The introduction of intercooling and regeneration in a gas turbine engine can lead to performance improvement and fuel consumption reduction. Moreover, as first consequence of the saved fuel, also the pollutant emission can be greatly reduced. Turboprop seems to be the most suitable gas turbine engine to be equipped with intercooler and heat recuperator thanks to the relatively small mass flow rate and the small propulsion power fraction due to the exhaust nozzle. However, the extra weight and drag due to the heat exchangers must be carefully considered. An intercooled-recuperated turboprop engine is studied by means of a thermodynamic numeric code that, computing the thermal cycle, simulates the engine behavior at different operating conditions. The main aero engine performances, as specific power and specific fuel consumption, are then evaluated from the cycle analysis. The saved fuel, the pollution reduction, and the engine weight are then estimated for an example case.

Fuel Consumption Reduction and Weight Estimate of an Intercooled-Recuperated Turboprop Engine / Roberto, Andriani; Umberto, Ghezzi; Ingenito, Antonella; Gamma, Fausto. - In: INTERNATIONAL JOURNAL OF TURBO & JET-ENGINES. - ISSN 0334-0082. - STAMPA. - 29:3(2012), pp. 165-177. [10.1515/tjj-2012-0025]

Fuel Consumption Reduction and Weight Estimate of an Intercooled-Recuperated Turboprop Engine

INGENITO, ANTONELLA;GAMMA, Fausto
2012

Abstract

The introduction of intercooling and regeneration in a gas turbine engine can lead to performance improvement and fuel consumption reduction. Moreover, as first consequence of the saved fuel, also the pollutant emission can be greatly reduced. Turboprop seems to be the most suitable gas turbine engine to be equipped with intercooler and heat recuperator thanks to the relatively small mass flow rate and the small propulsion power fraction due to the exhaust nozzle. However, the extra weight and drag due to the heat exchangers must be carefully considered. An intercooled-recuperated turboprop engine is studied by means of a thermodynamic numeric code that, computing the thermal cycle, simulates the engine behavior at different operating conditions. The main aero engine performances, as specific power and specific fuel consumption, are then evaluated from the cycle analysis. The saved fuel, the pollution reduction, and the engine weight are then estimated for an example case.
2012
aero engine; "regeneration"; regeneration; "turboprop"; turboprop; intercooling; "intercooling"; "aero engine"
01 Pubblicazione su rivista::01a Articolo in rivista
Fuel Consumption Reduction and Weight Estimate of an Intercooled-Recuperated Turboprop Engine / Roberto, Andriani; Umberto, Ghezzi; Ingenito, Antonella; Gamma, Fausto. - In: INTERNATIONAL JOURNAL OF TURBO & JET-ENGINES. - ISSN 0334-0082. - STAMPA. - 29:3(2012), pp. 165-177. [10.1515/tjj-2012-0025]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/470302
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