Experimental and Simulation of Diesel Engine Fueled with Biodiesel with Variations in Heat Loss Model

This study presents an experimental investigation and thermodynamic 0D modeling of the combustion of a compression-ignition engine, fueled by an alternative fuel based on neem biodiesel (B100) as well as conventional diesel (D100). The study highlights the effects of the engine load at 50%, 75% and...

Full description

Bibliographic Details
Main Authors: Daniel Romeo Kamta Legue, Zacharie Merlin Ayissi, Mahamat Hassane Babikir, Marcel Obounou, Ekobena Fouda Henri Paul
Format: Article
Language:English
Published: MDPI AG 2021-03-01
Series:Energies
Subjects:
Online Access:https://www.mdpi.com/1996-1073/14/6/1622
id doaj-27ff9d5d29074bc08636ba04e8695908
record_format Article
spelling doaj-27ff9d5d29074bc08636ba04e86959082021-03-16T00:01:32ZengMDPI AGEnergies1996-10732021-03-01141622162210.3390/en14061622Experimental and Simulation of Diesel Engine Fueled with Biodiesel with Variations in Heat Loss ModelDaniel Romeo Kamta Legue0Zacharie Merlin Ayissi1Mahamat Hassane Babikir2Marcel Obounou3Ekobena Fouda Henri Paul4Department of Physics, Energy—Electrical and Electronic Systems, University of Yaounde 1, Yaoundé P.O. Box 812, CameroonLaboratory E3M, University of Douala, Douala P.O. Box 2701, CameroonDepartment of Physics, Energy—Electrical and Electronic Systems, University of Yaounde 1, Yaoundé P.O. Box 812, CameroonDepartment of Physics, Energy—Electrical and Electronic Systems, University of Yaounde 1, Yaoundé P.O. Box 812, CameroonDepartment of Physics, Energy—Electrical and Electronic Systems, University of Yaounde 1, Yaoundé P.O. Box 812, CameroonThis study presents an experimental investigation and thermodynamic 0D modeling of the combustion of a compression-ignition engine, fueled by an alternative fuel based on neem biodiesel (B100) as well as conventional diesel (D100). The study highlights the effects of the engine load at 50%, 75% and 100% and the influence of the heat loss models proposed by Woschni, Eichelberg and Hohenberg on the variation in the cylinder pressure. The study shows that the heat loss through the cylinder wall is more pronounced during diffusion combustion regardless of the nature of the fuels tested and the load range required. The cylinder pressures when using B100 estimated at 89 bars are relatively higher than when using D100, about 3.3% greater under the same experimental conditions. It is also observed that the problem of the high pressure associated with the use of biodiesels in engines can be solved by optimizing the ignition delay. The net heat release rate remains roughly the same when using D100 and B100 at 100% load. At low loads, the D100 heat release rate is higher than B100. The investigation shows how wall heat losses are more pronounced in the diffusion combustion phase, relative to the premix phase, by presenting variations in the curves.https://www.mdpi.com/1996-1073/14/6/1622biodieselloadheat losscylinder pressureheat release ratepython
collection DOAJ
language English
format Article
sources DOAJ
author Daniel Romeo Kamta Legue
Zacharie Merlin Ayissi
Mahamat Hassane Babikir
Marcel Obounou
Ekobena Fouda Henri Paul
spellingShingle Daniel Romeo Kamta Legue
Zacharie Merlin Ayissi
Mahamat Hassane Babikir
Marcel Obounou
Ekobena Fouda Henri Paul
Experimental and Simulation of Diesel Engine Fueled with Biodiesel with Variations in Heat Loss Model
Energies
biodiesel
load
heat loss
cylinder pressure
heat release rate
python
author_facet Daniel Romeo Kamta Legue
Zacharie Merlin Ayissi
Mahamat Hassane Babikir
Marcel Obounou
Ekobena Fouda Henri Paul
author_sort Daniel Romeo Kamta Legue
title Experimental and Simulation of Diesel Engine Fueled with Biodiesel with Variations in Heat Loss Model
title_short Experimental and Simulation of Diesel Engine Fueled with Biodiesel with Variations in Heat Loss Model
title_full Experimental and Simulation of Diesel Engine Fueled with Biodiesel with Variations in Heat Loss Model
title_fullStr Experimental and Simulation of Diesel Engine Fueled with Biodiesel with Variations in Heat Loss Model
title_full_unstemmed Experimental and Simulation of Diesel Engine Fueled with Biodiesel with Variations in Heat Loss Model
title_sort experimental and simulation of diesel engine fueled with biodiesel with variations in heat loss model
publisher MDPI AG
series Energies
issn 1996-1073
publishDate 2021-03-01
description This study presents an experimental investigation and thermodynamic 0D modeling of the combustion of a compression-ignition engine, fueled by an alternative fuel based on neem biodiesel (B100) as well as conventional diesel (D100). The study highlights the effects of the engine load at 50%, 75% and 100% and the influence of the heat loss models proposed by Woschni, Eichelberg and Hohenberg on the variation in the cylinder pressure. The study shows that the heat loss through the cylinder wall is more pronounced during diffusion combustion regardless of the nature of the fuels tested and the load range required. The cylinder pressures when using B100 estimated at 89 bars are relatively higher than when using D100, about 3.3% greater under the same experimental conditions. It is also observed that the problem of the high pressure associated with the use of biodiesels in engines can be solved by optimizing the ignition delay. The net heat release rate remains roughly the same when using D100 and B100 at 100% load. At low loads, the D100 heat release rate is higher than B100. The investigation shows how wall heat losses are more pronounced in the diffusion combustion phase, relative to the premix phase, by presenting variations in the curves.
topic biodiesel
load
heat loss
cylinder pressure
heat release rate
python
url https://www.mdpi.com/1996-1073/14/6/1622
work_keys_str_mv AT danielromeokamtalegue experimentalandsimulationofdieselenginefueledwithbiodieselwithvariationsinheatlossmodel
AT zachariemerlinayissi experimentalandsimulationofdieselenginefueledwithbiodieselwithvariationsinheatlossmodel
AT mahamathassanebabikir experimentalandsimulationofdieselenginefueledwithbiodieselwithvariationsinheatlossmodel
AT marcelobounou experimentalandsimulationofdieselenginefueledwithbiodieselwithvariationsinheatlossmodel
AT ekobenafoudahenripaul experimentalandsimulationofdieselenginefueledwithbiodieselwithvariationsinheatlossmodel
_version_ 1724220291063742464