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Daniel Mira Martinez

Barcelona Supercomputing Center

C/Jordi Girona 29

Barcelona, 08034

Spain

SCHOLARLY PAPERS

5

DOWNLOADS

139

TOTAL CITATIONS

1

Scholarly Papers (5)

1.

Multi-resolution DMD characterization of non-stationary dynamics in the PRECCINSTA burner

Number of pages: 32 Posted: 11 Nov 2025
Universidad Politecnica de Madrid, Barcelona Supercomputing Center, Barcelona Supercomputing Center and Universidad Politécnica de Madrid
Downloads 36 (1,249,711)

Abstract:

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Data-driven modal decomposition, multi-resolution Dynamic Mode Decomposition, Non-stationary dynamics

2.

A Low-Dissipation Continuous Galerkin Formulation for Turbulent Premixed Combustion

Number of pages: 34 Posted: 16 May 2025
Antonio Blanco-Casares, Daniel Mira Martinez and Oriol Lehmkuhl
Barcelona Supercomputing Center, Barcelona Supercomputing Center and Barcelona Supercomputing Center
Downloads 36 (1,236,159)

Abstract:

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Finite element method, Stabilization, Low-dissipation schemes, Reacting Flows, Combustion

3.

Exploring the Discrete and Continuous Flame Propagation Behavior of Laminar Iron Flames

Number of pages: 14 Posted: 07 Oct 2024
affiliation not provided to SSRN, Barcelona Supercomputing Center, Barcelona Supercomputing Center and Eindhoven University of Technology (TUE)
Downloads 35 (1,263,436)

Abstract:

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Metal fuels, Laminar flame propagation, Numerical simulations, Multiphase flows

4.

Projection-based stabilization for high-order incompressible flow solvers

Number of pages: 33 Posted: 23 Mar 2026
Barcelona Supercomputing Center, affiliation not provided to SSRN, Barcelona Supercomputing Center and Barcelona Supercomputing Center
Downloads 17 (1,481,165)
Citation 1

Abstract:

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5.

A low-dissipation Continuous Galerkin formulation for turbulent premixed combustion

Number of pages: 34 Posted: 22 Sep 2025
Antonio Blanco-Casares, Daniel Mira Martinez and Oriol Lehmkuhl
Barcelona Supercomputing Center, Barcelona Supercomputing Center and Barcelona Supercomputing Center
Downloads 15 (1,500,778)

Abstract:

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finite element method, Stabilization, Low-dissipation schemes, Reacting flows, Combustion