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Performance and Emission Analysis of Compression Ignition Engine With Neem Methyl Ester Mixed With Cerium Oxide (CeO_2) Nanoparticles

机译:用氧化铈(CEO_2)纳米粒子混合新甲基酯的压缩点火发动机的性能和排放分析

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摘要

This paper depicts Box-Behnken design (BBD) approach to optimize the performance and emission characteristics of adjustable compression ratio, single- cylinder diesel engine with nanoparticle-blended biofuel. Cerium oxide (CeO_2) nanoparticles and diethyl ether (DEE) are mixed with neem methyl ester (NME) in corresponding ratios as per BBD experimental plan. Engine performance characteristics brake thermal efficiency (BTE), brake-specific fuel consumption (BSFC), and NO_x CO, HC, and CO_2 emissions have been analyzed. To study the influence of input parameters, quadratic models are developed on each output response using analysis of variance (ANOVA). Desirability function approach has been used to optimize the performance of multi-response parameters. The results revealed that nanoparticles mixed blends of NME and DEE enhances the performance characteristics and reduce the harmful emissions.
机译:本文描绘了Box-Behnken设计(BBD)方法,优化可调节压缩比的性能和排放特性,具有纳米粒子混合生物燃料的单缸柴油发动机。根据BBD实验计划,将氧化铈(CeO_2)纳米颗粒和乙醚(DEE)与相应的比例混合在相应的比率中。发动机性能特性制动热效率(BTE),制动特定的燃料消耗(BSFC)和NO_X CO,HC和CO_2排放。为了研究输入参数的影响,使用方差分析(ANOVA)在每个输出响应上开发了二次模型。期望功能方法已被用于优化多响应参数的性能。结果表明,NME和DEE的纳米粒子混合共混物增强了性能特征,减少了有害排放。

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