 – 646 . no. 7
  • Petit , P. J. and Meyer , J. P. 1998 . Techno-Economic Analysis Between the Performances of Heat Source Air-Conditioners in South Africa . Energy, Conversion and Management , 39 : 661 – 669 . no. 7
  • Petit , P. J. and Meyer , J. P. 1998 . Economic Potential of Vertical Ground-Source Heat Pumps Compared to Air-Source Air-Conditioners in South Africa . Energy—The International Journal , 23 : 137 – 143 . no. 2
  • De Swardt , C. A. and Meyer , J. P. 2001 . A Performance Comparison Between an Air-Source and a Ground-Source Reversible Heat Pump . International Journal of Energy Research , 25 : 899 – 910 . no. 10
  • Yan , B. H. , Gu , H. Y. and Yu , L. 2011 . The Flow and Heat Transfer Characteristics of Turbulent Flow in Typical Rod Bundles in Ocean Environment . Progress in Nuclear Energy , 53 : 487 – 498 . no. 3
  • Bolt , T. R. 2006 . Editorial: Heat Transfer and the Environment . Heat Transfer Engineering , 27 : 1 – 5 . no. 7
  • Meyer , J. P. and Stehlik , P. 2003 . Selected Papers From the First HEFAT Conference . Heat Transfer Engineering , 24 : 1 – 2 . no. 6
  • Meyer , J. P. and Stehlik , P. 2005 . Selected Papers From the Second HEFAT Conference . Heat Transfer Engineering , 26 : 1 – 2 . no. 7
  • Meyer , J. P. 2006 . Selected Papers From the Third HEFAT Conference . Heat Transfer Engineering , 27 : 1 no. 8
  • Meyer , J. P. 2007 . Selected Papers From the Fourth HEFAT Conference . Heat Transfer Engineering , 28 : 603 – 604 . no. 7
  • Meyer , J. P. 2009 . Selected Papers From the Fifth HEFAT Conference . Heat Transfer Engineering , 30 : 1 – 2 . no. 7
  • Meyer , J. P. 2011 . Selected Papers from the Sixth HEFAT Conference . Heat Transfer Engineering , 32 : 87 – 89 . no. 2
  • Meyer , J. P. 2012 . Selected Papers From the Seventh HEFAT Conference—Heat Transfer, Fluid Mechanics, and Thermodynamics in Society . Heat Transfer Engineering , 33 : 1143 – 1147 . no. 14
  • Meyer , J. P. 2013 . Heat Transfer, Fluid Mechanics and Thermodynamics in Industry—HEFAT2011 . Heat Transfer Engineering , 34 : 1141 – 1146 . no. 14

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