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Fourth order transport model on Yin-Yang grid by multi-moment constrained finite volume scheme
Author(s) -
Xingliang Li,
Xueshun Shen,
Xindong Peng,
Feng Xiao,
Zhaorong Zhuang,
Chungang Chen
Publication year - 2012
Publication title -
procedia computer science
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.334
H-Index - 76
ISSN - 1877-0509
DOI - 10.1016/j.procs.2012.04.108
Subject(s) - grid , moment (physics) , computer science , computation , regular grid , benchmark (surveying) , cartesian coordinate system , gravitational singularity , discretization , mathematics , constraint (computer aided design) , mathematical optimization , algorithm , geometry , mathematical analysis , physics , classical mechanics , geodesy , geography
A fourth order transport model is proposed for global computation with the application of multi-moment constrained nite volume (MCV) scheme and Yin-Yang overset grid. Using multi-moment concept, local degrees of freedom (DOFs) are point-wisely dened within each mesh element to build a cubic spatial reconstruction. The updating formulations for local DOFs are derived by adopting multi moments as constraint conditions, including volume-integrated average (VIA), point value (PV) and rst order derivative value (DV). Using Yin-Yang grid eliminates the polar singularities and results in a quasi-uniform mesh over the whole globe. Each component of Yin-Yang grid is a part of the LAT-LON grid, an orthogonal structured grid, where the MCV formulations designed for Cartesian grid can be applied straightforwardly to develop the high order numerical schemes. Proposed MCV model is checked by widely used benchmark tests. The numerical results show that the present model has fourth order accuracy and is competitive to most existing ones

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