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NASA NTRS · 19890002965

Nonconforming mortar element methods: Application to spectral discretizations

Abstract

Spectral element methods are p-type weighted residual techniques for partial differential equations that combine the generality of finite element methods with the accuracy of spectral methods. Presented here is a new nonconforming discretization which greatly improves the flexibility of the spectral element approach as regards automatic mesh generation and non-propagating local mesh refinement. The method is based on the introduction of an auxiliary mortar trace space, and constitutes a new approach to discretization-driven domain decomposition characterized by a clean decoupling of the local, structure-preserving residual evaluations and the transmission of boundary and continuity conditions. The flexibility of the mortar method is illustrated by several nonconforming adaptive Navier-Stokes calculations in complex geometry.

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BibTeXRIS

Maday, Yvon, Mavriplis, Cathy, Patera, Anthony. 1988-10-01. Nonconforming mortar element methods: Application to spectral discretizations. https://ntrs.nasa.gov/citations/19890002965

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