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首页> 外文期刊>Journal of Petroleum & Environmental Biotechnology >Effect of Number of Injector Nozzle Holes on the Performance, Emission and Combustion Characteristics of Honge Oil Biodiesel (HOME) Operated DI Compression Ignition Engine
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Effect of Number of Injector Nozzle Holes on the Performance, Emission and Combustion Characteristics of Honge Oil Biodiesel (HOME) Operated DI Compression Ignition Engine

机译:喷油嘴孔数对本格生物柴油驱动的DI压燃式发动机性能,排放和燃烧特性的影响

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This paper aims to present the inferences of the experimental studies on the performance, emission and combustion characteristics of Honge oil methyl ester (HOME) as a fuel for a single-cylinder direct injection diesel engine using response surface methodology (RSM) based mathematical modeling which are developed taking 27 set of experimental results. Experiments were carried out to study the effects of compression ratio, injection pressure and injection timing on performance characteristics like brake thermal efficiency (BTE), emissions such as smoke, hydrocarbon (HC), carbon monoxide (CO), nitric oxides (NOx) and combustion characteristics, namely, peak pressure and heat release rate (HRR) in a diesel engine using 3 and 4 hole injectors. The experiments were planned as per full factorial design (FFD) and RSM based quadratic models were developed to establish the relationships between the process parameters and the proposed characteristics. The response surface analysis based on the experimental results reveal that by retarding the injection timing (IT), increasing the injector-opening pressure (IOP) as well as the compression ratio would lead to increased BTE and reduced emissions. Increasing the number of nozzle holes improves the performance of diesel engine fueled with HOME in terms of increased BTE, reduced emissions like smoke, HC, CO and increased peak pressure and HRR. However, NOx emission increases with increased number of holes.
机译:本文旨在利用基于响应面法(RSM)的数学建模方法,对洪格油甲酯(HOME)作为单缸直喷柴油机燃料的性能,排放和燃烧特性进行实验研究,以得出结论。根据27组实验结果进行开发。进行实验以研究压缩比,喷射压力和喷射时间对性能特性的影响,例如制动热效率(BTE),排放物例如烟气,碳氢化合物(HC),一氧化碳(CO),一氧化氮(NOx)和燃烧特性,即使用3和4孔喷油嘴的柴油发动机的峰值压力和放热率(HRR)。根据全因子设计(FFD)计划了实验,并开发了基于RSM的二次模型以建立过程参数与建议特性之间的关系。基于实验结果的响应面分析表明,通过延迟喷射正时(IT),增加喷射器打开压力(IOP)以及压缩比将导致BTE增大和排放降低。就增加BTE,减少排放物(例如烟,HC,CO)以及增加的峰值压力和HRR而言,增加喷嘴孔的数量可以改善使用HOME燃料的柴油发动机的性能。但是,NOx排放随着孔数量的增加而增加。

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