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Thermal balancing and exergetic performance evaluation of a compression ignition engine fuelled with waste plastic pyrolytic oil and different fuel additives

机译:用废塑料热解油和不同燃料添加剂燃料的压缩点火发动机的热平衡和淬火性能评估

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This study aims at evaluating the heat energy and exergy values of waste plastic oil (WPO) blended diesel mixed with different fractions of fuel additives (ethanol as oxygenated fuel additive and nano graphene as nano additive) with a view to establish the thermal balancing of a diesel engine analytically taking experimental data and comparing with neat diesel oil. The research engine used was a four stroke, constant speed, stationary, direct injected, single cylinder, water-cooled compression ignition engine tested at different loading conditions. The thermal balance was prepared in respect of work output, heat loss in cooling, heat loss in exhaust gas, heat loss in lubrication and additional unaccounted heat losses in order to measure the efficiency of the engine in agreement with thermodynamics energy principles. Three test fuels with same plastic oil and different fuel additives concentration (comprising of 80% Diesel+20%WPO, 60% Diesel + 20%WPO+20% Ethanol and 80%Diesel +20% WPO+10 0 ppm nano gra-phene) are prepared for the engine test. The addition of ethanol in WPO blended diesel fuel mixture contributes marginal increase in brake thermal efficiency, decrease in brake specific fuel consumption, higher exhaust gas temperature and lower exergetic efficiency as compared to that of diesel. Nano graphene added to WPO blended diesel enhanced its energy along with exergy efficiency values as compared to other fuel mixtures under higher operating load condition. Fuel exergy for this fuel was increased by 18.57% in comparison to diesel at highest load. However, Exergy destruction and exhaust exergy were decreased by 34.97% and 14.03% respectively in comparison to diesel at highest load. Moreover, exergetic efficiency was enhanced by 18.9% than diesel at maximum load condition.(c) 2021 Elsevier Ltd. All rights reserved.
机译:本研究旨在评估废塑料油(WPO)混合柴油的热能和低级值与燃料添加剂(乙醇作为氧化燃料添加剂和纳米添加剂)的不同分数,以便建立一个热平衡柴油发动机分析实验数据并与整齐的柴油相比。使用的研究发动机是在不同负载条件下测试的四冲程,恒定速度,静止,直射,单缸,水冷压缩点火发动机。在工作输出,冷却中的热量损失,废气中的热量损失,润滑中的热量损失以及额外的未分立的热损失方面制备了热平衡,以便测量发动机的效率与热力学能量原理。三种试验燃料,具有相同的塑料油和不同的燃料添加剂浓度(包含80%柴油+ 20%WPO,60%柴油+ 20%WPO + 20%乙醇和80%柴油+ 20%WPO + 10 0 ppm纳米Gra-phene )准备发动机测试。在WPO混合柴油燃料混合物中加入乙醇在制动热效率下有助于边际增加,与柴油相比,制动燃料耗竭,较高的废气温度和较低的锻炼效率降低。与WPO混合柴油添加到WPO混合柴油的纳米石墨烯随着较高工作负荷条件下的其他燃料混合物而增强其能量。与最高载荷的柴油相比,这种燃料的燃料膨胀量增加了18.57%。然而,与最高载荷的柴油相比,高度破坏和排气驱动分别减少了34.97%和14.03%。此外,在最大载荷条件下,淬火效率比柴油增强了18.9%。(c)2021 elestvier有限公司保留所有权利。

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