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Renewable Biodiesel/Reference Diesel Fuel Mixtures Distribution in Non - Evaporating and Evaporating Conditions for Diesel Engines

机译:可再生生物柴油/参考柴油燃料混合物在柴油发动机的非蒸发和蒸发条件下的分布

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In spite of the recent trend, voted toward the reduction of renewable energy sources deriving from crops, the EC Commission proposes that the proportion of energy from renewable sources in the transportation sector should be at least 20% of its final energy consumption by the year 2020. In this framework, the activities aiming to study the effects on engine performances, emissions and fuel consumption of alternative diesel fuel receive continue stimulations and supports. In this paper, results of the different behavior of biodiesel fuels in the injection process and their impact on the air-fuel mixture preparation are reported. The injection process characterization has been carried out in a non-evaporative high-density ambient in order to measure the fuel injection rate and the spatial and temporal distribution of the fuel. Moreover, the injection and combustion processes have been characterized in an optically accessible single-cylinder Common Rail diesel engine that represented evaporative conditions similar to the real engine. The studied injections have been chosen for engine working conditions of 1500 rpm at 2 bar of BMEP. A double injection strategy (pilot+main) has been adopted and a pilot energizing time has been calibrated to deliver 1.0 mm~3. First generation of biodiesels like Rapeseed Methyl Ether (RME) and Soybean Methyl Ether (SME) and second generation of biodiesel like gas to liquid (GTL) have been mixed with reference diesel fuel (50% + 50%) and characterized in non-evaporating ambient while pure diesel fuel and its GTL mixture have been studied in evaporating ambient. Images of evolving fuel in non-evaporative conditions, captured by a high resolution CCD camera at different instants from the start of injection and for different operative conditions, have been processed extracting the main parameters of the jet evolution: tip penetration, spray-cone angle, spray density distribution. These data have been also acquired in the combustion chamber of the optical diesel engine by means of a high resolution CCD camera synchronized with the injection events. Moreover the combustion processes have been studied and the pollutant emissions have been measured for several engine working conditions and biodiesel mixes.
机译:尽管最近的趋势,但欧盟委员会投票减少了从作物中得出的可再生能源,委员会提出了2020年的可再生能源的能源比例至少2020年最终能源消耗的20% 。在本框架中,旨在研究对发动机性能,排放和替代柴油燃料的燃料消耗的影响的活动接收继续刺激和支撑。在本文中,报道了注射过程中生物柴油燃料不同行为的结果及其对空气 - 燃料混合物制备的影响。注射过程表征已经在非蒸发的高密度环境中进行,以测量燃料喷射率和燃料的空间和时间分布。此外,注射和燃烧过程已经表征在光学可接近的单缸公共轨道柴油发动机中,其表示类似于真实发动机的蒸发条件。已经选择了研究的注射为1500 rpm的发动机工作条件,在BMEP的2巴中。采用双注射策略(飞行员+主要),并校准了导频激励时间以提供1.0 mm〜3。第一代生物柴油如油菜籽甲基醚(RME)和大豆甲基醚(SME)和第二代生物柴油与液体(GTL)相同的气体(GTL)已与参考柴油燃料(50%+ 50%)混合,并在非蒸发中表征在蒸发环境中已经研究了纯柴油燃料及其GTL混合物。通过从注射开始和不同操作条件的不同时刻,通过高分辨率CCD照相机捕获的非蒸发条件中不断变化的燃料的图像已被加工提取喷射进化的主要参数:尖端渗透,喷雾锥角,喷雾密度分布。通过与注射事件同步的高分辨率CCD相机,还已经在光学柴油机的燃烧室中获取了这些数据。此外,已经研究了燃烧过程,并且已经测量了几种发动机工作条件和生物柴油混合物的污染物排放。

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