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Theodore L Bergman
Theodore L Bergman
Mechanical Engineering, University of Kansas
Verified email at ku.edu
Title
Cited by
Cited by
Year
Fundamentals of heat and mass transfer
FP Incropera, TL Bergman, AS Lavine, DP DeWitt
Wiley, 2011
41990*2011
Introduction to Heat Transfer
FP Incropera, DP DeWitt
John Wiley and Sons, 1985
19033*1985
Fundamentos de Transferência de Calor E de Massa .
FP Incropera, DP Dewitt, TL Bergman
Grupo Gen-LTC, 2000
18192000
Principles of Heat and Mass Transfer
FP Incropera
Wiley–Interscience Publication, 2013
9812013
Fundamentals of heat and mass transfer. 2007
FP Incropera, DP Dewitt, TL Bergman, AS Lavine
Hoboken, NJ: John Wiley, 939-40, 1985
4891985
Heat pipe heat exchangers and heat sinks: Opportunities, challenges, applications, analysis, and state of the art
H Shabgard, MJ Allen, N Sharifi, SP Benn, A Faghri, TL Bergman
International Journal of Heat and Mass Transfer 89, 138-158, 2015
3072015
High temperature latent heat thermal energy storage using heat pipes
H Shabgard, TL Bergman, N Sharifi, A Faghri
International Journal of Heat and Mass Transfer 53 (15-16), 2979-2988, 2010
2972010
Enhancement of latent heat energy storage using embedded heat pipes
CW Robak, TL Bergman, A Faghri
International Journal of Heat and Mass Transfer 54 (15-16), 3476-3484, 2011
2482011
Enhancement of PCM melting in enclosures with horizontally-finned internal surfaces
N Sharifi, TL Bergman, A Faghri
International journal of heat and mass transfer 54 (19-20), 4182-4192, 2011
2012011
Fundamentals of heat and mass transfer. 2011
TL Bergman, AS Lavine, FP Incropera, DP Dewitt
John Wiley & Sons, 2015
1902015
A comprehensive numerical model for melting with natural convection
S Wang, A Faghri, TL Bergman
International Journal of heat and mass transfer 53 (9-10), 1986-2000, 2010
1802010
Heat transfer and exergy analysis of cascaded latent heat storage with gravity-assisted heat pipes for concentrating solar power applications
H Shabgard, CW Robak, TL Bergman, A Faghri
Solar Energy 86 (3), 816-830, 2012
1622012
Effect of reduced specific heats of nanofluids on single phase, laminar internal forced convection
TL Bergman
International Journal of heat and mass Transfer 52 (5-6), 1240-1244, 2009
1602009
Heat pipe-assisted melting of a phase change material
N Sharifi, S Wang, TL Bergman, A Faghri
International Journal of Heat and Mass Transfer 55 (13-14), 3458-3469, 2012
1272012
Melting and solidification enhancement using a combined heat pipe, foil approach
N Sharifi, TL Bergman, MJ Allen, A Faghri
International journal of heat and mass transfer 78, 930-941, 2014
1032014
FUNDAMENTALS OF HEAT AND MASS TRANSFER.
LB Theodore
Wiley, 2020
1012020
Fundamentos de Transferência de Calor E de Massa .
TL Bergman, AS Lavine, EM Queiroz
Grupo Gen-LTC, 2000
982000
Internal flow
FP Incropera, DP Dewitt, TL Bergman, AS Lavine
Fundamentals of heat and mass transfer, 466-491, 2002
972002
Effect of inclination angle during melting and solidification of a phase change material using a combined heat pipe-metal foam or foil configuration
MJ Allen, N Sharifi, A Faghri, TL Bergman
International Journal of Heat and Mass Transfer 80, 767-780, 2015
962015
Simulation of heat pipe-assisted latent heat thermal energy storage with simultaneous charging and discharging
N Sharifi, A Faghri, TL Bergman, CE Andraka
International Journal of Heat and Mass Transfer 80, 170-179, 2015
932015
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