Javascript must be enabled to continue!
A Local Meshless Method for Steady State Convection Dominated Flows
View through CrossRef
A stable localized meshless method (SLMM) is proposed for convection dominated PDEs exhibiting boundary layer. Some cases of continuous and discontinuous boundary data as well as continuous and discontinuous source function with constant and variable convection coefficients are considered. In this approach, the localized meshless method is implemented on specialized sub-domains embedded with flow direction of underlying fluid. The proposed method is based on flow featured overlapping sub-domains, called stencils. The concept of flow direction is used to construct good quality stencils having the ability to capture flow features, such as boundary layer, accurately. Numerical experiments are presented to compare the proposed method with the finite-difference method on special grid (FDSG), the standard finite-element method, hybridized SUPG method, hybridized upwind method, residual-free bubbles (RFB) method and other meshless methods. Numerical results confirm that the new approach is accurate and efficient for solving a wide class of one-, two-, and three-dimensional convection-dominated PDEs. In some cases, performance of the SLMM is comparable and sometimes better than the mesh-based finite-element and finite-difference methods.
World Scientific Pub Co Pte Lt
Title: A Local Meshless Method for Steady State Convection Dominated Flows
Description:
A stable localized meshless method (SLMM) is proposed for convection dominated PDEs exhibiting boundary layer.
Some cases of continuous and discontinuous boundary data as well as continuous and discontinuous source function with constant and variable convection coefficients are considered.
In this approach, the localized meshless method is implemented on specialized sub-domains embedded with flow direction of underlying fluid.
The proposed method is based on flow featured overlapping sub-domains, called stencils.
The concept of flow direction is used to construct good quality stencils having the ability to capture flow features, such as boundary layer, accurately.
Numerical experiments are presented to compare the proposed method with the finite-difference method on special grid (FDSG), the standard finite-element method, hybridized SUPG method, hybridized upwind method, residual-free bubbles (RFB) method and other meshless methods.
Numerical results confirm that the new approach is accurate and efficient for solving a wide class of one-, two-, and three-dimensional convection-dominated PDEs.
In some cases, performance of the SLMM is comparable and sometimes better than the mesh-based finite-element and finite-difference methods.
Related Results
Grain size evolution and heat transfer regime in the shells of icy moons
Grain size evolution and heat transfer regime in the shells of icy moons
IntroductionTogether with the ice shell thickness, grain size due to its effect on viscosity is perhaps the most crucial parameter determining the heat transfer regime inside the ...
A shock-capturing meshless method for solving the one-dimensional Saint-Venant equations on a highly variable topography
A shock-capturing meshless method for solving the one-dimensional Saint-Venant equations on a highly variable topography
Abstract
The Saint-Venant equations are numerically solved to simulate free surface flows in one dimension. A Riemann solver is needed to compute the numerical flux ...
An Efficient Local Formulation for Time-Dependent PDEs
An Efficient Local Formulation for Time-Dependent PDEs
In this paper, a local meshless method (LMM) based on radial basis functions (RBFs) is utilized for the numerical solution of various types of PDEs, due to the flexibility with res...
Wind turbine aerodynamics modeling by meshless method
Wind turbine aerodynamics modeling by meshless method
This article presents wind turbine aerodynamics modeling by a meshless method. This method does not require meshing but it requires only a set of nodes. The radial basis function o...
Karakteristik Madden-Julian Oscillation (MJO) Ketika El-Nino Southern Oscillation (ENSO)
Karakteristik Madden-Julian Oscillation (MJO) Ketika El-Nino Southern Oscillation (ENSO)
Perkembangan peristiwa El-Nino Southern Oscillation (ENSO) menunjukkan peran penting bagi Madden-Julian Oscillation (MJO). Variasi angin permukaan (UWND) dan konveksi (OLR) intramu...
Status and Trends in Research on Deep‐Water Gravity Flow Deposits
Status and Trends in Research on Deep‐Water Gravity Flow Deposits
AbstractDeep‐water gravity flows are one of the most important sediment transport mechanisms on Earth. After 60 years of study, significant achievements have been made in terms of ...
Thermal energy storage with tunnels in different subsurface conditions
Thermal energy storage with tunnels in different subsurface conditions
The widespread use of the underground and global climate change impact the urban subsurface temperature. Changes in the subsurface environment can affect the performance of undergr...
Detailed stratigraphy of the N
2Grande Ronde Basalt, Columbia River Basalt Group, in the central Columbia Plateau
Detailed stratigraphy of the N
2Grande Ronde Basalt, Columbia River Basalt Group, in the central Columbia Plateau
Stratigraphy of individual basalt flows in the N 2magnetostratigraphic unit of the Grande Ronde Basalt (GRB) within the central Columbia Plateau has been developed using data from ...

