The paper analyses the effects of fuel composition modelling in a turbocharged GDI engine for sport car applications. Particularly, a traditional single-component gasoline-surrogate fuel is compared to a seven-component fuel model available in the open literature. The multi-component fuel is represented using the Discrete-Continuous-Multi-Component modelling approach, and it is specifically designed in order to match the volatility of an actual RON95 European gasoline. The comparison is carried out following a detailed calibration with available experimental measurements for a full load maximum power engine speed operation of the engine, and differences are analyzed and critically discussed for each of the spray evolution, mixture stratification and combustion. In the present paper (Part I), a RANS approach is used to preliminarily investigate the behaviour of the fuel model on the average engine cycle. In the subsequent Part II of the same paper, the numerical framework is evolved into a more refined LES approach, in order to take into account cycle-to-cycle variations in mixture formation and knock tendency.

Effects of fuel composition on charge preparation, combustion and knock tendency in a high performance GDI engine. Part I: RANS analysis / Giovannoni, Nicola; D'Adamo, Alessandro; Nardi, Luca; Cantore, Giuseppe. - In: ENERGY PROCEDIA. - ISSN 1876-6102. - 81:(2015), pp. 805-816. (Intervento presentato al convegno 69th Conference of the Italian Thermal Engineering Association, ATI 2014 tenutosi a Milan nel 2014) [10.1016/j.egypro.2015.12.087].

Effects of fuel composition on charge preparation, combustion and knock tendency in a high performance GDI engine. Part I: RANS analysis

GIOVANNONI, NICOLA;D'ADAMO, Alessandro;NARDI, LUCA;CANTORE, Giuseppe
2015

Abstract

The paper analyses the effects of fuel composition modelling in a turbocharged GDI engine for sport car applications. Particularly, a traditional single-component gasoline-surrogate fuel is compared to a seven-component fuel model available in the open literature. The multi-component fuel is represented using the Discrete-Continuous-Multi-Component modelling approach, and it is specifically designed in order to match the volatility of an actual RON95 European gasoline. The comparison is carried out following a detailed calibration with available experimental measurements for a full load maximum power engine speed operation of the engine, and differences are analyzed and critically discussed for each of the spray evolution, mixture stratification and combustion. In the present paper (Part I), a RANS approach is used to preliminarily investigate the behaviour of the fuel model on the average engine cycle. In the subsequent Part II of the same paper, the numerical framework is evolved into a more refined LES approach, in order to take into account cycle-to-cycle variations in mixture formation and knock tendency.
2015
69th Conference of the Italian Thermal Engineering Association, ATI 2014
Milan
2014
81
805
816
Giovannoni, Nicola; D'Adamo, Alessandro; Nardi, Luca; Cantore, Giuseppe
Effects of fuel composition on charge preparation, combustion and knock tendency in a high performance GDI engine. Part I: RANS analysis / Giovannoni, Nicola; D'Adamo, Alessandro; Nardi, Luca; Cantore, Giuseppe. - In: ENERGY PROCEDIA. - ISSN 1876-6102. - 81:(2015), pp. 805-816. (Intervento presentato al convegno 69th Conference of the Italian Thermal Engineering Association, ATI 2014 tenutosi a Milan nel 2014) [10.1016/j.egypro.2015.12.087].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11380/1115393
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