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INTERNODES: an accurate interpolation-based method for coupling the Galerkin solutions of PDEs on subdomains featuring non-conforming interfaces

机译:INTERNODES:一种基于精确插值的方法,用于在具有不合格接口的子域上耦合PDE的Galerkin解

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摘要

We are interested in the approximation of partial differential equations on domains decomposed into two (or several) subdomains featuring non-conforming interfaces. The non-conformity may be due to different meshes and/or different polynomial degrees used from the two sides, or even to a geometrical mismatch. Across each interface, one subdomain is identified as master and the other as slave. We consider Galerkin methods for the discretization (such as finite element or spectral element methods) that make use of two interpolants for transferring information across the interface: one from master to slave and another one from slave to master. The former is used to ensure continuity of the primal variable (the problem solution), while the latter that of the dual variable (the normal flux). In particular, since the dual variable is expressed in weak form, we first compute a strong representation of the dual variable from the slave side, then interpolate it, transform the interpolated quantity back into weak form and eventually assign it to the master side. In case of slightly non-matching geometries, we use a radial-basis function interpolant instead of Lagrange interpolant.
机译:我们对分解为两个(或几个)具有不合格界面的子域的域上的偏微分方程的逼近很感兴趣。不符合可能是由于从两侧使用了不同的网格和/或不同的多项式度,甚至是由于几何上的不匹配。在每个接口中,一个子域被标识为主域,另一个被标识为从属域。我们考虑用于离散化的Galerkin方法(例如有限元或频谱元素方法),该方法利用两个插值在接口之间传递信息:一个从主到从,另一个从从到主。前者用于确保原始变量(问题解决方案)的连续性,而后者用于对偶变量(法向通量)的连续性。特别是,由于对偶变量以弱形式表示,因此我们首先从从机侧计算对偶变量的强表示形式,然后对其进行插值,将插值后的数量转换回弱形式,最后将其分配给主侧。在几何形状略微不匹配的情况下,我们使用径向基函数插值而不是Lagrange插值。

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