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A Study of the Transition to Turbulence in a Bed of 67 Spherical Pebbles
David Reger
,
Elia Merzari
, Tri Nguyen
, Yu Hsiang Lan
, Paul Fischer
, Yassin Hassan
Ken and Mary Alice Lindquist Department of Nuclear Engineering
Institute for Computational and Data Sciences (ICDS)
Research output
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Article
›
peer-review
2
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Keyphrases
Reynolds number
100%
Pebbles
100%
Pebble Bed Reactor
100%
Transition to Turbulence
100%
Turbulent Kinetic Energy
66%
Turbulence
66%
Engineering Application
33%
Flow Data
33%
High Reynolds number
33%
Chemical Engineering
33%
Contact Point
33%
Complex Geometry
33%
Process Engineering
33%
Direct numerical Simulation
33%
Prandtl number
33%
Reactor Systems
33%
Spatial Development
33%
Engineering Systems
33%
Flow Physics
33%
Turbulent Heat Flux
33%
Generation IV Reactors
33%
Turbulence Anisotropy
33%
Engineering
Reynolds' Number
100%
Packed Bed
100%
Pebble Bed Reactor
100%
Turbulent Kinetic Energy
66%
Engineering
33%
Engineering Application
33%
Data Flow
33%
High Reynolds Number
33%
Chemical Engineering
33%
Contact Point
33%
Prandtl Number
33%
Reactor System
33%
Process Engineering
33%
Flow Physic
33%
Heat Flux
33%
Direct Numerical Simulation
33%
Generation IV Nuclear Reactor
33%
Anisotropy
33%
Chemical Engineering
Chemical Kinetics Characteristics
100%
Chemical Engineering
50%
Heat Flux
50%
Prandtl Number
50%
Process Engineering
50%
Anisotropy
50%
Computer Simulation
50%