PG-EAM - Programa de Pós-Graduação em Engenharia Aeronáutica e Mecânica
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Artigo 2018

A Propeller Model for Steady-State and Transient Performance Prediction of Turboprop and Counter-Rotating Open Rotor Engines

Autores

Silva, Vinícius Tavares
Fontes, Anderson Frasson

Journal of Engineering for Gas Turbines and Power , vol. 140 , no. 7 , pp. 1-13

ISSN: 07424795

9
Citações
4
Autores

Resumo

© 2018 by ASME.This paper describes a methodology used for propeller performance estimation, which was implemented in an in-house modular program for gas turbine performance prediction. A model based on subsonic generic propeller maps and corrected for compressibility effects, under high subsonic speeds, was proposed and implemented. Considering this methodology, it is possible to simulate conventional turboprop architectures and counter-rotating open rotor (CROR) engines in both steady-state and transient operating conditions. Two simulation scenarios are available: variable pitch angle propeller with constant speed; or variable speed propeller with constant pitch angle. The simulations results were compared with test bench data and two gas turbine performance commercial software packages were used to fulfill the model validation for conventional turboprop configurations. Furthermore, a direct drive CROR engine was simulated using a variable inlet guide vanes (VIGV) control strategy during transient operation. The model has shown to be able to provide several information about propeller-based engine performance using few input data, and a comprehensive understanding on steady-state and transient performance behavior was achieved in the obtained results.

Palavras-chave

counter-rotating open rotor gas turbine performance propeller turboprop

Nuclear Energy and Engineering (ENER) Fuel Technology (ENER) Aerospace Engineering (ENGI) Energy Engineering and Power Technology (ENER) Mechanical Engineering (ENGI)
: Scopus
Última atualização: 2026-06-25
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