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Information Journal Paper

Title

Discretization of the 2D Convection– Diffusion Equation Using Discrete Exterior Calculus

Pages

  1348-1363

Abstract

 While the Discrete Exterior Calculus (DEC) discretization of the diffusive term of the Transport Equation is well understood, the DEC discretization of the convective term, as well as its stabilization, is an ongoing area of research. In this paper, we propose a local discretization for this term based on DEC and geometric arguments, considering the particle velocity field prescribed at the vertices of the primal mesh. This formulation is similar to that of the Finite Element Method with linear interpolation functions (FEML) and can be stabilized using known stabilization techniques, such as Artificial Diffusion. Using this feature, numerical tests are carried out on simple stationary and transient problems with domains discretized with coarse and fine simplicial meshes to show numerical convergence.

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    APA: Copy

    Noguez, Marco A., Botello, Salvador, Herrera, Rafael, & Esqueda, Humberto. (2020). Discretization of the 2D Convection– Diffusion Equation Using Discrete Exterior Calculus. JOURNAL OF APPLIED AND COMPUTATIONAL MECHANICS, 6(Special issue), 1348-1363. SID. https://sid.ir/paper/969807/en

    Vancouver: Copy

    Noguez Marco A., Botello Salvador, Herrera Rafael, Esqueda Humberto. Discretization of the 2D Convection– Diffusion Equation Using Discrete Exterior Calculus. JOURNAL OF APPLIED AND COMPUTATIONAL MECHANICS[Internet]. 2020;6(Special issue):1348-1363. Available from: https://sid.ir/paper/969807/en

    IEEE: Copy

    Marco A. Noguez, Salvador Botello, Rafael Herrera, and Humberto Esqueda, “Discretization of the 2D Convection– Diffusion Equation Using Discrete Exterior Calculus,” JOURNAL OF APPLIED AND COMPUTATIONAL MECHANICS, vol. 6, no. Special issue, pp. 1348–1363, 2020, [Online]. Available: https://sid.ir/paper/969807/en

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