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Effects of engine cooling water temperature on performance and emission characteristics of a CI engine operated with biofuel blend

机译:发动机冷却水温度对混合生物燃料的CI发动机性能和排放特性的影响

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摘要

The temperature of the coolant is known to have significant influence on engine performance and emissions. Whereas existing literature describes the effects of coolant temperature in engines using fossil derived fuels, very few studies have investigated these effects when biofuel is used. In this study, Jatropha oil was blended separately with ethanol and butanol. It was found that the 80% jatropha oil + 20% butanol blend was the most suitable alternative, as its properties were closest to that of fossil diesel. The coolant temperature was varied between 50°C and 95°C. The combustion process enhanced for both diesel and biofuel blend, when the coolant temperature was increased. The carbon dioxide emissions for both diesel and biofuel blend were observed to increase with temperature. The carbon monoxide, oxygen and lambda values were observed to decrease with temperature. When the engine was operated using diesel, nitrogen oxides emissions correlated in an opposite manner to smoke opacity; however, nitrogen oxides emissions and smoke opacity correlated in an identical manner for biofuel blend. Brake specific fuel consumption was observed to decrease as the temperature was increased and was higher on average when the biofuel was used. The study concludes that both biofuel blend and fossil diesel produced identical correlations between coolant temperature and engine performance. The trends of nitrogen oxides and smoke emissions with cooling temperatures were not identical to fossil diesel when biofuel blend was used in the engine.
机译:已知冷却剂的温度对发动机性能和排放有重大影响。现有文献描述了使用化石衍生燃料的发动机中冷却液温度的影响,但很少有研究研究使用生物燃料时的这些影响。在这项研究中,麻风树油分别与乙醇和丁醇混合。发现80%的麻风树油+ 20%的丁醇混合物是最合适的替代品,因为它的性能最接近化石柴油。冷却液温度在50°C至95°C之间变化。当冷却液温度升高时,柴油和生物燃料混合物的燃烧过程都会增强。观察到柴油和生物燃料混合物的二氧化碳排放均随温度增加。观察到一氧化碳,氧气和λ值随温度降低。当使用柴油机运转发动机时,氮氧化物的排放与烟的不透明度相反。然而,氮氧化物的排放与烟气的不透明度以相同的方式关联于生物燃料混合物。观察到制动器的比燃料消耗随着温度的升高而降低,并且在使用生物燃料时平均更高。研究得出结论,生物燃料混合物和化石柴油在冷却液温度和发动机性能之间产生了相同的相关性。当在发动机中使用生物燃料混合物时,氮氧化物和烟气排放随冷却温度的变化趋势与化石柴油不同。

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