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Issues
December 2020
ISSN 0098-2202
EISSN 1528-901X
In this Issue
Guest Editorial
Special Issue: To Commemorate the Legacy of Malcolm J. Andrews—Scientist, Educator, and Leader
J. Fluids Eng. December 2020, 142(12): 120301.
doi: https://doi.org/10.1115/1.4048350
Topics:
Engineering teachers
,
Fluids engineering
,
Heat transfer
Review Articles
Rayleigh-Taylor Instability: A Status Review of Experimental Designs and Measurement Diagnostics
J. Fluids Eng. December 2020, 142(12): 120801.
doi: https://doi.org/10.1115/1.4048349
Topics:
Density
,
Experimental design
,
Flow (Dynamics)
,
Fluids
,
Rayleigh-Taylor instability
,
Statistics
,
Bubbles
,
Water
,
Turbulence
,
Buoyancy
Progress on Understanding Rayleigh–Taylor Flow and Mixing Using Synergy Between Simulation, Modeling, and Experiment
J. Fluids Eng. December 2020, 142(12): 120802.
doi: https://doi.org/10.1115/1.4048518
Topics:
Engineering simulation
,
Flow (Dynamics)
,
Modeling
,
Simulation
,
Turbulence
,
Computer simulation
,
Density
,
Rockets
,
Water
Special Papers
Experiments and Simulations on the Turbulent, Rarefaction Wave Driven Rayleigh–Taylor Instability
J. Fluids Eng. December 2020, 142(12): 121101.
doi: https://doi.org/10.1115/1.4048345
Topics:
Simulation
,
Turbulence
,
Waves
,
Bubbles
,
Rayleigh-Taylor instability
Scalar Power Spectra and Scalar Structure Function Evolution in the Richtmyer–Meshkov Instability Upon Reshock
Christopher D. Noble, Josh M. Herzog, David A. Rothamer, Alex M. Ames, Jason Oakley, Riccardo Bonazza
J. Fluids Eng. December 2020, 142(12): 121102.
doi: https://doi.org/10.1115/1.4048344
Topics:
Scalars
,
Shock (Mechanics)
,
Spectra (Spectroscopy)
,
Shock tubes
,
Fluorescence
,
Helium
,
Shear (Mechanics)
Rayleigh–Taylor Instability With Varying Periods of Zero Acceleration
J. Fluids Eng. December 2020, 142(12): 121103.
doi: https://doi.org/10.1115/1.4048348
Topics:
Density
,
Flow (Dynamics)
,
Fluids
,
Rayleigh-Taylor instability
,
Shock (Mechanics)
,
Kinetic energy
,
Bubbles
Dependence of Enstrophy Transport and Mixed Mass on Dimensionality and Initial Conditions in the Richtmyer–Meshkov Instability Induced Flows
J. Fluids Eng. December 2020, 142(12): 121104.
doi: https://doi.org/10.1115/1.4048343
Topics:
Computation
,
Density
,
Flow (Dynamics)
,
Vortices
,
Dimensions
Shear Effects on Scalar Transport in Double Diffusive Convection
J. Fluids Eng. December 2020, 142(12): 121105.
doi: https://doi.org/10.1115/1.4048342
Topics:
Convection
,
Flow (Dynamics)
,
Fluids
,
Scalars
,
Shear (Mechanics)
,
Simulation
,
Temperature
,
Flux (Metallurgy)
,
Heat
Pulsating Flow Past a Square Cylinder: Analysis of Force Coefficient Spectra and Vortex Structure Development
J. Fluids Eng. December 2020, 142(12): 121106.
doi: https://doi.org/10.1115/1.4048347
Topics:
Cycles
,
Cylinders
,
Flow (Dynamics)
,
Locks (Waterways)
,
Spectra (Spectroscopy)
,
Vortices
,
Vorticity
Early Time Modifications to the Buoyancy-Drag Model for Richtmyer–Meshkov Mixing
J. Fluids Eng. December 2020, 142(12): 121107.
doi: https://doi.org/10.1115/1.4048346
Topics:
Buoyancy
,
Drag (Fluid dynamics)
,
Simulation
,
Turbulence
A Comparison of Interface Growth Models Applied to Rayleigh–Taylor and Richtmyer–Meshkov Instabilities
J. Fluids Eng. December 2020, 142(12): 121108.
doi: https://doi.org/10.1115/1.4048341
Topics:
Bubbles
,
Compressible flow
,
Computer simulation
,
Flow (Dynamics)
,
Fluids
,
Simulation
,
Standing waves
,
Turbulence
,
Vorticity
,
Waves
Normal Stress Differences of Human Blood in Unidirectional Large-Amplitude Oscillatory Shear Flow
J. Fluids Eng. December 2020, 142(12): 121109.
doi: https://doi.org/10.1115/1.4048467
Topics:
Blood
,
Stress
,
Shear flow
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