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Journal ArticleDOI

Investigation and Optimization of Diesel Engine Outputs Under Undi Biodiesel-Diesel Strategies

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TLDR
In this paper, the impact of Undi biodiesel blended diesel on combustion, performance, and exhaust fume profiles of a single-cylinder, four-stroke diesel engine was investigated.
Abstract
\n The present investigation accentuates the impact of Undi biodiesel blended diesel on combustion, performance, and exhaust fume profiles of a single-cylinder, four-stroke diesel engine. Five Undi biodiesel-diesel blends were prepared and tested at four variable loads over a constant speed of 1500 (±10) rpm. The Undi biodiesel incorporation to diesel notably improved the in-cylinder pressure and heat release rate (HRR) of the engine. The higher amount of Undi biodiesel addition enhanced the brake thermal efficiency (BTE) and brake specific energy consumption (BSEC) of the engine. In addition, the Undi biodiesel facilitated the reduction of the major pollutants, such as unburned hydrocarbon (UHC), carbon monoxide, and particulate matter (PM) emissions with slightly higher oxides of nitrogen emissions of the engine. To this end, a trade-off study was introduced to locate the favorable diesel engine operating conditions under Undi biodiesel-diesel strategies. The optimal results of the engine operation were found to be 32.65% of brake thermal efficiency, 1.21 g/kWh of brake specific cumulated oxides of nitrogen and unburned hydrocarbon, 0.94 g/kWh of brake specific carbon monoxide (BSCO), and 0.32 g/kWh of brake specific particulate matter (BSPM) for 50% (by volume) Undi biodiesel blend at 5.6 bar brake mean effective pressure (BMEP) with a relative closeness value of 0.978, which brings up the pertinence of the trade-off study in diesel engine platforms.

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Journal ArticleDOI

Multi-criteria analysis of alternative-fuel buses for public transportation

TL;DR: In this article, the authors considered the technological development of buses with new alternative fuels, and they considered several types of fuels as alternative-fuel modes, i.e., electricity, fuel cell (hydrogen), and methanol, and showed that the hybrid electric bus is the most suitable substitute bus for Taiwan urban areas in the short and median term.
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TL;DR: In this article, a single-cylinder diesel engine with a single cylinder engine and a single biodiesel engine used in generating sets and the agricultural applications in India was tested for their use as substitute fuels of diesel engines.
Journal ArticleDOI

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TL;DR: In this article, the performance and emission of 10% C. inophyllum biodiesel blends (CIB10) gave a satisfactory result in diesel engines as the brake thermal increase 2.30% and fuel consumption decrease 3.06% compared to diesel.
Journal ArticleDOI

Effect of fuel injection pressure and injection timing of Karanja biodiesel blends on fuel spray, engine performance, emissions and combustion characteristics

TL;DR: In this article, the effect of 10, 20, and 50% Karanja biodiesel blends on injection rate, atomization, engine performance, emissions and combustion characteristics of common rail direct injection (CRDI) type fuel injection system were evaluated in a single cylinder research engine at different start of injection timings and constant engine speed of 1500 rpm.
Journal ArticleDOI

Performance and emission study of preheated Jatropha oil on medium capacity diesel engine

TL;DR: In this paper, a dual-fuel engine test rig with an appropriately designed shell and tube heat exchanger (with exhaust bypass arrangement) was operated in such a way that it could give desired FIT.
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