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EFFECTS OF COOLANT TEMPERATURE ON THE PERFORMANCE AND EMISSIONS OF A DIESEL ENGINE

机译:冷却温度对柴油机性能和排放的影响

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Experiments were conducted on a four-cylinder, four-stroke, direct-injected diesel engine to study the effects of engine coolant temperature on both performance parameters and exhaust emissions. The energy balance is discussed on the bases of first-law analysis and second-law analysis. The range of speed investigated was 1000-2000 RPM for the torque range of 25-152 N.m. The coolant temperature was varied from 50 to 95 ℃. The present study shows that the coolant temperature has a significant effect on the volumetric efficiency. It also shows that increasing coolant temperature decreases the mass flow rate of fuel consumption and the cooling losses. As a result, the brake specific fuel consumption decreases and the brake thermal efficiency increases. A chart was developed for showing the relationship between the coolant temperature, equivalence ratio, brake torque, and brake specific fuel consumption. The study shows that the coolant temperature has a significant effect on NO_x emissions and minor effects on the volumetric percentages of oxygen, carbon dioxide, and carbon monoxide. The unburned hydrocarbons show insignificant variation. This work also shows that increasing coolant temperature slightly increases the availability of the coolant and decreases the total availability losses.
机译:在四缸,四冲程,直喷式柴油发动机上进行了实验,以研究发动机冷却液温度对性能参数和废气排放的影响。在第一定律分析和第二定律分析的基础上讨论了能量平衡。对于25-152 N.m的扭矩范围,研究的速度范围为1000-2000 RPM。冷却液温度在50到95℃之间变化。本研究表明,冷却液温度对容积效率有显着影响。它还表明,冷却液温度升高会降低燃料消耗的质量流率和冷却损失。结果,降低了制动器的特定燃料消耗并且提高了制动器的热效率。开发了一个图表,用于显示冷却液温度,当量比,制动扭矩和制动比油耗之间的关系。研究表明,冷却液温度对NO_x排放有显着影响,而对氧气,二氧化碳和一氧化碳的体积百分比影响较小。未燃烧的碳氢化合物的变化很小。这项工作还表明,提高冷却液温度会稍微增加冷却液的利用率,并减少总的利用率损失。

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