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December 2021
This article was originally published in
Journal of Heat Transfer
ISSN 0022-1481
EISSN 1528-8943
Review Articles
Review on Solar Thermochemical Processing for Lunar Applications and Their Heat Transfer Modeling Methods
J. Heat Transfer. December 2021, 143(12): 120801.
doi: https://doi.org/10.1115/1.4052080
Topics:
Heat transfer
,
Modeling
,
Solar energy
,
Radiation (Physics)
,
Temperature
,
Heat
Status, Challenges, and Potential for Machine Learning in Understanding and Applying Heat Transfer Phenomena
J. Heat Transfer. December 2021, 143(12): 120802.
doi: https://doi.org/10.1115/1.4052510
Topics:
Artificial neural networks
,
Heat transfer
,
Machine learning
,
Modeling
,
Flow (Dynamics)
,
Algorithms
,
Physics
Research Papers
Bio-Heat and Mass Transfer
Analytical Investigation of Non-Fourier Bioheat Transfer in the Axisymmetric Living Tissue Exposed to Pulsed Laser Heating Using Finite Integral Transform Technique
J. Heat Transfer. December 2021, 143(12): 121201.
doi: https://doi.org/10.1115/1.4052155
Topics:
Bioheat transfer
,
Biological tissues
,
Heating
,
Lasers
,
Relaxation (Physics)
,
Temperature
,
Heat conduction
,
Blood
,
Energy generation
,
Temperature distribution
Evaporation, Boiling, and Condensation
Experimental Study of Pool Boiling Enhancement Using a Two-Step Electrodeposited Cu–GNPs Nanocomposite Porous Surface With R-134a
J. Heat Transfer. December 2021, 143(12): 121601.
doi: https://doi.org/10.1115/1.4052116
Topics:
Coatings
,
Electrodeposition
,
Nanocomposites
,
Pool boiling
,
Copper
,
Heating
,
Boiling
,
Refrigerants
,
Heat flux
,
Surface roughness
Genetic Algorithm and Deep Learning to Explore Parametric Trends in Nucleate Boiling Heat Transfer Data
J. Heat Transfer. December 2021, 143(12): 121602.
doi: https://doi.org/10.1115/1.4052435
Topics:
Algorithms
,
Genetic algorithms
,
Gravity (Force)
,
Heat flux
,
Nucleate boiling
,
Machine learning
,
Heat transfer
,
Errors
,
Pressure
,
Water
Forced Convection
A Numerical Investigation Into the Heat Transfer Performance and Particle Dynamics of a Compressible, Highly Mass Loaded, High Reynolds Number, Particle Laden Flow
J. Heat Transfer. December 2021, 143(12): 121801.
doi: https://doi.org/10.1115/1.4052437
Topics:
Flow (Dynamics)
,
Heat transfer
,
Particulate matter
,
Reynolds number
,
Temperature
,
Turbulence
,
Pipes
,
Solids
,
Temperature distribution
,
Nitrogen
Heat and Mass Transfer
Effect of Bath Agitation on the Transient Cooling by Quenching Process
J. Heat Transfer. December 2021, 143(12): 122101.
doi: https://doi.org/10.1115/1.4052006
Topics:
Cooling
,
Quenching (Metalworking)
,
Temperature
,
Turbulence
,
Kinetic energy
,
Propellers
Jets, Wakes, and Impingement Cooling
Numerical Investigation of Laminar Impinging Jet Cooling of a Protruded Heat Source
J. Heat Transfer. December 2021, 143(12): 122301.
doi: https://doi.org/10.1115/1.4052117
Topics:
Flow (Dynamics)
,
Fluids
,
Heat
,
Heat flux
,
Heat transfer
,
Kinetic energy
,
Diffusion (Physics)
,
Temperature distribution
,
Cooling
,
Nozzles
Melting and Solidification
Interfacial Heat Flux Estimation in a Funnel-Shaped Mould and Analysis of Solidification Characteristics in Thin Slab Continuous Casting
J. Heat Transfer. December 2021, 143(12): 122401.
doi: https://doi.org/10.1115/1.4052204
Topics:
Casting
,
Cooling
,
Heat flux
,
Heat transfer
,
Slabs
,
Solidification
,
Steel
,
Flow (Dynamics)
,
Temperature
Micro/Nanoscale Heat Transfer
Simulations With a Thermodynamically Consistent Model for Convective Transport in Nanofluids
J. Heat Transfer. December 2021, 143(12): 122501.
doi: https://doi.org/10.1115/1.4051601
Topics:
Fluids
,
Heat
,
Heat transfer
,
Nanofluids
,
Nanoparticles
,
Temperature
,
Thermal conductivity
,
Viscosity
,
Simulation
,
Flow (Dynamics)
Thermal Systems
Thermal Analysis and Parametric Investigation of Phase Change Material-Air Cooled Lithium Ion Battery Pack
J. Heat Transfer. December 2021, 143(12): 122901.
doi: https://doi.org/10.1115/1.4052154
Topics:
Batteries
,
Temperature
,
Simulation
,
Forced convection
,
Phase change materials
,
Engineering simulation
,
Cooling
,
Thermal analysis
,
Heat
,
Natural convection
Technical Brief
Flow Pattern Analysis and Heat Transfer Characteristics During Subcooled Flow Boiling in a Rectangular Microchannel on ZnO Microrod Surface
J. Heat Transfer. December 2021, 143(12): 124501.
doi: https://doi.org/10.1115/1.4052434
Topics:
Boiling
,
Bubbly flow
,
Flow (Dynamics)
,
Heat transfer
,
Heat transfer coefficients
,
Microchannels
,
Subcooling
,
Slug flows
,
Bubbles
,
Heat flux
Errata
Erratum: “On the Characterization of Lifting Forces During the Rapid Compaction of Deformable Porous Media” [ASME J. Heat Transfer-Trans. ASME, 2009, 131(10), p. 101006; DOI: 10.1115/1.3167543]
J. Heat Transfer. December 2021, 143(12): 127001.
doi: https://doi.org/10.1115/1.4052605
Topics:
Compacting
,
Heat
,
Porous materials