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Review of Experimental and Computational Studies on Spray, Combustion, Performance, and Emission Characteristics of Biodiesel Fueled Engines

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TLDR
In this article, a critical review of the effect of biodiesel's fuel properties on engine performance, emissions, and combustion characteristics in existing diesel engines vis-a-vis conventional diesel has been undertaken.
Abstract
Biodiesel has emerged as a suitable alternative to mineral diesel in compression ignition (CI) engines in order to ensure global energy security and to reduce engine out emissions in near future. Biodiesel derived from various feedstocks available worldwide fits well in the current fuel supply arrangement for transport sector. However, biodiesel as an alternative transportation fuel has been extensively investigated because of differences in its important fuel properties compared with baseline mineral diesel. Since fuel properties greatly influence spray development, combustion, and emission formation in internal combustion (IC) engines, a number of experimental and computational studies on biodiesel usage in CI engines have been performed to determine its brake thermal efficiency (BTE), gaseous emissions, durability, etc., by various researchers using variety of engines and feedstocks. In the present paper, a critical review of the effect of biodiesel's fuel properties on engine performance, emissions, and combustion characteristics in existing diesel engines vis-a-vis conventional diesel has been undertaken. In addition, the progress and advances of numerical modeling involving biodiesel are also reviewed to determine the effect of fuel properties on spray evolution and development of reaction mechanisms for biodiesel combustion simulations. Fuel properties are discussed in two categories: physical and chemical properties, which are key parameters affecting spray and combustion processes. Subsequent sections review spray, combustion, emissions, and performance characteristics of biodiesels under various engine operation conditions. In the last section of this review paper, numerical modeling of biodiesel covering recent numerical models and schemes to understand the behavior of biodiesel combustion and pollutants formation is included. This review paper comprehensively summarizes biodiesel fuel's (BDFs) spray, combustion, and emission characteristics using experimental and numerical approaches. Limitations and scope for future studies are discussed in each section.

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Adaptation of Methanol–Dodecanol–Diesel Blend in Diesel Genset Engine

TL;DR: In this article, a single-cylinder engine fueled with MD10 and MD15 was compared with baseline mineral diesel using a fuel additive (1-dodecanol), and the results indicated that methanol blending with mineral diesel resulted in superior combustion, performance, emissions, and particulate characteristics.
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Combustion Performance Study of Aqueous Aluminum Oxide Nanofluid Blends in CI Engine

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Journal ArticleDOI

Biodiesel Spray Characteristics and Their Effect on Engine Combustion and Particulate Emissions

TL;DR: In this paper, a high-speed charge coupled device (CCD) camera at different fuel injection pressures (FIPs) and ambient pressures (APs) in a constant volume spray chamber was used to characterize the fuel spray evolution and spray shape, which affects in-cylinder combustion and particulate emission characteristics of compression ignition (CI) engines.
Journal ArticleDOI

The performance of turbocharged diesel engine with injected calophyllum inophyllum methyl ester blends and inducted babul wood gaseous fuels

TL;DR: In this article, a turbocharged diesel engine operated in dual fuel mode was investigated, where the gas flow rate was varied for all the fuels with fixed optimal loading conditions at 3.77
References
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Journal Article

A review on combustion, performance, and emission characteristics of fuels derived from oil seed crops (biodiesels)

TL;DR: From the present review, biodiesel fuels can be recommended as a prospective alternative fuel for conventional petro-diesel fuel.
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Free-piston linear generator and the development of a solid lubrication system

TL;DR: The free piston linear generator as discussed by the authors is a new electromechanical generator that converts chemical energy into electrical energy by means of a combustion process, a linear generator and a gas spring.
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Kinetic model for cloud-point blending of diesel fuels

TL;DR: A semi-empirical model, with two adjustable parameters, has been developed for predicting the cloud points following the blending of diesel fuel components as discussed by the authors, which is based on a kinetic argument deduced from the cloud-point dependence of the cooling rate.
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Deformational injection rate measuring method

TL;DR: In this article, the deformation of the membrane is measured using strain gauges, glued to the membrane and forming the Wheatstone's bridge, and the results of the measurements using this method showed that the differences occurred in injection rates of individual injection nozzle holes.
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