Keyphrases
Three-dimensional (3D)
100%
Long Term Evolution
100%
High Reynolds number
100%
Taylor-Green Vortex
100%
High-resolution
60%
Weakly Compressible
60%
Subgrid-scale Model
60%
Turbulent Flow
40%
Large Eddy Simulation
40%
Implicit Large Eddy Simulation
40%
Isotropic State
40%
Highly Accurate
20%
High-order
20%
Prediction Accuracy
20%
Low Computational Complexity
20%
Physical Consistency
20%
Extended Period
20%
Finite Volume Method
20%
Direct numerical Simulation
20%
Simulation Prediction
20%
Flow Modeling
20%
Numerical Simulation Data
20%
Shock Capturing
20%
Vortex Flow
20%
Self-similarity
20%
Low Modes
20%
Non-oscillatory
20%
Flow Transition
20%
Quasi-isotropic
20%
High Re
20%
Dissipation Rate
20%
Finite Reynolds number
20%
Incompressibility
20%
Laminar-turbulent Transition
20%
Inertial Subrange
20%
Weakly Compressible Flows
20%
Energy Redistribution
20%
Engineering
Vortex
100%
High Reynolds Number
100%
High Resolution
75%
Turbulent Flow
50%
Scale Model
50%
Accurate Prediction
25%
Oscillatory
25%
Finite Volume Method
25%
Dissipation Rate
25%
Reynolds' Number
25%
Compressible Flow
25%
Vortex Flow
25%
Extended Period
25%
Macroscopic Energy
25%
Inertial Subrange
25%
Computational Cost
25%
Periodic Time
25%
Reference Data
25%
Direct Numerical Simulation
25%
Laminar-Turbulent Transition
25%
Earth and Planetary Sciences
Turbulent Flow
100%
High Reynolds Number
100%
Scale Model
100%
Data Simulation
50%
Incompressibility
50%
Vortex
50%
Reynolds Number
50%
Flow Modeling
50%
Laminar-Turbulent Transition
50%
Mathematics
Time Evolution
100%
Reynolds Number
100%
Scale Model
66%
Computational Cost
33%
Periodic Time
33%
Mathematical Complexity
33%
Accurate Prediction
33%
Finite Volume Method
33%
Dissipation Rate
33%
Incompressibility
33%
Computer Science
Reynolds Number
100%
Reference Data
33%
Finite Volume Method
33%
Numerical Simulation
33%
Computational Cost
33%
Dissipation Rate
33%
Material Science
Vortex
100%
Large Eddy Simulation
80%
Turbulent Flow
40%
Compressible Flow
20%