This study addresses how to implement the Galerkin finite element and least square finite element methods using auxiliary equations to solve the partial differential equation numerically, which models the convection-diffusion-reaction, set on a steady 3D domain. In the spatial discretization, hexahedral elements with eight (linear element) and 27 (quadratic element) nodes were used, in which Lagrange interpolation functions were adopted in local coordinates. Turning all the formulation of the problem of global coordinates into local coordinates, the Gauss-Legendre quadrature method was used to integrate coefficients of the element matrices numerically. In addition to the formulation by the two methods, a computer code was implemented to simulate the phenomenon proposed. By using analytical solutions, sundry numerical error analysis was performed from L-2 norm (domain-average error) and L-infinity norm (domain-top error), thus validating the numerical results. A real case is proposed and assessed.
机构:
Xinjiang Univ, Coll Math & Syst Sci, Urumqi 830046, Peoples R ChinaXinjiang Univ, Coll Math & Syst Sci, Urumqi 830046, Peoples R China
Li, Jingwei
Feng, Xinlong
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Xinjiang Univ, Coll Math & Syst Sci, Urumqi 830046, Peoples R ChinaXinjiang Univ, Coll Math & Syst Sci, Urumqi 830046, Peoples R China
Feng, Xinlong
He, Yinnian
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Xinjiang Univ, Coll Math & Syst Sci, Urumqi 830046, Peoples R China
Xi An Jiao Tong Univ, Sch Math & Stat, Xian 710049, Shaanxi, Peoples R ChinaXinjiang Univ, Coll Math & Syst Sci, Urumqi 830046, Peoples R China
机构:
Purdue Univ, Dept Math, 150 N Univ St, W Lafayette, IN 47907 USAPurdue Univ, Dept Math, 150 N Univ St, W Lafayette, IN 47907 USA
Cai, Zhiqiang
Chen, Binghe
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Wells Fargo Corp & Investment Banking, Charlotte, NC 28202 USAPurdue Univ, Dept Math, 150 N Univ St, W Lafayette, IN 47907 USA
Chen, Binghe
Yang, Jing
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Beijing Univ Technol, Sch Math Stat & Mech, 100 Pingleyuan, Beijing 100124, Peoples R ChinaPurdue Univ, Dept Math, 150 N Univ St, W Lafayette, IN 47907 USA