The successful implementation of a finite element model for computing shallow-water flow requires the identification and spatial discretization of a surface water region. Since no robust criterion or node spacing routine exists, which incorporates physical characteristics and subsequent responses into the mesh generation process, modelers are left to rely on crude gridding criteria as well as their knowledge of particular domains and their intuition. Two separate methods to generate a finite element mesh are compared for the Gulf of Mexico. A wavelength-based criterion and an alternative approach, which employs a localized truncation error analysis (LTEA), are presented. Both meshes have roughly the same number of nodes, although the distri...
Unstructured mesh methods offer flexibility in representing variable coastlines and bathymetries in ...
Unstructured grid models are receiving increased attention mainly because of their ability to provid...
International audienceUnstructured grid models are receiving increased attention mainly because of t...
With the exponential increase in computing power, modelers of coastal and oceanic regions are capabl...
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...
With the exponential increase in computing power, modelers of coastal and oceanic regions are capabl...
An automated procedure is described for the production of unstructured, finite element meshes to per...
This paper presents an a posteriori approach to unstructured mesh generation via a localized truncat...
An automated procedure is described for the production of unstructured, finite element meshes to per...
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...
A new methodology for the determination of target element sizes for the construction of finite eleme...
Localized truncation error analysis with complex derivatives was applied to compute target element s...
Unstructured mesh methods offer flexibility in representing variable coastlines and bathymetries in ...
Unstructured grid models are receiving increased attention mainly because of their ability to provid...
International audienceUnstructured grid models are receiving increased attention mainly because of t...
With the exponential increase in computing power, modelers of coastal and oceanic regions are capabl...
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...
With the exponential increase in computing power, modelers of coastal and oceanic regions are capabl...
An automated procedure is described for the production of unstructured, finite element meshes to per...
This paper presents an a posteriori approach to unstructured mesh generation via a localized truncat...
An automated procedure is described for the production of unstructured, finite element meshes to per...
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...
A new methodology for the determination of target element sizes for the construction of finite eleme...
Localized truncation error analysis with complex derivatives was applied to compute target element s...
Unstructured mesh methods offer flexibility in representing variable coastlines and bathymetries in ...
Unstructured grid models are receiving increased attention mainly because of their ability to provid...
International audienceUnstructured grid models are receiving increased attention mainly because of t...