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Hydrogen and ICEs: Validation of a 3D-CFD Approach for In-cylinder Combustion Simulations of Ultra-lean Mixture with a focus on the combustion regime

Abstract

This paper proposes a numerical setup for 3D-CFD in-cylinder simulations of H2-fuelled internal combustion engines. The flamelet G-equation model, based on Verhelst and Damkohler-like ¨ correlations for laminar and turbulent flame speeds respectively, is used to reproduce the flame propagation. The validation against experimental data from a homogeneous-mixture port-injection engine enables a focus on combustion simulation by minimising stratification uncertainties. Accurate flame propagation modelling is identified as the main challenge. The results on different operating conditions confirm the predictive capabilities of the framework, thanks to the agreement with the experimental pressure traces, combustion indicators and flame imaging. Notably, combustion rate predictions remain accurate even without considering the flame thermo-diffusive instability, as the turbulence effect dominates at the investigated conditions. The combustion regime is analysed by a modified Borghi-Peters diagram and it ranges from flamelet to thin reaction zones. This highlights the numerical setup flexibility, which accurately simulates combustion across different regimes.

Funding source: The authors gratefully acknowledge the University of Modena and Reggio Emilia for supporting the activity by the "Fondo di Ateneo per la Ricerca 2024 per il finanziamento di piani di sviluppo dipartimentale nell’ambito della ricerca" (FAR 2024), the Agence Nationale de Recherche for the grant number 20-CE05-0007 (ALEKCIA ANR project) and the “PIANO NAZIONALE DI RIPRESA E RESILIENZA (PNRR) – MISSIONE 4 COMPONENTE 2, “Dalla ricerca all’impresa” INVESTIMENTO 1.4, Potenziamento strutture di ricerca e creazione di "campioni nazionali di R&S" su alcune Key Enabling Technologies, finanziato dall’Unione europea – NextGenerationEU - Progetto identificato con codice CN00000023. Titolo “Sustainable Mobility Center (Centro Nazionale per la Mobilit` a Sostenibile – CNMS)” - Spoke 12 - Avviso MUR 3138/2021 modificato con DD 3175/2021”.
Related subjects: Applications & Pathways
Countries: France ; Italy
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/content/journal7718
2025-09-13
2025-12-05
/content/journal7718
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