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Dive into the research topics where Davide Bertini is active.

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Featured researches published by Davide Bertini.


Combustion Science and Technology | 2018

Multi-coupled numerical simulations of the DLR Generic Single Sector Combustor

Stefano Puggelli; S. Paccati; Davide Bertini; Lorenzo Mazzei; Andrea Giusti; Antonio Andreini

ABSTRACT This paper presents a set of numerical analyses carried out on a model combustor equipped with a prefilming airblast injection system using a multi-coupled approach that includes the solution of the liquid film over the prefilming surface. The main objective of this study is to perform a systematic investigation of all the relevant aspects involved in the liquid fuel preparation of airblast atomizers, ranging from the interaction between the gas phase and the liquid film to the effect of velocity fluctuations on the dispersion of droplets downstream of the injector exit. Measurements at high pressure and reacting conditions are available for the case considered here, therefore, allowing to perform such investigation at engine-relevant conditions. The solution of the liquid film evolution over the prefilming surface suggests that the interaction between the gas phase and the liquid film is an important aspect to be considered for a reliable simulation of prefilming airblast systems since it has a strong impact on both velocity and fuel temperature at the atomizing edge. The role of primary breakup has been investigated by performing a sensitivity analysis to different theoretical and correlation-based models. Results obtained from this analysis, performed using Reynolds averaged Navier–Stokes simulations, show that the various formulations predict a quite different diameter, affecting the mixing field in the downstream region and therefore pointing out the necessity of more advanced and robust formulations. A comparison between experimental measurements and a scale-adaptive simulation of the combustor, performed using the spray setup determined in the sensitivity analysis, demonstrates the necessity of including in the simulation time-resolved velocity fluctuations to improve the prediction of the dispersion of droplets and therefore give a reliable prediction of fuel location and mixing.


Fuel | 2018

Turbulent flow-field effects in a hybrid CFD-CRN model for the prediction of NOx and CO emissions in aero-engine combustors

Alessandro Innocenti; Antonio Andreini; Davide Bertini; Bruno Facchini; M. Motta


Energy Procedia | 2017

Methane swirl-stabilized lean burn flames: assessment of scale-resolving simulations

Daniele Pampaloni; Davide Bertini; Stefano Puggelli; Lorenzo Mazzei; Antonio Andreini


Journal of Engineering for Gas Turbines and Power-transactions of The Asme | 2016

Assessment of scale resolved CFD methods for the investigation of lean burn spray flames

Antonio Andreini; Davide Bertini; Lorenzo Mazzei; Stefano Puggelli


Energy Procedia | 2015

Large-Eddy Simulation of a turbulent spray flame using the flamelet generated manifold approach

Antonio Andreini; Davide Bertini; Bruno Facchini; Stefano Puggelli


Journal of Engineering for Gas Turbines and Power-transactions of The Asme | 2018

Numerical and experimental investigation on an effusion-cooled lean burn aeronautical combustor: aerothermal field and emissions

Lorenzo Mazzei; Stefano Puggelli; Davide Bertini; Antonio Andreini; Bruno Facchini; Ignazio Vitale; Antonio Santoriello


ASME Turbo Expo 2018: Turbomachinery Technical Conference and Exposition | 2018

Numerical and Experimental Investigation on an Effusion-Cooled Lean Burn Aeronautical Combustor: Aerothermal Field and Metal Temperature

Davide Bertini; Lorenzo Mazzei; Stefano Puggelli; Antonio Andreini; Bruno Facchini; L. Bellocci; A. Santoriello


Journal of Engineering for Gas Turbines and Power-transactions of The Asme | 2017

Modeling Strategies for Large Eddy Simulation of Lean Burn Spray Flames

Stefano Puggelli; Davide Bertini; Lorenzo Mazzei; Antonio Andreini


Energy Procedia | 2017

Thermodynamic Analysis of an Aircraft Engine to estimate performance and emissions at LTO cycle

Dominique Adolfo; Davide Bertini; Andrea Gamannossi; Carlo Carcasci


Energy Procedia | 2017

Modelling soot production and thermal radiation for turbulent diffusion flames

Lorenzo Mazzei; Stefano Puggelli; Davide Bertini; Daniele Pampaloni; Antonio Andreini

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