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Study of a Diesel Engine Performance with Exhaust Gas Recirculation (EGR) System Fuelled with Palm Biodiesel

机译:棕榈生物柴油为燃料的带有废气再循环(EGR)系统的柴油机性能研究

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摘要

The increase in world population leads to the growthin energy demand. The primary sources of this energycome from the combustion of fossil fuel which producing oxides of nitrogen and other harmful greenhouse gas emission. However, biodiesel offers a solution as an alternative fuel for internal combustion engine but higher in NOx emission. Exhaust gas recirculation (EGR) system is used to lower the NOx emission.This paper focuses on determining the effect of EGR and palm biodiesel on fuel consumption (SFC), exhaust gas temperature (EGT) and exhaust emissions (NOx, CO, UHC, and CO2). Experimental works using a multi-cylinder diesel engine with EGR and simulated works using Diesel-RK were performed at a constant engine speed of 2500 rpm in full load condition. The results showed that, from the simulated and experimental works, palm biodiesel significantly increased fuel consumption, increased NOx and slightly decreases in other emissions including CO2, CO, and unburned hydrocarbon (UHC). However, the use of EGR shows a significant reduction in the NOx emission and exhaust temperature but increases in fuel economy, CO, CO2, and UHC emissions.
机译:世界人口的增加导致能源需求的增长。这种能源的主要来源来自化石燃料的燃烧,该化石燃料产生氮氧化物和其他有害的温室气体排放。然而,生物柴油提供了一种解决方案,作为内燃机的替代燃料,但NOx排放较高。废气再循环(EGR)系统用于降低NOx排放量。本文着重于确定EGR和棕榈生物柴油对燃料消耗量(SFC),废气温度(EGT)和废气排放量(NOx,CO,UHC,和二氧化碳)。使用具有EGR的多缸柴油发动机的实验工作和使用Diesel-RK的模拟工作是在满载条件下以2500 rpm的恒定发动机转速进行的。结果表明,从模拟和实验工作来看,棕榈生物柴油显着增加了燃料消耗,增加了NOx并降低了其他排放,包括CO2,CO和未燃烧的碳氢化合物(UHC)。但是,使用EGR会显着降低NOx排放和排气温度,但会增加燃油经济性,CO,CO2和UHC排放。

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