∫ f(x)dx ∇²u = 0 IJPACM

International Journal of Pure, Applied and Computational Mathematics (IJPACM)

e-ISSN: 2348-0084 • CC BY 4.0

CC BY 4.0 p-ISSN: 2348-0076 • e-ISSN: 2348-0084 DOI: 10.5555

Pioneering Research in Pure, Applied & Computational Mathematics

International Journal of Pure, Applied and Computational Mathematics (IJPACM) is a peer-reviewed, open-access scholarly periodical dedicated to publishing groundbreaking theoretical proofs, high-performance algorithms, and mathematical modeling.

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IJPACM Vol 1

Volume 1, Issue 2 (Current Issue - Summer 2026)

June 2026

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CC BY 4.0 Open Access
Applied Mathematics & Modeling Vol 1, Issue 1 (2026)
DOI: 10.5555/ijpacm.2026.1.1.01

Higher-Order Discontinuous Galerkin Solvers for Incompressible Navier-Stokes Equations

Energy-Conserving Spectral Spatial Discretization on Unstructured Tetrahedral Meshes

Authors: Dr. Marcus Thorne Prof. Astrid Lindholm

Numerical simulations of high Reynolds number turbulent flows demand spatial discretizations that strictly conserve kinetic energy while preserving divergence-free velocity fields. We formulate an energy-stable, high-order Discontinuous Galerkin (DG) method equipped with interior penalty formulations and symmetric flux splitting. Simulations on canonical Taylor-Green vortex benchmarks demonstrate optimal spatial convergence up to polynomial degree p=7 without non-physical numerical dissipation. The proposed framework provides an exceptionally stable computational foundation for direct numerical simulation of complex turbulent boundary layers.

Discontinuous Galerkin Navier-Stokes Equations High-Order Methods
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Journal Focus Areas

  • Applied Mathematics & Modeling: Mathematical formulations, differential equations, dynamical systems, and modeling in engineering and natural sciences.
  • Computational Mathematics & Numerical Analysis: Novel numerical algorithms, finite element methods, high-performance parallel solvers, and tensor decompositions.
  • Discrete Mathematics & Cryptography: Combinatorics, graph algorithms, lattice cryptography, and quantum computational foundations.
  • Pure Mathematics & Modern Algebra: Original research articles establishing rigorous mathematical theorems, abstract algebraic structures, topology, and functional analysis.
Call For Papers / Announcement

Call for Papers: Volume 2, Issue 1 (2026). Submissions are currently open for peer review in Theoretical Proofs, Computational Fluid Dynamics, and Quantum Cryptography.

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