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Development of a two-dimensional overland flow model using the Lagrangian-Eulerian finite element method
J. R.C. Cheng,
G. T. Yeh
, H. C. Lin
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Keyphrases
Eulerian Finite Element Method
100%
Eulerian-Lagrangian
100%
Two Dimensional
100%
Overland Flow
100%
Overland Flow Model
100%
Momentum Equation
60%
Continuity Equation
40%
Rainfall
20%
Flow Problems
20%
Galerkin Finite Element Method
20%
Subsurface Flow
20%
Advection
20%
Numerical Scheme
20%
Eulerian-Lagrangian Method
20%
Rainfall Infiltration
20%
Two-dimensional Hydrodynamic Model
20%
Infiltration
20%
Spatial Variability
20%
Governing Equation
20%
Eulerian-Lagrangian Approach
20%
Poisson Equation
20%
Stability Problem
20%
Convergence Problem
20%
Eulerian Approach
20%
Extra Effort
20%
Chalkboard
20%
Kinematic Wave Equation
20%
Convective Acceleration
20%
Engineering
Flow Model
100%
Two Dimensional
100%
Finite Element Analysis
100%
Momentum Equation
75%
Rainfall Infiltration
50%
Eulerian Approach
50%
Convective
25%
Flow Problem
25%
Subsurface
25%
One Dimensional
25%
Numerical Scheme
25%
Numerical Approach
25%
Eulerian Method
25%
Continuity Equation
25%
Spatial Variation
25%
Hydrodynamic Model
25%
Equation of Continuity
25%
Dimensional Domain
25%
Convergence Problem
25%
Advection
25%
Earth and Planetary Sciences
Overland Flow
100%
Subsurface Flow
14%
Advection
14%
Spatial Variation
14%
Continuity Equation
14%
Wave Equation
14%