Investigation of engine performance and emission parameters of a diesel engine fueled with Foeniculum vulgare oil biodiesel – ammonia mixtures

Ömer Böyükdipi, G. Tüccar
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引用次数: 1

Abstract

© This article is distributed by Turk Journal Park System under the CC 4.0 terms and conditions. Past studies revealed that Foeniculum vulgare oil biodiesel (FVB) can be used as a good candidate for diesel fuels. Ammonia (NH3) as a fuel additive can be mixed with other fuels to eliminate some disadvantages of the fuels in engine performance and emission. In view of such information, this study aims to investigate the effects of FVB with NH3 additive on engine performance and emission parameters in Diesel-RK Programme. In this study, FVB was mixed with NH3 additive in different proportions (FVB100, FVB95A5, FVB90A10, FVB85A15 and FVB80A20). The exhaust emissions (Oxides of Nitrogen (NOx), Particulate Matter (PM) and Smoke Opacity) and engine performance (Specific Fuel Consumption (SFC), Power, Torque and Volumetric Efficiency) parameters were evaluated according to the combustion simulations in different RPM values. As a result of this study, some obtained results were revealed that the NH3 additive in FVB significantly decreased the NOx parameter. However, when the NH3 content in FVB was increased, PM and smoke opacity parameters increased. For the engine performance parameters, the NH3 additive in FVB adversely affected the engine power and torque parameters. On the other hand, specific fuel consumption and volumetric efficiency showed an increment trend as the NH3 content in FVB was increased.
以小茴香油、生物柴油和氨混合燃料为燃料的柴油机性能和排放参数研究
©本文由土耳其期刊公园系统在CC 4.0条款和条件下分发。过去的研究表明,小茴香油生物柴油(FVB)是一种很好的候选柴油燃料。氨(NH3)作为燃料添加剂可以与其他燃料混合,以消除燃料在发动机性能和排放方面的一些缺点。鉴于此,本研究旨在研究添加了NH3添加剂的FVB对柴油- rk项目发动机性能和排放参数的影响。本研究将FVB与不同比例的NH3添加剂(FVB100、FVB95A5、FVB90A10、FVB85A15和FVB80A20)混合。根据不同转速下的燃烧模拟,评估了废气排放(氮氧化物(NOx)、颗粒物(PM)和烟雾不透明度)和发动机性能(比油耗(SFC)、功率、扭矩和容积效率)参数。研究结果表明,在FVB中添加NH3可以显著降低NOx参数。但随着FVB中NH3含量的增加,PM和烟浊度参数也随之增加。对于发动机性能参数,FVB中NH3添加剂对发动机功率和扭矩参数有不利影响。另一方面,随着FVB中NH3含量的增加,比油耗和容积效率呈增加趋势。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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