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A comparative analysis of the engine performance and exhaust emissions characteristics of a diesel engine fueled with Mono ethylene glycol supported emulsion

机译:用单乙二醇支撑乳液的柴油机发动机性能和废气排放特性的比较分析

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摘要

The present study was devoted to investigating the effect of input parameters- Mono ethylene glycol supported emulsion (MEGSE) ratio and engine speed-on their corresponding engine-out parameters including engine torque, BSFC, BSEC, BTE, CO, NOx, and soot emissions. At full-load condition, the MEGSE concentrations ranging from 0% to 20% were employed, whereas the engine speed varied from 1800 rpm to 3250 rpm. In comparison with neat diesel fuel, the BTE and engine torque decreased at high levels of MEGSE, and the CO, NOx, and soot emissions declined as well. The BSFC and BSEC values of the MEGSE/diesel blends was higher in comparison with base fuel. The response surface method was employed to propose multi-regression models and predict engine performance and exhaust emissions. Besides, the analysis of variance technique was utilized to analyse the derived models in terms of statistical significance. The optimization was performed to maximize engine performance and minimize exhaust emissions. The optimal engine operating conditions were found to be at an engine speed of 2603 rpm and a MEGSE concentration of 15.6%. The findings indicated that at this optimal condition, the values of engine torque, BTE, BSFC, BSEC, CO, NOx, and soot were found to be 17.24 Nm, 28.52%, 505.7 g/kWh, 9.48 MJ/kWh, 2123 ppm, 368 ppm, and 2.24 m(-1), respectively.
机译:本研究致力于研究输入参数 - 单乙二醇负载乳液(MEGSE)比和发动机速度对其相应的发动机输出参数的影响,包括发动机扭矩,BSFC,BSEC,BTE,CO,NOx和烟灰排放。在满载条件下,采用0%至20%的Megse浓度,而发动机速度从1800 rpm变化至3250rpm。与纯柴油燃料相比,BTE和发动机扭矩在高水平的大量下降,并且CO,NOx和烟灰发射也下降。与基础燃料相比,Megse /柴油共混物的BSFC和BSEC值更高。采用响应面方法提出多元回归模型并预测发动机性能和废气排放。此外,利用方差技术分析在统计显着性方面分析衍生模型。进行优化以最大化发动机性能并最小化排放。发现最佳发动机操作条件为2603rpm的发动机速度,浓度为15.6%。结果表明,在这种最佳条件下,发现发动机扭矩,BTE,BSFC,BSEC,CO,NOx和烟灰的值为17.24nm,28.52%,505.7g / kWh,9.48mJ / kWh,2123ppm, 368 ppm和2.24米(-1)。

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