Engineering
Finite Element Method
100%
Multiscale
96%
Detached Eddy Simulation
69%
Fluid-Structure Interaction
53%
Computational Fluid Dynamics
50%
Fracture Mechanics
38%
Moving Mesh
35%
Computer Simulation
35%
Ice Accretion
30%
Wind Engineering
30%
Navier-Stokes Equation
30%
Accurate Prediction
30%
Heat Flux
30%
Irregular Shape
30%
Nodes
28%
Advection
24%
Crack Propagation
23%
Tall Buildings
21%
Boundary Layer
20%
Galerkin Formulation
19%
Finite Element Formulation
17%
Modal Analysis
15%
Wind Induced Vibration
15%
Cylinder Configurations
15%
Supersonic Flow
15%
Vortex
15%
Adaptive Mesh
15%
Rise Building
15%
Icing Condition
15%
Carbon-Fiber-Reinforced Plastic
15%
Application Performance
15%
Diffusion Equation
15%
Scalar Field
15%
Mesh Velocity
15%
Determines
15%
Accretion of Ice
15%
Element Airfoil
15%
Helicopter Blade
15%
Unsteady Flow
15%
Airfoil
15%
Numerical Experiment
15%
Experimental Result
15%
Internals
15%
File System
15%
Execution Time
15%
Aggregator
15%
Solid-Fluid Interaction
15%
Performance Improvement
15%
Aerodynamic Coefficient
15%
Fluid Domain
12%
Keyphrases
Streamline Upwind Petrov-Galerkin
23%
Spalart-Allmaras Turbulence Model
19%
Detached Eddy Simulation
19%
Crack Propagation
15%
Helicopter
15%
Unsteady Wind
15%
Wind-induced Vibration
15%
Icing
15%
Aerodynamic Degradation
15%
Linear Fracture Mechanics
15%
Ice Shape
15%
Fluid-solid Interaction
15%
Computational Fluid Dynamics Analysis
15%
High-rise Building
15%
Interaction Approach
15%
Helicopter Blade
15%
Ice Breakup
15%
3D FEM
15%
Fast Fourier Transform
15%
Moving-boundary Flow
15%
Flow-structure Interactions
15%
Cray XC40
15%
FEM Analysis
15%
Cone-cylinder
15%
Mesh Movement
15%
Mesh Deformation
15%
Pseudospectrum
15%
Movement Scheme
15%
Generalized multiscale Finite Element Method (GMsFEM)
15%
Iced Airfoil
15%
Ice Accretion
15%
Galerkin Least-squares Method
15%
Computational Wind Engineering
15%
Multiscale Method
15%
Lack of Stability
11%
Arbitrary Lagrangian-Eulerian Method
10%