NASA NTRS · 20020049837
Spectral (Finite) Volume Method for One Dimensional Euler Equations
Abstract
Consider a mesh of unstructured triangular cells. Each cell is called a Spectral Volume (SV), denoted by Si, which is further partitioned into subcells named Control Volumes (CVs), indicated by C(sub i,j). To represent the solution as a polynomial of degree m in two dimensions (2D) we need N = (m+1)(m+2)/2 pieces of independent information, or degrees of freedom (DOFs). The DOFs in a SV method are the volume-averaged mean variables at the N CVs. For example, to build a quadratic reconstruction in 2D, we need at least (2+1)(3+1)/2 = 6 DOFs. There are numerous ways of partitioning a SV, and not every partition is admissible in the sense that the partition may not be capable of producing a degree m polynomial. Once N mean solutions in the CVs of a SV are given, a unique polynomial reconstruction can be obtained.
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Wang, Z. J., Liu, Yen, Kwak, Dochan. 2002-01-01. Spectral (Finite) Volume Method for One Dimensional Euler Equations. https://ntrs.nasa.gov/citations/20020049837
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