Experimental and Theoretical Investigations on Combustion Performance and Emissions of Diesel Engine Fueled with Diesel Biodiesel Blends
Loading...
Date
item.page.authors
Journal Title
Journal ISSN
Volume Title
Publisher
Abstract
ABSTRACT
newlineAs the diesel oil price keep changing and its reserves keep decreasing, the use of diesel oil
newlinefor transportation and or industries should be minimized and replaced as much as possible by
newlinean alternative biofuel. On the other hand increasingly tough emissions regulations declared
newlineby different nations coupled with fast-depleting crude oil resources have caused a stimulation
newlineof interest in finding alternative fuels for petroleum-based fuels like diesel and gasoline in
newlineorder to keep the automotive industry alive. Biodiesel was found as the best alternate fuel,
newlinetechnically and environmentally acceptable, economically competitive and easily available. It
newlinehas received much attention in the past decade due to its ability to replace fossil fuels, which
newlineare likely to run out within a century.
newlineThe aim of the present study is to analyze the combustion characteristics, performance and
newlineemission parameters of a variable compression ratio
newline(VCR
newline)diesel engine using soybean
newlinemethyl ester
newline(SME
newline)biodiesel. The selection of soybean biodiesel is based on an extensive
newlinereview of literature which indicated that this is a relatively unexplored fuel on variable
newlinecompression ratio diesel engine. Initially the engine is fueled with diesel fuel to generate the
newlinebase line data, and then SME was tested as 20 % blend
newline(B20
newline), as 40% blend
newline(B40
newline) and as
newlinepure bio-fuel
newline(B100
newline) on volume basis. The experimental investigation is followed by a
newlinecomputational study by using the simulation software Diesel-RK consisting of full
newlineinvestigation on combustion, performance, emissions parameters of a single cylinder four
newlinestroke VCR diesel engine fueled with SME blends with diesel fuel and optimization strategy
newlinetechniques for predicting the optimum reduction in the exhaust emissions and controlling the
newlinebiodiesel NOx effect without sacrificing operating performance. Computational combustion
newlineand emissions analysis of diesel engine is done by using the CFD software
newline(ANSYS FLUENT 13
newline). The combustion chamber model was drawn using GAMBIT and the
newlinemeshing of the