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首页> 外文期刊>SIAM Journal on Numerical Analysis >Conservative P1 conforming and nonconforming Galerkin FEMS: Effective flux evaluation via a nonmixed method approach
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Conservative P1 conforming and nonconforming Galerkin FEMS: Effective flux evaluation via a nonmixed method approach

机译:保守P1合格和不合格Galerkin FEMS:通过非混合方法有效评估通量

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摘要

Given a P1 conforming or nonconforming Galerkin finite element method (GFEM) solution p(h), which approximates the exact solution p of the diffusion-reaction equation -del.K del p + alpha p = f with full tensor variable coefficient K, we evaluate the approximate flux u(h) to the exact flux u = -K del p by a simple but physically intuitive formula over each finite element. The flux is sought in the continuous ( in normal component) or the discontinuous Raviart-Thomas space. A systematic way of deriving such a formula is introduced. This direct method retains local conservation property at the element level, typical of mixed methods (finite element or finite volume type), but avoids solving an indefinite linear system. In short, the present method retains the best of the GFEM and the mixed method but without their shortcomings. Thus we view our method as a conservative GFEM and demonstrate its equivalence to a certain mixed finite volume box method. The equivalence theorems explain how the pressure can decouple basically cost free from the mixed formulation. The accuracy in the flux is of first order in the H (div; Omega) norm. Numerical results are provided to support the theory. [References: 22]
机译:给定P1合格或不合格Galerkin有限元方法(GFEM)解p(h),它近似于具有完整张量变量系数K的扩散反应方程-del.K del p + alpha p = f的精确解p通过简单但直观的公式对每个有限元求出近似通量u(h)到精确通量u = -K del p。在连续(正常分量)或不连续的Raviart-Thomas空间中寻找通量。介绍了推导此类公式的系统方法。这种直接方法在元素级别上保留了局部守恒性质,这是混合方法(有限元或有限体积类型)所特有的,但避免了求解不确定的线性系统。简而言之,本方法保留了GFEM和混合方法中的优点,但没有它们的缺点。因此,我们将我们的方法视为保守的GFEM,并证明了其与某种混合有限体积盒法的等效性。等价定理解释了压力如何能够从混合配方中基本消除成本。通量的精度在H(格;欧米茄)范数中是一阶的。提供了数值结果以支持该理论。 [参考:22]

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