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Proceedings Papers
Volume 1: Micro/Nanofluidics and Lab-on-a-Chip; Nanofluids; Micro/Nanoscale Interfacial Transport Phenomena; Micro/Nanoscale Boiling and Condensation Heat Transfer; Micro/Nanoscale Thermal Radiation; Micro/Nanoscale Energy Devices and Systems
Micro/Nanofluidics and Lab-on-a-Chip
Mesoscopic Analysis of Droplet Spreading Behaviour on Wetted Surface for Low Viscosity Ratio
MNHT 2016; V001T01A005https://doi.org/10.1115/MNHMT2016-6492
Topics:
Drops
,
Mesoscopic systems
,
Viscosity
,
Displacement
,
Dynamics (Mechanics)
,
Gravity (Force)
,
Lattice Boltzmann methods
,
Microchannels
,
Physics
,
Wetting
High Performance Beam Steering via Tunable Liquid Prisms
MNHT 2016; V001T01A008https://doi.org/10.1115/MNHMT2016-6580
Topics:
Prisms (Optics)
,
Fluids
,
Water
,
Microfluidics
,
Refractive index
,
Shapes
Mixing Simulations of a Wankel Pump as a Micromixer
MNHT 2016; V001T01A009https://doi.org/10.1115/MNHMT2016-6654
Topics:
Engineering simulation
,
Pumps
,
Simulation
,
Flow (Dynamics)
,
Geometry
,
Scalars
,
Vortices
Experimental and Numerical Studies of Fluid Flow Confined in Microchannel
MNHT 2016; V001T01A010https://doi.org/10.1115/MNHMT2016-6671
Topics:
Fluid dynamics
,
Microchannels
,
Ethanol
,
Water
,
Fluids
,
Friction
,
Heat flux
,
Heat transfer
,
Reynolds number
,
Temperature
Droplet Fission in Non-Newtonian Multiphase System Using Bilayer Bifurcated Microchannel
MNHT 2016; V001T01A011https://doi.org/10.1115/MNHMT2016-6709
Topics:
Drops
,
Microchannels
,
Nuclear fission
,
Flow (Dynamics)
,
Junctions
,
Disperse systems
,
Emulsions
,
Non-Newtonian fluids
,
Shear (Mechanics)
,
Biological tissues
High Throughput Cell-Free Extraction of Plasma by an Integrated Microfluidic Device Combining Inertial Microfluidics and Membrane
MNHT 2016; V001T01A012https://doi.org/10.1115/MNHMT2016-6717
Topics:
Membranes
,
Microfluidics
,
Plasmas (Ionized gases)
,
Blood
,
Filters
,
Contamination
,
Filtration
,
Proteins
Nanofluids
Experimental Study on Al2O3/H2O Nanofluid Flow Boiling Heat Transfer Under Different Pressures
MNHT 2016; V001T02A002https://doi.org/10.1115/MNHMT2016-6339
Topics:
Boiling
,
Flow (Dynamics)
,
Heat transfer
,
Nanofluids
,
Water
,
Heating
,
Nanoparticles
,
Pressure
,
Heat flux
,
Oscillations
The Lattice Boltzmann Investigation for the Melting Process of Phase Change Material in an Inclining Cavity
MNHT 2016; V001T02A004https://doi.org/10.1115/MNHMT2016-6343
Topics:
Cavities
,
Lattice Boltzmann methods
,
Melting
,
Phase change materials
,
Rotation
,
Heat flux
,
Temperature
,
Engineering simulation
,
Heat
,
Phase transitions
Effect of Temperature on Rheology and Nanoparticle Movements of Water Based Nanofluids by Molecular Dynamics Simulation
MNHT 2016; V001T02A005https://doi.org/10.1115/MNHMT2016-6393
Topics:
Molecular dynamics simulation
,
Nanofluids
,
Nanoparticles
,
Rheology
,
Temperature
,
Water
,
Fluids
,
Heat transfer
,
Simulation
,
Cooling systems
Experimental Investigation on the Heat Transferring of Nanofluid in Self-Exciting Mode Oscillating-Flow Heat
MNHT 2016; V001T02A006https://doi.org/10.1115/MNHMT2016-6400
Topics:
Flow (Dynamics)
,
Heat
,
Nanofluids
,
Heat pipes
,
Water
,
Fluids
,
Brass (Metal)
,
Heat transfer
,
Heating
,
Condensation
Molecular Dynamics Simulation on the Effect of Micro-Motions of Nanoparticles in Heat Transfer Enhancement of Nanofluids
MNHT 2016; V001T02A007https://doi.org/10.1115/MNHMT2016-6451
Topics:
Heat transfer
,
Molecular dynamics simulation
,
Nanofluids
,
Nanoparticles
,
Flow (Dynamics)
,
Fluids
,
Shear (Mechanics)
,
Shear flow
,
Atoms
,
Copper
Nanoparticle Motion and Deposition Pattern From Evaporating Binary Droplets
MNHT 2016; V001T02A008https://doi.org/10.1115/MNHMT2016-6477
Topics:
Drops
,
Evaporation
,
Nanoparticles
,
Ethanol
,
Flow (Dynamics)
,
Particulate matter
,
Drying
,
Vapors
,
Vortices
,
Water
Confined Jet Array Impingement Cooling Using NEPCM Nanofluids
MNHT 2016; V001T02A009https://doi.org/10.1115/MNHMT2016-6531
Topics:
Impingement cooling
,
Nanofluids
,
Temperature
,
Heat capacity
,
Heat transfer coefficients
,
Collisions (Physics)
,
Fluids
,
Heat transfer
,
Heating
,
Jets
Experimental Investigation on Solar Thermal Properties of Magnetic Nanofluids for Direct Absorption Solar Collector
MNHT 2016; V001T02A011https://doi.org/10.1115/MNHMT2016-6620
Topics:
Absorption
,
Nanofluids
,
Solar collectors
,
Solar energy
,
Thermal properties
,
Magnetic fields
,
Water
,
Sunlight
,
Temperature
Micro/Nanoscale Interfacial Transport Phenomena
First Principles Study of Thermal Conductance Across Cu/Graphene/Cu Nanocomposition and the Effect of Hydrogenation
MNHT 2016; V001T03A002https://doi.org/10.1115/MNHMT2016-6318
Topics:
Graphene
,
Thermal conductivity
,
Atoms
,
Hydrogen
,
Density functional theory
,
Electrons
,
Equilibrium (Physics)
,
Heat
,
Phonons
,
Separation (Technology)
Suppression of Frost Propagation With Micropillar Structure Engineered Surface
MNHT 2016; V001T03A003https://doi.org/10.1115/MNHMT2016-6402
Topics:
Condensation
,
Condensed matter
,
Design
,
Durability
,
Freezing
,
Ice
,
Surface roughness
,
Sustainability
Thermal Management in Silicene Nanosheets With Designed Cavities by Molecular Dynamic Simulations
MNHT 2016; V001T03A004https://doi.org/10.1115/MNHMT2016-6487
Topics:
Cavities
,
Engineering simulation
,
Molecular dynamics
,
Simulation
,
Thermal management
,
Thermal rectification
,
Design
,
Phonons
,
Honeycomb structures
,
Reflection
Characterization of Thermal Resistances Across CVD-Grown Graphene/Al2O3 and Graphene/Metal Interfaces Using Differential 3-Omega Technique
Daniel Josephus Villaroman, Weijing Dai, Xinjiang Wang, Lin Gan, Ruizhe Wu, Zhengtang Luo, Baoling Huang
MNHT 2016; V001T03A005https://doi.org/10.1115/MNHMT2016-6508
Topics:
Chemical vapor deposition
,
Graphene
,
Metals
,
Annealing
,
Bonding
,
Gates (Closures)
,
Heat
,
Anisotropy
,
Electrical conductance
,
Fittings
Particulate Fouling and Mitigation Approach in Microchannel Heat Exchanger
MNHT 2016; V001T03A007https://doi.org/10.1115/MNHMT2016-6628
Topics:
Heat exchangers
,
Microchannels
,
Particulate matter
,
Microparticles
,
Temperature
,
Density
,
Design
,
Flow (Dynamics)
,
Fluids
,
Manufacturing
Force Analysis of Bubble Dynamics in Flow Boiling Silicon Nanowire Microchannels
Tamanna Alam, Wenming Li, Fanghao Yang, Ahmed Shehab Khan, Yan Tong, Jamil Khan, Jing Li, Zuankai Wang, Chen Li
MNHT 2016; V001T03A009https://doi.org/10.1115/MNHMT2016-6714
Topics:
Boiling
,
Bubbles
,
Dynamics (Mechanics)
,
Flow (Dynamics)
,
Microchannels
,
Nanowires
,
Silicon
,
Heat transfer
,
Vapors
,
Surface tension
Effect of Porous Wettability on the Bubble Penetrability and Gas-Liquid Separation Character
MNHT 2016; V001T03A010https://doi.org/10.1115/MNHMT2016-6722
Topics:
Bubbles
,
Separation (Technology)
,
Flow (Dynamics)
,
Two-phase flow
,
Copper
,
Gravity (Force)
,
Heat transfer
,
Metals
,
Oxidation
,
Porous materials
Effect of Heat Sink Structure Improvement on Heat Dissipation Performance in High Heat Flux
MNHT 2016; V001T03A011https://doi.org/10.1115/MNHMT2016-6726
Topics:
Energy dissipation
,
Heat
,
Heat flux
,
Heat sinks
,
Temperature
,
Cooling
,
Fins
,
Flow (Dynamics)
,
Water
,
Convection
Design of Open System of Loop Heat Pipe Experimental Rig for Phase Change Driving Force and Visual Experiment Study
MNHT 2016; V001T03A012https://doi.org/10.1115/MNHMT2016-6727
Topics:
Design
,
Heat pipes
,
Refrigerants
,
Boiling
,
Cavities
,
Evaporation
,
Flow (Dynamics)
,
Heat transfer
,
Heating
,
Separation (Technology)
Experimental Research of Shell and Tube Condenser With the Middle Liquid Separation Structure
MNHT 2016; V001T03A013https://doi.org/10.1115/MNHMT2016-6728
Topics:
Condensers (steam plant)
,
Separation (Technology)
,
Shells
,
Pipes
,
Condensation
,
Heat transfer
,
Steam
,
Condensed matter
,
Entrance region
,
Flow (Dynamics)
Micro/Nanoscale Boiling and Condensation Heat Transfer
Numerical and Experimental Investigation of Bubble Dynamics via Electrowetting-on-Dielectric (EWOD)
MNHT 2016; V001T04A003https://doi.org/10.1115/MNHMT2016-6465
Topics:
Bubbles
,
Dynamics (Mechanics)
,
Electric fields
,
Electrodes
,
Thin films
,
Drops
,
Electrostatics
,
Metals
,
Particle spin
,
Plasma desorption mass spectrometry
On the Operational Parameters Effects on Two-Phase Pressure Drop Characteristics of Reentrant Copper Microchannels
MNHT 2016; V001T04A004https://doi.org/10.1115/MNHMT2016-6514
Topics:
Copper
,
Microchannels
,
Pressure drop
,
Heat
,
Flux (Metallurgy)
,
Heat sinks
,
Boiling
,
Coolants
,
Cooling systems
,
Ethanol
Enhanced Pool Boiling Heat Transfer on Mono and Multi-Layer Micro-Nano Bi-Porous Copper Surfaces
MNHT 2016; V001T04A005https://doi.org/10.1115/MNHMT2016-6544
Topics:
Copper
,
Heat transfer
,
Pool boiling
,
Heat flux
,
Bubbles
,
Aerospace industry
,
Boiling
,
Caves
,
Critical heat flux
,
Heart failure
Effect of Surface Wettability on Dropwise Condensation Using Lattice Boltzmann Method
MNHT 2016; V001T04A006https://doi.org/10.1115/MNHMT2016-6566
Topics:
Condensation
,
Lattice Boltzmann methods
,
Drops
,
Dynamics (Mechanics)
,
Engineering simulation
,
Heat transfer
,
Nucleation (Physics)
,
Simulation
,
Cooling
,
Fluids
Effects of Surface Wetting Characteristics on Start-Up Performance of an Oscillating Heat Pipe
MNHT 2016; V001T04A007https://doi.org/10.1115/MNHMT2016-6596
Topics:
Heat pipes
,
Wetting
,
Bubbles
,
Copper
,
Evaporation
,
Vapors
,
Fluctuations (Physics)
,
Heat
,
Heat transfer
,
Nucleate boiling
Enhanced Nucleate Pool Boiling From Microstructured Surfaces Fabricated by Selective Laser Melting
MNHT 2016; V001T04A008https://doi.org/10.1115/MNHMT2016-6616
Topics:
Lasers
,
Melting
,
Nucleate pool boiling
,
Heat transfer
,
Cavities
,
Flux (Metallurgy)
,
Heat
,
Heat transfer coefficients
,
Manufacturing
,
Pool boiling
Enhanced Flow Boiling in Microchannels Using Auxiliary Channels and Multiple Micronozzles
MNHT 2016; V001T04A010https://doi.org/10.1115/MNHMT2016-6712
Topics:
Boiling
,
Flow (Dynamics)
,
Microchannels
,
Micronozzles
,
Nozzles
,
Nucleation (Physics)
,
Oscillations
,
Design
,
Heat transfer coefficients
,
Pressure drop
Orientation Effects on Flow Boiling Silicon Nanowire Microchannels
MNHT 2016; V001T04A011https://doi.org/10.1115/MNHMT2016-6713
Topics:
Boiling
,
Flow (Dynamics)
,
Microchannels
,
Nanowires
,
Silicon
,
Heat transfer
,
Bubbles
,
Critical heat flux
,
Evaporation
,
Forced convection
Micro/Nanoscale Thermal Radiation
Optimum Structural Design of Thermal Protection Using Photonic Crystal Material Considering Thermophysical Properties in Micro/Nanoscale
MNHT 2016; V001T05A002https://doi.org/10.1115/MNHMT2016-6352
Topics:
Crystals
,
Nanoscale phenomena
,
Structural optimization
,
Aircraft
,
Energy gap
,
Waves
,
Design
,
Electromagnetic fields
,
Mach number
Performance Analysis of Near-Field Thermophotovoltaic With a Multilayer Metallodielectric Emitter
MNHT 2016; V001T05A005https://doi.org/10.1115/MNHMT2016-6471
Topics:
Coating processes
,
Coatings
,
Electricity (Physics)
,
Electrodes
,
Electrodynamics
,
Energy conversion
,
Energy gap
,
Heat flux
,
Photons
,
Photovoltaic cells
Infrared Absorption Characteristics Analysis for Square Loop Nanostructure of Al Substrate
MNHT 2016; V001T05A007https://doi.org/10.1115/MNHMT2016-6551
Topics:
Absorption
,
Design
,
Magnetic resonance
,
Aluminum
,
Excitation
,
Wavelength
,
Waves
Accurate Geometry Design of Magnetic Polariton With Specified Resonance Wavelength: A Combined LC Circuit Model and Inverse Technique
MNHT 2016; V001T05A008https://doi.org/10.1115/MNHMT2016-6581
Topics:
Circuits
,
Design
,
Geometry
,
Polaritons
,
Resonance
,
Wavelength
,
Algorithms
,
Particle swarm optimization
,
Absorption
,
Surface roughness
Numerical Simulation on the Performance of Nanofluid-Based Direct Absorption Solar Collector With Parabolic Trough Concentrator
MNHT 2016; V001T05A012https://doi.org/10.1115/MNHMT2016-6647
Topics:
Absorption
,
Computer simulation
,
Nanofluids
,
Parabolic troughs
,
Solar collectors
,
Heat transfer
,
Weight (Mass)
,
Fluids
,
Low temperature
,
Radiation (Physics)
Low-Directivity Quasi-Monochromatic Thermal Radiation From Microcavities Covered by Thin Metal Film
MNHT 2016; V001T05A013https://doi.org/10.1115/MNHMT2016-6683
Topics:
Metallic films
,
Thermal radiation
,
Q-factor
,
Absorption
,
Absorption spectra
,
Cavities
,
Cavity walls
,
Computer simulation
,
Thin films
,
Transparency
Improved Thermal Emitters for Thermophotovoltaic Energy Conversion
Veronika Stelmakh, Walker R. Chan, John D. Joannopoulos, Marin Soljacic, Ivan Celanovic, Kimberly Sablon
MNHT 2016; V001T05A015https://doi.org/10.1115/MNHMT2016-6698
Topics:
Energy conversion
,
Crystals
,
Emissions
,
Energy gap
,
Heat
,
High temperature
,
Light emission
,
Manufacturing
,
Refractory metals
,
Thermal stability
Micro/Nanoscale Energy Devices and Systems
Fluorine-Induced Superhydrophilic TiO2 Nanotube Arrays
MNHT 2016; V001T06A001https://doi.org/10.1115/MNHMT2016-6328
Topics:
Nanotubes
,
Titanium
,
Boiling
,
Critical heat flux
,
Heat transfer
,
Atoms
,
Delays
,
Design
,
Electrolytes
,
Manufacturing
Light-Harvesting and Photon Management in GaAs Solar Cells for Photovoltaic-Thermoelectric Hybrid Systems
MNHT 2016; V001T06A003https://doi.org/10.1115/MNHMT2016-6357
Topics:
Gallium arsenide
,
Photons
,
Solar cells
,
Absorption
,
Solar energy
,
Design
,
Energy gap
,
Finite difference time-domain analysis
,
Photovoltaics
,
Reflection
Rarefaction Effects on Gas Mixing in Micro- and Nanoscales
MNHT 2016; V001T06A004https://doi.org/10.1115/MNHMT2016-6604
Topics:
Computation
,
Diffusion (Physics)
,
Fluctuations (Physics)
,
Flux (Metallurgy)
,
Heat
,
Knudsen number
,
Momentum
,
Pressure
,
Shapes
,
Simulation
A Thermophotovoltaic System Using a Photonic Crystal Emitter
Walker R. Chan, Veronika Stelmakh, Marin Soljacic, John D. Joannopoulos, Ivan Celanovic, Christopher M. Waits
MNHT 2016; V001T06A005https://doi.org/10.1115/MNHMT2016-6695
Topics:
Crystals
,
Fuels
,
Combustion
,
Electronics
,
Emissivity
,
Energy gap
,
Fuel cells
,
Generators
,
Light emission
,
Photovoltaic cells
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