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首页> 外文期刊>Applied Energy >Investigation on the effect of injection system parameters on performance and emission characteristics of a twin cylinder compression ignition direct injection engine fuelled with pongamia biodiesel-diesel blend using response surface methodology
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Investigation on the effect of injection system parameters on performance and emission characteristics of a twin cylinder compression ignition direct injection engine fuelled with pongamia biodiesel-diesel blend using response surface methodology

机译:响应面法研究喷射系统参数对双燃料生物柴油-柴油混合燃料双缸压缩点火直喷发动机性能和排放特性的影响

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摘要

This study is aimed at investigating the effect of injection system parameters such as injection pressure, injection timing and nozzle tip protrusion on the performance and emission characteristics of a twin cylinder water cooled naturally aspirated C1DI engine. Biodiesel, derived from pongamia seeds through transesterification process, blended with diesel was used as fuel in this work. The experiments were designed using a statistical tool known as Design of Experiments (DoE) based on response surface methodology (RSM). The resultant models of the response surface methodology were helpful to predict the response parameters such as Brake Specific Energy Consumption (BSEC), Brake Thermal Efficiency (BTE), Carbon monoxide (CO), Hydrocarbon (HC), smoke opacity and Nitrogen Oxides (NO_X) and further to identify the significant interactions between the input factors on the responses. The results depicted that the BSEC, CO, HC and smoke opacity were lesser, and BTE and NO_x were higher at 2.5 mm nozzle tip protrusion, 225 bar of injection pressure and at 30° BTDC of injection timing. Optimization of injection system parameters was performed using the desirability approach of the response surface methodology for better performance and lower NO_X emission. An injection pressure of 225 bar, injection timing of 21° BTDC and 2.5 mm nozzle tip protrusion were found to be optimal values for the pongamia biodiesel blended diesel fuel operation in the test engine of 7.5 kW at 1500 rpm.
机译:这项研究旨在研究喷射系统参数(例如喷射压力,喷射正时和喷嘴尖端伸出)对双缸水冷自然吸气C1DI发动机的性能和排放特性的影响。通过酯交换反应从浮游植物种子中提取的生物柴油与柴油混合用作这项工作的燃料。使用基于响应面方法(RSM)的统计工具(称为实验设计(DoE))设计实验。响应面方法的结果模型有助于预测响应参数,例如制动比能耗(BSEC),制动热效率(BTE),一氧化碳(CO),碳氢化合物(HC),烟气不透明度和氮氧化物(NO_X) ),并进一步确定响应中输入因素之间的重要互动。结果表明,在2.5 mm喷嘴尖端突出,225 bar的喷射压力和30°BTDC的喷射正时,BSEC,CO,HC和烟的不透明度较低,而BTE和NO_x较高。使用响应面方法的合意性方法对喷射系统参数进行了优化,以获得更好的性能和更低的NO_X排放量。对于在1500 rpm转速下的7.5 kW测试发动机中的浮游生物生物柴油混合柴油操作,发现225 bar的喷射压力,21°BTDC的喷射正时和2.5 mm的喷嘴尖端突出是最佳值。

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