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Ville Vuorinen

Aalto University - Department of Mechanical Engineering

SCHOLARLY PAPERS

5

DOWNLOADS

285

TOTAL CITATIONS

1

Scholarly Papers (5)

1.

Open-source numerical simulations of hydrogen flames using DLBFoam with diffusion models for OpenFOAM

Number of pages: 42 Posted: 22 Apr 2025 Last Revised: 06 Nov 2025
Aalto University, Aalto University, Aalto University, Aalto University, Aalto University, Aalto University - Department of Mechanical Engineering, University of Turku and Aalto University - Department of Mechanical Engineering
Downloads 131 (561,789)

Abstract:

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High-performance computing, Unstructured meshes, Hydrogen flames, DLBFoam, OpenFOAM, diffusion transport model

2.

Impact of Modelling Assumptions in Cavitating Flow of Simplified Injector

Number of pages: 25 Posted: 09 Jan 2024
affiliation not provided to SSRN, affiliation not provided to SSRN, University of Massachusetts Amherst, Aalto University - Department of Mechanical Engineering, affiliation not provided to SSRN and Aalto University - Department of Mechanical Engineering
Downloads 45 (1,133,231)

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cavitation, RANS (Reynolds-averaged Navier-Stokes), cavity shedding, step nozzle

3.

Numerical Evidence on Deflagration Fronts in a Methane/N-Dodecane Dual-Fuel Shear Layer Under Engine Relevant Conditions

Number of pages: 52 Posted: 04 Jan 2023
Aalto University - Department of Mechanical Engineering, Aalto University - Department of Mechanical Engineering, Aalto University - Department of Mechanical Engineering, Aalto University - Department of Mechanical Engineering and Aalto University - Department of Mechanical Engineering
Downloads 38 (1,222,651)

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dual-fuel, flame initiation, deflagration, methane, n-dodecane

4.

A Numerical Study of Hydrogen Enrichment Effects on Laminar Methane/Air Flame Propagation and Emissions in Crevices

Number of pages: 57 Posted: 08 Mar 2025
Aalto University, Aalto University, affiliation not provided to SSRN, Aalto University - Department of Mechanical Engineering and Aalto University - Department of Mechanical Engineering
Downloads 37 (1,236,159)
Citation 1

Abstract:

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Flame-wall interaction, Quenching, Crevice, Methane, hydrogen, Emissions

5.

Large-Eddy Simulation of Buoyant Airflow in an Airborne Pathogen Transmission Scenario

Number of pages: 28 Posted: 11 Apr 2023
Aalto University, Aalto University, Aalto University, Aalto University - Department of Mechanical Engineering and Aalto University - Department of Mechanical Engineering
Downloads 34 (1,277,121)

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Large-eddy simulation (LES), airborne virus, SARS-CoV-2, indoor airflow, natural convection, buoyancy