Skip Nav Destination
Proceedings Papers
Volume 2: Theory and Fundamental Research; Aerospace Heat Transfer; Gas Turbine Heat Transfer; Computational Heat Transfer
Theory and Fundamental Research
Study of Natural Convection in Volumetrically Heated Enclosures for Different Aspect Ratios and Prandtl Numbers
HT 2009; 11-18https://doi.org/10.1115/HT2009-88003
Topics:
Natural convection
,
Cavities
,
Flow (Dynamics)
,
Algorithms
,
Convection
,
Fluids
,
Oscillations
,
Rayleigh number
,
Steady state
Thermal Resistance of Silicon/Germanium Interfaces From Lattice Dynamics Calculations
HT 2009; 29-32https://doi.org/10.1115/HT2009-88025
Topics:
Germanium
,
Lattice dynamics
,
Silicon
,
Thermal resistance
,
Electromagnetic scattering
,
Phonons
,
Radiation scattering
,
Scattering (Physics)
,
Density
,
Design
Forced Convection Film Boiling Heat Transfer From Single Horizontal Cylinders in Saturated and Subcooled Liquids: Part 2—Experimental Data for Subcooled Liquids and Its Correlation
HT 2009; 39-54https://doi.org/10.1115/HT2009-88038
Topics:
Cylinders
,
Film boiling
,
Forced convection
,
Heat transfer
,
Subcooling
,
Flow (Dynamics)
,
Heat transfer coefficients
,
Water
,
Platinum
,
Pressure
An Interaction of Natural Convective Heat Transfer From Two Adjacent Isothermal Narrow Vertical and Inclined Flat Plates
HT 2009; 97-105https://doi.org/10.1115/HT2009-88091
Topics:
Convection
,
Flat plates
,
Plates (structures)
,
Prandtl number
,
Rayleigh number
,
Temperature
,
Buoyancy
,
Density
,
Finite volume methods
,
Flow (Dynamics)
Natural Convective Heat Transfer From an Array of Square Vertical Plates Mounted on a Large Plane Vertical Adiabatic Surface and With One High Heat Flux Element
HT 2009; 107-113https://doi.org/10.1115/HT2009-88093
Topics:
Convection
,
Heat flux
,
Vertical plates
,
Temperature
,
Flow (Dynamics)
,
Buoyancy
,
Computer cooling
,
Density
,
Fluids
,
Flux (Metallurgy)
Natural Convective Heat Transfer From an Inclined Isothermal Square Cylinder With an Exposed Top Surface Mounted on a Flat Adiabatic Base
HT 2009; 115-122https://doi.org/10.1115/HT2009-88094
Topics:
Convection
,
Cylinders
,
Temperature
,
Flow (Dynamics)
,
Fluids
,
Boundary-value problems
,
Buoyancy
,
Cooling
,
Density
,
Electronic components
Heat Transfer in Encased Graphene
HT 2009; 241-247https://doi.org/10.1115/HT2009-88370
Topics:
Graphene
,
Heat transfer
,
Heat
,
Graphite
,
Temperature
,
Thermal conductivity
,
Atoms
,
Contact resistance
,
Energy dissipation
,
Flat heat pipes
Effect of Relativistic Transformation Methods on the Solutions of the Damped Wave Conduction and Relaxation Equation in Semi-Infinite Medium
HT 2009; 339-349https://doi.org/10.1115/HT2009-88523
Topics:
Heat conduction
,
Relaxation (Physics)
,
Waves
,
Temperature
,
Transients (Dynamics)
,
Composite materials
,
Spacetime
,
Error functions
,
Errors
,
Heat flux
Thermal Conductivity of One-Dimensional Silicon-Germanium Alloy Nanowires
Yunki Gwak, Vinay Narayanunni, Sang-Won Jee, Anastassios A. Mavrokefalos, Michael T. Pettes, Jung-Ho Lee, Li Shi, Choongho Yu
HT 2009; 367-369https://doi.org/10.1115/HT2009-88563
Topics:
Alloys
,
Germanium
,
Nanowires
,
Silicon
,
Thermal conductivity
,
Energy conversion
,
Electrical conductivity
,
Mean free path
,
Nanostructures
,
Thermal properties
Using Infrared Thermography for Detecting Defects on Surfaces With Low and Variable Emissivity
HT 2009; 435-442https://doi.org/10.1115/HT2009-88645
Topics:
Emissivity
,
Flaw detection
,
Thermography
,
Radiation (Physics)
,
Computer software
,
Hardware
,
Radiative heat transfer
,
Sensors
,
Temperature
Aerospace Heat Transfer
Thermal Property Measurements of Carbon Nanotube Forest Synthesized by Thermal CVD Process
Qingjun Cai, Bing-chung Chen, Yuan Zhao, Julia Mack, Yanbao Ma, Chung-lung Chen, Hengzhi Wang, Zhifeng Ren
HT 2009; 443-449https://doi.org/10.1115/HT2009-88076
Topics:
Carbon nanotubes
,
Chemical vapor deposition
,
Lasers
,
Thermal properties
Mathematical Modeling of a Miniature Loop Heat Pipe With Two Evaporators and Two Condensers
HT 2009; 483-494https://doi.org/10.1115/HT2009-88243
Topics:
Condensers (steam plant)
,
Heat pipes
,
Modeling
,
Heat
,
Steady state
,
Transients (Dynamics)
,
Computers
,
Elevations (Drawings)
,
Fluids
,
Gravity (Force)
Impinging Jet on a Concave Surface for Aircraft Anti-Icing
HT 2009; 509-516https://doi.org/10.1115/HT2009-88512
Topics:
Aircraft
,
Wings
,
Ice
,
Temperature
,
Computer simulation
,
Fluids
,
Jets
,
Steady state
,
Temperature profiles
,
Three-dimensional models
Gas Turbine Heat Transfer
Study of the Effect of Turbulence Promoters in Circular Cooling Channels
N. Cristobal Uzarraga-Rodriguez, Armando Gallegos-Mun˜oz, J. Cuauhtemoc Rubio-Arana, Alfonso Campos-Amezcua, Mazur Zdzislaw
HT 2009; 539-551https://doi.org/10.1115/HT2009-88360
Topics:
Blades
,
Computational fluid dynamics
,
Cooling
,
Gas turbines
,
Turbulence
Measurements of Mean Heat Transfer Coefficients for Turbulent Forced Convection in a Rectangular Duct With Uniformly Spaced Plate Inserts
HT 2009; 573-582https://doi.org/10.1115/HT2009-88510
Topics:
Ducts
,
Forced convection
,
Heat transfer coefficients
,
Turbulence
,
Plates (structures)
,
Metals
,
Air flow
,
Aluminum
,
Brass (Metal)
,
Copper
Computational Heat Transfer
A Numerical Study of the Thermal Performance of Two Stationary Insert Designs in Internal Compressible Flows
HT 2009; 645-652https://doi.org/10.1115/HT2009-88102
Topics:
Buoyancy
,
Compressible flow
,
Flow (Dynamics)
,
Heat transfer
,
Design
,
Fluids
,
Pressure drop
,
Computational fluid dynamics
,
Convection
,
Fluid dynamics
Enhancement of Convective Heat Transfer in Internal Viscous Flows by Inserting Motionless Mixers
HT 2009; 653-665https://doi.org/10.1115/HT2009-88103
Topics:
Convection
,
Flow (Dynamics)
,
Heat exchangers
,
Shells
,
Temperature
,
Fluids
,
Heat transfer
,
Computational fluid dynamics
,
Cooling
,
Heating
A Numerical Investigation of Automobile Environment Through Cooling Period and Condensation
HT 2009; 745-751https://doi.org/10.1115/HT2009-88203
Topics:
Automobiles
,
Computational fluid dynamics
,
Condensation
,
Cooling
,
Fluid dynamics
,
Temperature
,
Vehicles
,
Design
,
Heat transfer
,
HVAC equipment
Multi-Level Heatsink Optimization
HT 2009; 807-814https://doi.org/10.1115/HT2009-88293
Topics:
Optimization
,
Heat
,
Temperature
,
Energy conservation
,
Microchannels
,
Momentum
,
Porous materials
,
Shapes
,
Thermal resistance
Mathematical Modelling of Fire and Smoke Characteristics in Ventilated Rooms
HT 2009; 815-822https://doi.org/10.1115/HT2009-88296
Topics:
Fire
,
Modeling
,
Smoke
,
Air flow
,
Computational fluid dynamics
,
Fans
,
Hazards
,
Heat
,
Space
,
Unsteady flow
An Investigation of Scale Variation in Multi-Layer Mini- and Micro-Channel Heat Sinks in Single Phase Flow Using a Two Equation Porous Media Model
HT 2009; 873-881https://doi.org/10.1115/HT2009-88423
Topics:
Flow (Dynamics)
,
Heat sinks
,
Microchannels
,
Porous materials
,
Cutting
,
Etching
,
Flux (Metallurgy)
,
Heat
,
Modeling
,
Pressure drop
Modeling of Free Convection Heat Transfer to a Supercritical Fluid in a Square Enclosure by the Lattice Boltzmann Method
HT 2009; 897-902https://doi.org/10.1115/HT2009-88463
Topics:
Heat transfer
,
Lattice Boltzmann methods
,
Modeling
,
Natural convection
,
Supercritical fluids
,
Cavity flows
,
Computation
,
Density
,
Gases
,
Heat
Calibration of the Sandia One-Dimensional Direct and Inverse Thermal (SODDIT) Code for Estimating Heat Flux to a Large Pipe Calorimeter in a Jet Fuel Fire
HT 2009; 943-949https://doi.org/10.1115/HT2009-88521
Topics:
Calibration
,
Fire
,
Heat flux
,
Jet fuels
,
Pipes
,
Containers
,
Fire testing
,
Radioactive substances
,
Safety
,
Spent nuclear fuels
Interfacial Thermal Transport in Carbon Nanotubes
HT 2009; 951-960https://doi.org/10.1115/HT2009-88554
Topics:
Carbon nanotubes
,
Wavelets
,
Chirality
,
Nanotubes
,
Phonons
,
Heat
,
High temperature
,
Molecular dynamics simulation
Investigating Double Diffusive Convection in an Inclined Rectangular Porous Enclosure Subjected to Magnetic Field
HT 2009; 997-1007https://doi.org/10.1115/HT2009-88638
Topics:
Convection
,
Magnetic fields
,
Buoyancy
,
Mass transfer
,
Temperature
,
Density
,
Finite difference methods
,
Flow (Dynamics)
,
Heat
,
Porous materials