Experimental Investigation of the Mechanical and Thermal Behavior of a PT6A-61A Engine Using Mixtures of JETA-1 and Biodiesel

Biofuels are important additives to conventional fuels in combustion engines of the transport sector, as they reduce atmospheric emissions and promote environmental-friendly production chains. The mechanical and thermal performance of a PT6A-61A engine on a test bench of the Colombian Air Force oper...

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Main Authors: Alberth Renne Gonzalez Caranton, Vladimir Silva Leal, Camilo Bayona-Roa, Manuel Alejandro Mayorga Betancourt, Carolina Betancourt, Deiver Cortina, Nelson Jimenez Acuña, Mauricio López
Format: Article
Language:English
Published: MDPI AG 2021-06-01
Series:Energies
Subjects:
Online Access:https://www.mdpi.com/1996-1073/14/11/3282
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spelling doaj-e4a913fc35e74be8b3b6ef08717a2b2e2021-06-30T23:15:52ZengMDPI AGEnergies1996-10732021-06-01143282328210.3390/en14113282Experimental Investigation of the Mechanical and Thermal Behavior of a PT6A-61A Engine Using Mixtures of JETA-1 and BiodieselAlberth Renne Gonzalez Caranton0Vladimir Silva Leal1Camilo Bayona-Roa2Manuel Alejandro Mayorga Betancourt3Carolina Betancourt4Deiver Cortina5Nelson Jimenez Acuña6Mauricio López7Grupo de Investigación en Aprovechamiento Tecnológico de Materiales y Energía GIATME, Universidad ECCI, Cra. 19 No. 49-20, Bogotá 111311, ColombiaGrupo de Investigación en Aprovechamiento Tecnológico de Materiales y Energía GIATME, Universidad ECCI, Cra. 19 No. 49-20, Bogotá 111311, ColombiaGrupo de Investigación en Aprovechamiento Tecnológico de Materiales y Energía GIATME, Universidad ECCI, Cra. 19 No. 49-20, Bogotá 111311, ColombiaGrupo de Investigación en Aprovechamiento Tecnológico de Materiales y Energía GIATME, Universidad ECCI, Cra. 19 No. 49-20, Bogotá 111311, ColombiaBio D S. A, Dirección de Servicio Técnico, Terminal de Combustibles Sabana Mancilla, Bogotá 253051, ColombiaTerpel S.A, Laboratorio de Calidad, Planta Mansilla, Terminal de Combustibles Sabana Mancilla, Bogotá 253051, ColombiaGrupo de Investigación en Electrónica y Tecnologías Para la Defensa, TESDA, Escuela de Suboficiales de la Fuerza Aérea Colombiana, ESUFA Fuerza Aérea Colombiana, FAC, Bogotá 111321, ColombiaGrupo de Investigación en Electrónica y Tecnologías Para la Defensa, TESDA, Escuela de Suboficiales de la Fuerza Aérea Colombiana, ESUFA Fuerza Aérea Colombiana, FAC, Bogotá 111321, ColombiaBiofuels are important additives to conventional fuels in combustion engines of the transport sector, as they reduce atmospheric emissions and promote environmental-friendly production chains. The mechanical and thermal performance of a PT6A-61A engine on a test bench of the Colombian Air Force operating with blends of JETA-1 and Biodiesel up to 25% volume values of substitution is evaluated in this work. Experimental results show that blends are operationally reliable up to 15% volume content. In that range, the engine operation is not compromised in terms of response variables. Moreover, experimental properties of fuel blends show that the freezing point—which is the most critical variable, does not comply with aeronautical regulations. The system dynamics are subject to several variations in the test parameters, which mainly affected fuel flow, Inter-Turbine Temperature (ITT), and engine performance. A Principal Component Analysis (PCA) is performed over the experimental results to quantify possible disturbances on the bench measurements. This is based on the fact that the study is restrained to stationary test bench conditions.https://www.mdpi.com/1996-1073/14/11/3282PT6A-61A engineJETA-1biodieselmechanical behaviorprincipal component analysis (PCA)experimental fluctuations
collection DOAJ
language English
format Article
sources DOAJ
author Alberth Renne Gonzalez Caranton
Vladimir Silva Leal
Camilo Bayona-Roa
Manuel Alejandro Mayorga Betancourt
Carolina Betancourt
Deiver Cortina
Nelson Jimenez Acuña
Mauricio López
spellingShingle Alberth Renne Gonzalez Caranton
Vladimir Silva Leal
Camilo Bayona-Roa
Manuel Alejandro Mayorga Betancourt
Carolina Betancourt
Deiver Cortina
Nelson Jimenez Acuña
Mauricio López
Experimental Investigation of the Mechanical and Thermal Behavior of a PT6A-61A Engine Using Mixtures of JETA-1 and Biodiesel
Energies
PT6A-61A engine
JETA-1
biodiesel
mechanical behavior
principal component analysis (PCA)
experimental fluctuations
author_facet Alberth Renne Gonzalez Caranton
Vladimir Silva Leal
Camilo Bayona-Roa
Manuel Alejandro Mayorga Betancourt
Carolina Betancourt
Deiver Cortina
Nelson Jimenez Acuña
Mauricio López
author_sort Alberth Renne Gonzalez Caranton
title Experimental Investigation of the Mechanical and Thermal Behavior of a PT6A-61A Engine Using Mixtures of JETA-1 and Biodiesel
title_short Experimental Investigation of the Mechanical and Thermal Behavior of a PT6A-61A Engine Using Mixtures of JETA-1 and Biodiesel
title_full Experimental Investigation of the Mechanical and Thermal Behavior of a PT6A-61A Engine Using Mixtures of JETA-1 and Biodiesel
title_fullStr Experimental Investigation of the Mechanical and Thermal Behavior of a PT6A-61A Engine Using Mixtures of JETA-1 and Biodiesel
title_full_unstemmed Experimental Investigation of the Mechanical and Thermal Behavior of a PT6A-61A Engine Using Mixtures of JETA-1 and Biodiesel
title_sort experimental investigation of the mechanical and thermal behavior of a pt6a-61a engine using mixtures of jeta-1 and biodiesel
publisher MDPI AG
series Energies
issn 1996-1073
publishDate 2021-06-01
description Biofuels are important additives to conventional fuels in combustion engines of the transport sector, as they reduce atmospheric emissions and promote environmental-friendly production chains. The mechanical and thermal performance of a PT6A-61A engine on a test bench of the Colombian Air Force operating with blends of JETA-1 and Biodiesel up to 25% volume values of substitution is evaluated in this work. Experimental results show that blends are operationally reliable up to 15% volume content. In that range, the engine operation is not compromised in terms of response variables. Moreover, experimental properties of fuel blends show that the freezing point—which is the most critical variable, does not comply with aeronautical regulations. The system dynamics are subject to several variations in the test parameters, which mainly affected fuel flow, Inter-Turbine Temperature (ITT), and engine performance. A Principal Component Analysis (PCA) is performed over the experimental results to quantify possible disturbances on the bench measurements. This is based on the fact that the study is restrained to stationary test bench conditions.
topic PT6A-61A engine
JETA-1
biodiesel
mechanical behavior
principal component analysis (PCA)
experimental fluctuations
url https://www.mdpi.com/1996-1073/14/11/3282
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