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Comparative studies on combustion, performance and emission characteristics of a two-wheeler with gasoline and 30% ethanol-gasoline blend using chassis dynamometer

机译:用底盘测功机用汽油和30%乙醇 - 汽油混合物的两轮燃烧,性能和排放特性的比较研究

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摘要

Mid-level ethanol-gasoline blends such as E30 offers significant advantages in terms of higher octane number, desirable Reid vapor pressure and water tolerance characteristics compared to lower blends. An experimental study was undertaken on a motorcycle with commercial gasoline (E0) and 30% ethanol blended gasoline (E30) using a chassis dynamometer. Combustion, performance and emissions characteristics were investigated under steady state (wide-open throttle - WOT) and transient (Indian driving cycle - IDC) operating conditions. In the WOT test, carbon monoxide and hydrocarbon emissions decreased however oxides of nitrogen (NOx) increased with E30 compared to E0. The specific fuel consumption was higher with E30 but vehicle power decreased. Combustion analysis showed an increased combustion duration and delay in heat release rate with E30. The peak combustion pressure and maximum rate of pressure rise were also lower. Mass emission studies over IDC test show a decrease in CO and NOx emissions with E30 while hydrocarbon emission increased marginally. The notable point emerged from the study is that the operating conditions and change in air-fuel mixture regime impact the performance and emissions of two-wheeler significantly. The present work provides useful information for designing a dedicated spark ignition engine suitable for mid-level ethanol blends.
机译:与较低混合物相比,中间级乙醇 - 汽油共混物如E30,理想的Reid蒸气压和耐水性特性,如E30,具有显着的优势。使用底盘测力计对具有商业汽油(E0)和30%乙醇混合汽油(E30)的摩托车上进行了实验研究。在稳态(宽开放式油门 - WOT)和瞬态(印度驾驶循环 - IDC)操作条件下调查了燃烧,性能和排放特性。在WOT试验中,与E0相比,通过E30增加氮气(NOx)的氮气(NOx)的氧化物增加。 E30的特定燃料消耗较高,但车辆功率降低。燃烧分析显示燃烧持续时间增加和延迟热释放速率与E30。峰值燃烧压力和最大压力升高速率也较低。对IDC试验的大规模排放研究表明CO和NOX排放量减少了E30,而烃排放略微增加。从研究中出现的显着点是空气燃料混合物制度的操作条件和变化会显着影响两轮车的性能和排放。本工作提供了设计适用于中间乙醇混合物的专用火花点火发动机的有用信息。

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