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CFD Modelling of a Spark Ignition Internal Combustion Engine Fuelled with Syngas for a mCHP System (CROSBI ID 252903)

Prilog u časopisu | izvorni znanstveni rad | međunarodna recenzija

Piazzullo, Daniele ; Costa, Michela ; Petranović, Zvonimir ; Vujanović, Milan ; La Villetta, Maurizio ; Caputo, Carmine ; Cirillo, Domenico CFD Modelling of a Spark Ignition Internal Combustion Engine Fuelled with Syngas for a mCHP System // Chemical engineering transactions, 65 (2018), 13-18. doi: 10.3303/CET1865003

Podaci o odgovornosti

Piazzullo, Daniele ; Costa, Michela ; Petranović, Zvonimir ; Vujanović, Milan ; La Villetta, Maurizio ; Caputo, Carmine ; Cirillo, Domenico

engleski

CFD Modelling of a Spark Ignition Internal Combustion Engine Fuelled with Syngas for a mCHP System

Micro Combined Heat and Power (mCHP) powered with biomass is nowadays a technology attracting increasing interest to develop a local supply chain to produce, process and valorise the available material in territorial areas as much as possible circumscribed, with a considerable reduction also of the CO2 related to transportation. Application for biomass powered mCHP produces environmental benefits by reducing primary energy consumption and associated greenhouse gas emissions and complies with the need for increased decentralization of energy supply. Of particular relevance is mCHP based on biomass gasification due to the negligible particulate matter release with respect to combustion. The present work describes a 3D CFD model of the spark ignition (SI) internal combustion engine (ICE) fuelled with syngas installed in the mCHP pilot system ECO20 manufactured by the Italian company Costruzioni Motori Diesel S.p.A. (CMD). The considered system is made of a gasifier combined with proper syngas cleaning devices, an ICE and a generator to deliver a maximum electrical and thermal power of 20 kW and 40 kW, respectively. For the proper initialisation of the 3D CFD model, the syngas composition is experimentally characterised using a gas-chromatograph on samples collected under real operation. The calculated pressure cycle is verified by comparison with the one calculated through a properly developed 1D ICE model. Main goals of the performed numerical analysis are to study into detail the combustion process and to assess the engine performance characteristics related to the use of syngas.

Spark ignition, Syngas, IC engine, CHP system

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Podaci o izdanju

65

2018.

13-18

objavljeno

2283-9216

10.3303/CET1865003

Povezanost rada

Strojarstvo

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