This paper presents an a posteriori approach to unstructured mesh generation via a localized truncation error analysis and applies it to the Western North Atlantic Tidal (WNAT) model domain. The WNAT model domain encompasses the Gulf of Mexico, the Caribbean Sea, and the North Atlantic Ocean east to the 60°W Meridian. Herein, we pay particular attention to the area surrounding the Bahamas. A bathymetric data set with fine resolution is employed in seven separate linear, harmonic simulations of shallow water tidal flow for seven different tidal-forcing constituents. Each set of simulation results is used to perform a truncation error analysis of a linear, harmonic form of the depth-averaged momentum equations for each of the seven different ...
Unstructured mesh methods offer flexibility in representing variable coastlines and bathymetries in ...
International audienceDownscaling physical processes from a large scale to a regional scale 3D model...
A two-dimensional, depth-integrated tidal model for the Loxahatchee River estuary (Southeastern Flor...
This paper presents an a posteriori approach to unstructured mesh generation via a localized truncat...
A method for computing target element size for tidal, shallow water flow is developed and demonstrat...
A method for computing target element size for tidal, shallow water flow is developed and demonstrat...
The successful implementation of a finite element model for computing shallow-water flow requires th...
An enhanced version of our localized truncation error analysis with complex derivatives (LTEA-CD) a ...
An enhanced version of our localized truncation error analysis with complex derivatives (LTEA-CD) a ...
Localized truncation error analysis with complex derivatives was applied to compute target element s...
Recently, a highly resolved, finite element mesh was developed for the purpose of performing hydrody...
Localized truncation error analysis with complex derivatives was applied to compute target element s...
A new methodology for the determination of target element sizes for the construction of finite eleme...
An automated procedure is described for the production of unstructured, finite element meshes to per...
An automated procedure is described for the production of unstructured, finite element meshes to per...
Unstructured mesh methods offer flexibility in representing variable coastlines and bathymetries in ...
International audienceDownscaling physical processes from a large scale to a regional scale 3D model...
A two-dimensional, depth-integrated tidal model for the Loxahatchee River estuary (Southeastern Flor...
This paper presents an a posteriori approach to unstructured mesh generation via a localized truncat...
A method for computing target element size for tidal, shallow water flow is developed and demonstrat...
A method for computing target element size for tidal, shallow water flow is developed and demonstrat...
The successful implementation of a finite element model for computing shallow-water flow requires th...
An enhanced version of our localized truncation error analysis with complex derivatives (LTEA-CD) a ...
An enhanced version of our localized truncation error analysis with complex derivatives (LTEA-CD) a ...
Localized truncation error analysis with complex derivatives was applied to compute target element s...
Recently, a highly resolved, finite element mesh was developed for the purpose of performing hydrody...
Localized truncation error analysis with complex derivatives was applied to compute target element s...
A new methodology for the determination of target element sizes for the construction of finite eleme...
An automated procedure is described for the production of unstructured, finite element meshes to per...
An automated procedure is described for the production of unstructured, finite element meshes to per...
Unstructured mesh methods offer flexibility in representing variable coastlines and bathymetries in ...
International audienceDownscaling physical processes from a large scale to a regional scale 3D model...
A two-dimensional, depth-integrated tidal model for the Loxahatchee River estuary (Southeastern Flor...