The effect of supercharging on performance and emission characteristics of C.I. Engine with diesel-ethanol-ester blends

Biofuels like ethanol, biodiesel, have attracted attention of people worldwide and proved to be the successful fuel alternates to petroleum products. In the present investigation, the effect of supercharging is studied on the performance of a direct injection diesel engine using ethanol diesel b...

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Main Authors: Donepudi Jagadish, Puli Ravi Kumar, Murthy Madhu K.
Format: Article
Language:English
Published: VINCA Institute of Nuclear Sciences 2011-01-01
Series:Thermal Science
Subjects:
Online Access:http://www.doiserbia.nb.rs/img/doi/0354-9836/2011/0354-98361100042D.pdf
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spelling doaj-1710f88928a041bdabfd548c0b73a56f2021-01-02T00:07:08ZengVINCA Institute of Nuclear SciencesThermal Science0354-98362011-01-011541165117410.2298/TSCI100513042DThe effect of supercharging on performance and emission characteristics of C.I. Engine with diesel-ethanol-ester blendsDonepudi JagadishPuli Ravi KumarMurthy Madhu K.Biofuels like ethanol, biodiesel, have attracted attention of people worldwide and proved to be the successful fuel alternates to petroleum products. In the present investigation, the effect of supercharging is studied on the performance of a direct injection diesel engine using ethanol diesel blends with palm stearin methyl ester as additive. The performance of the engine is evaluated in terms of brake specific fuel consumption, thermal efficiency, exhaust gas temperature, un-burnt hydrocarbons, carbon monoxide, nitrogen oxide emissions, and smoke opacity. The investigation results showed that the output and torque performance of the engine with supercharging was improved in comparison with naturally aspirated engine. It is observed that the brake thermal efficiency of ethanol diesel blends was higher than that of diesel. With supercharging brake thermal efficiency is further improved. Brake specific fuel consumption of ethanol, ester and diesel blends are lower compared with diesel at full load. Further reduction in brake specific fuel consumption is observed with supercharging. Nitrous oxide formation seems to decrease with ethanol, ester and diesel blends. Hydrocarbons and carbon monoxide emissions are more with ethanol, ester and diesel blends with supercharging slight reduction in those values are observed.http://www.doiserbia.nb.rs/img/doi/0354-9836/2011/0354-98361100042D.pdfbiofuelsethanol-diesel blendspalm stearin methyl estersuperchargingengine emissions
collection DOAJ
language English
format Article
sources DOAJ
author Donepudi Jagadish
Puli Ravi Kumar
Murthy Madhu K.
spellingShingle Donepudi Jagadish
Puli Ravi Kumar
Murthy Madhu K.
The effect of supercharging on performance and emission characteristics of C.I. Engine with diesel-ethanol-ester blends
Thermal Science
biofuels
ethanol-diesel blends
palm stearin methyl ester
supercharging
engine emissions
author_facet Donepudi Jagadish
Puli Ravi Kumar
Murthy Madhu K.
author_sort Donepudi Jagadish
title The effect of supercharging on performance and emission characteristics of C.I. Engine with diesel-ethanol-ester blends
title_short The effect of supercharging on performance and emission characteristics of C.I. Engine with diesel-ethanol-ester blends
title_full The effect of supercharging on performance and emission characteristics of C.I. Engine with diesel-ethanol-ester blends
title_fullStr The effect of supercharging on performance and emission characteristics of C.I. Engine with diesel-ethanol-ester blends
title_full_unstemmed The effect of supercharging on performance and emission characteristics of C.I. Engine with diesel-ethanol-ester blends
title_sort effect of supercharging on performance and emission characteristics of c.i. engine with diesel-ethanol-ester blends
publisher VINCA Institute of Nuclear Sciences
series Thermal Science
issn 0354-9836
publishDate 2011-01-01
description Biofuels like ethanol, biodiesel, have attracted attention of people worldwide and proved to be the successful fuel alternates to petroleum products. In the present investigation, the effect of supercharging is studied on the performance of a direct injection diesel engine using ethanol diesel blends with palm stearin methyl ester as additive. The performance of the engine is evaluated in terms of brake specific fuel consumption, thermal efficiency, exhaust gas temperature, un-burnt hydrocarbons, carbon monoxide, nitrogen oxide emissions, and smoke opacity. The investigation results showed that the output and torque performance of the engine with supercharging was improved in comparison with naturally aspirated engine. It is observed that the brake thermal efficiency of ethanol diesel blends was higher than that of diesel. With supercharging brake thermal efficiency is further improved. Brake specific fuel consumption of ethanol, ester and diesel blends are lower compared with diesel at full load. Further reduction in brake specific fuel consumption is observed with supercharging. Nitrous oxide formation seems to decrease with ethanol, ester and diesel blends. Hydrocarbons and carbon monoxide emissions are more with ethanol, ester and diesel blends with supercharging slight reduction in those values are observed.
topic biofuels
ethanol-diesel blends
palm stearin methyl ester
supercharging
engine emissions
url http://www.doiserbia.nb.rs/img/doi/0354-9836/2011/0354-98361100042D.pdf
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