Earth and Planetary Sciences
Preserving
100%
Utilization
100%
Extension
100%
Efficiency
100%
Kinetic Energy
66%
Navier-Stokes Equation
66%
Mathematical Method
66%
Research
66%
Decay Rate
33%
Field Method
33%
Order
33%
Experience
33%
Parallel Computer
33%
Constraint
33%
Mesh
33%
Turbulence
33%
Linear Systems
33%
Amount
33%
Size
33%
Addition
33%
Goal
33%
Large Eddy Simulation
33%
Feasibility
33%
Instructors
33%
INIS
applications
100%
efficiency
100%
navier-stokes equations
66%
helicity
66%
kinetic energy
66%
levels
33%
power
33%
drawing
33%
turbulence
33%
demand
33%
decay
33%
hybridization
33%
partial differential equations
33%
evolution equations
33%
space
33%
cost
33%
grids
33%
solutions
33%
size
33%
large-eddy simulation
33%
modeling
33%
complement
33%
Engineering
Computational Efficiency
100%
Element Method
100%
Development
62%
Application
37%
Numerical Methods
25%
Research
25%
Fields
25%
Navier-Stokes Equation
25%
Energy Engineering
25%
Condition Number
12%
Discretization
12%
Limitations
12%
Large Eddy Simulation
12%
Nucleic Acid Hybridization
12%
Turbulence
12%
Field Method
12%
Physical Variable
12%
Deep Understanding
12%
Mesh
12%
Instructor
12%
Computational Power
12%
Basis Function
12%
Specific Area
12%
Dimensional Function
12%
Dual Basis
12%
Computational Cost
12%
Material Science
Turbulence
100%
Large Eddy Simulation
100%
Field Research
100%
Keyphrases
Dual-field
25%
Weak Solution
12%