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Adaptive mesh refinement for elliptic interface problems using the non-conforming immersed finite element method

机译:非协调浸入有限元法对椭圆界面问题的自适应网格细化

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In this paper, an adaptive mesh refinement technique is developed and analyzed for the non-conforming immersed finite element (IFE) method proposed in [27]. The IFE method was developed for solving the second order elliptic boundary value problem with interfaces across which the coefficient may be discontinuous. The IFE method was based on a triangulation that does not need to fit the interface. One of the key ideas of IFE method is to modify the basis functions so that the natural jump conditions are satisfied across the interface. The IFE method has shown to be order of O(h~2) and O(h) in L~2 norm and H~1 norm, respectively. In order to develop the adaptive mesh refinement technique, additional priori and posterior error estimations are derived in this paper. Our new a-priori error estimation shows that the generic constant is only linearly proportional to ratio of the diffusion coefficient β-and β+, which improves the corresponding result in [27]. We also show that aposteriori error estimate similar to the one obtained by Bernardi and Verf?urth [4] holds for the IFE solutions. Numerical examples support our theoretical results and show that the adaptive mesh refinement strategy is effective for the IFE approximation.
机译:在本文中,针对[27]中提出的非协调浸入有限元(IFE)方法,开发并分析了一种自适应网格细化技术。开发了IFE方法来解决具有系数可能不连续的界面的二阶椭圆边值问题。 IFE方法基于不需要适合接口的三角剖分。 IFE方法的关键思想之一是修改基本函数,以便在接口上满足自然跳转条件。 IFE方法在L〜2范数和H〜1范数中分别显示为O(h〜2)和O(h)的顺序。为了发展自适应网格细化技术,本文推导了额外的先验和后验误差估计。我们的新的先验误差估计表明,一般常数仅与扩散系数β-和β+的比率成线性比例,从而改善了[27]中的相应结果。我们还表明,撇号误差估计与Bernardi和Verfurth [4]获得的估计相似,适用于IFE解。数值算例支持了我们的理论结果,并表明自适应网格细化策略对于IFE逼近是有效的。

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