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COMBUSTION VISUALIZATION AND EMISSIONS OF A DIRECT INJECTION COMPRESSION IGNITION ENGINE FUELED WITH BIO-DIESOHOL

机译:生物柴油直接注射压缩点火发动机的燃烧可视化与排放

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摘要

The purpose of this paper is to experimentally investigate the engine pollutant emissions and combustion characteristics of diesel engine fueled with ethanol-diesel blended fuel (bio-diesohol). The experiments were performed on a single-cylinder DI diesel engine. Two blend fuels were consisted of 15% ethanol, 83.5% diesel and 1.5% solublizer (by volume) were evaluated : one without cetane improver (E15-D) and one with a cetane improver (E15-D+CN improver). The engine performance parameters and emissions including fuel consumption, exhaust temperature, lubricating oil temperature, Bosch smoke number, CO, NO{sub}x, and THC were measured, and compared to the baseline diesel fuel. In order to gain insight into the combustion characteristics of bio-diesohol blends, the engine combustion processes for blended fuels and diesel fuel were observed using an Engine Video System (AVL 513). The results showed that the brake specific fuel consumption (BSFC) increased at overall engine operating conditions, but it is worth noting that the brake thermal efficiency (BTE) increased by up to 1-2.3% with two blends when compared to diesel fuel. It is found that the engine fueled with ethanol-diesel blend fuels has higher emissions of THC, lower emissions of CO, NO{sub}x, and smoke. And the results also indicated that the cetane improver has positive effects on CO and NO{sub}x emissions, but negative effect on THC emission. Based on engine combustion visualization, it is found that ignition delay increased, combustion duration and the luminosity of flame decreased for the diesohol blends. The combustion is improved when the CN improver was added to the blend fuel.
机译:本文的目的是通过实验研究以乙醇-柴油混合燃料(生物柴油)为燃料的柴油发动机的发动机污染物排放和燃烧特性。实验是在单缸DI柴油机上进行的。评价了两种混合燃料,分别由15%的乙醇,83.5%的柴油和1.5%的增溶剂(按体积计)组成:一种不带十六烷值改进剂(E15-D),一种带十六烷值改进剂(E15-D + CN改进剂)。测量了发动机性能参数和排放物,包括油耗,排气温度,润滑油温度,博世烟气量,CO,NO {x} x和THC,并与基准柴油进行了比较。为了深入了解生物柴油混合物的燃烧特性,使用发动机视频系统(AVL 513)观察了混合燃料和柴油燃料的发动机燃烧过程。结果表明,在整个发动机工况下,制动比燃油消耗(BSFC)有所增加,但是值得注意的是,与柴油相比,两种混合燃料的制动热效率(BTE)最高提高了1-2.3%。发现以乙醇-柴油混合燃料为燃料的发动机具有较高的THC排放,较低的CO,NO x和烟气排放。结果还表明,十六烷值改进剂对CO和NO {sub} x排放有积极影响,而对THC排放却有不利影响。基于发动机燃烧可视化,发现二元醇混合物的点火延迟增加,燃烧持续时间和火焰的发光度降低。当将CN改进剂添加到混合燃料中时,燃烧得到改善。

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