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首页> 外文期刊>International Journal of Sustainable and Green Energy >Effect of silver nano-particle blended biodiesel and swirl on the performance of diesel engine combustion
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Effect of silver nano-particle blended biodiesel and swirl on the performance of diesel engine combustion

机译:银纳米颗粒混合生物柴油和涡流对柴油机燃烧性能的影响

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摘要

Increased energy requirement in sectors like transportation, power generation and others coupled with depletion of high energy non-renewable energy resources like petroleum products and their harmful tail pipe emissions has led to search for new alternative and renewable energy resources. Different methods have been adopted to reduce tail pipe emissions and these include engine modification, fuel alteration, and exhaust gas treatment. Low emission characteristics and equivalent energy density of biodiesel are useful for replacement for petroleum fuels in internal combustion engines. Recently addition of catalytic reactivity materials like metal and oxide materials to biodiesel and their effect on engine performance has been reported in the literature. Due to their special properties like higher thermal conductivity, chemical and electrical properties enhanced properties of the base fuel diesel/biodiesel when these additives were used has been reported. In the present work both engine modification as well as fuel alteration techniques have been adopted to study their effect on diesel engine performance and emission characteristics. Engine modification involved provision of tangential slots on the piston crown surface. Fuel modification included addition of metal and metal oxide nano-particles to Honge biodiesel called Honge Oil Methyl Ester (HOME) as an alternative fuel for diesel engine applications. Experimental investigations were carried out to determine performance, emission, and combustion characteristics of diesel engine operated on diesel, HOME and HOMEsilver nano-particles blended fuels. The biodiesel was prepared from honge oil called Honge Oil Methyl Ester [HOME]. The silver nano-particles were blended with HOME in the mass fractions of 25ppm and 50ppm using a mechanical homogenizer and an ultrasonicator. Subsequently, the stability characteristics of silver nano-particles blended-biodiesel fuels were analyzed under static conditions for their homogeneity. A considerable enhancement in the brake thermal efficiency with substantial reduction in the harmful pollutants from the engine for the nano-additive biodiesel blends was observed. Maximum brake thermal efficiency was obtained for HOME+ 50SILVER with reduced harmful pollutants compared to HOME+25SILVER blends. With swirl intended slots provided on the piston crown surface the performance was further improved using HOME+50SILVER in general and for 6.5mm slot on the combustion chamber in particular.
机译:交通,发电等行业对能源的需求增加,加上石油产品等高能不可再生能源的枯竭及其有害的尾管排放,导致人们寻求新的替代能源和可再生能源。已经采用了不同的方法来减少尾管排放,这些方法包括发动机改装,燃料更换和废气处理。生物柴油的低排放特性和等效能量密度可用于替代内燃机中的石油燃料。最近在文献中已经报道了将催化反应性材料如金属和氧化物材料添加到生物柴油中及其对发动机性能的影响。由于它们的特殊性能,例如较高的导热性,已经报道了使用这些添加剂时基础燃料柴油/生物柴油的化学和电气性能得到了增强。在目前的工作中,已经采用了发动机改装以及燃料更换技术来研究其对柴油机性能和排放特性的影响。发动机改装涉及在活塞顶表面上提供切向槽。燃料改性包括将金属和金属氧化物纳米颗粒添加到称为“ Honge Oil Methyl Ester(HOME)”的Honge生物柴油中,作为柴油发动机应用的替代燃料。进行了实验研究以确定使用柴油,HOME和HOMEsilver纳米颗粒混合燃料运行的柴油机的性能,排放和燃烧特性。该生物柴油由称为“ Honge Oil Methyl Ester”的honge油制备。使用机械均化器和超声仪将银纳米颗粒与HOME以25ppm和50ppm的质量分数混合。随后,在静态条件下分析了银纳米颗粒共混生物柴油燃料的稳定性特征。对于纳米添加剂生物柴油混合物,观察到了制动热效率的显着提高,同时大大减少了来自发动机的有害污染物。与HOME + 25SILVER共混物相比,HOME + 50SILVER可获得最高的制动热效率,有害污染物减少。通过在活塞顶面上设置涡流预定槽,通常使用HOME + 50SILVER可以进一步改善性能,尤其是在燃烧室上可以使用6.5mm槽。

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