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Effect of Spark Timing on Performance and Emissions of a Small Spark Ignition Engine with Dual Ethanol Fuel Injection

机译:火花时机对双乙醇燃料喷射的小火花点火发动机性能和排放的影响

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Ethanol as a renewable fuel has been used widely in vehicles. Dual fuel injection is one of the new techniques in development for increasing the engine’s thermal efficiency and reducing the pollutant emissions. This study reports experimental investigation to the dual ethanol fuel injection with a focus on the effect of spark timing on the engine performance at different volumetric ratios of ethanol directly injected to ethanol port injected. Experiments were conducted on a single cylinder 250cc spark ignition engine at two engine loads and 3500 RPM. The spark timing was varied from 15 to 42 CAD bTDC at the light load and from 15 to 32 CAD bTDC at the medium load, while the volumetric ratio of direct injection (DI%) was varied from 0% to 100%. Experimental results showed that DI100%, the best indicated mean effective pressure (IMEP) and thermal efficiency occurred at around 30 CAD bTDC at the light load and 23 CAD bTDC at the medium load, which were the minimum spark advance for the best torque (MBT). At MBT spark timing, the IMEP at DI56% and light engine load was 8.28% greater than that at 15 CAD bTDC which was the original spark timing set by the manufacturer, and the combustion duration (CA10-90%) was 41.8% shorter. These results were attributed to the improved combustion phase associated with the increased combustion pressure and temperature when the spark timing was advanced. However, the indicated specific hydrocarbon and carbon monoxide emissions increased with advanced spark timing and increased DI ratio. These could be caused by local rich mixture formed by fuel impinged to the chamber walls and the ethanol’s cooling effect associated with the direct injection. On the other hand, because of the charge cooling effect of DI, the indicated specific nitric oxide emission decreased with increased DI ratio. At MBT timing and light load, the indicated specific nitric oxide emission decreased by 37.53% at DI56% and 67.39% at DI100% compared to port injection only.
机译:乙醇作为可再生燃料已广泛用于车辆。双燃料喷射是提高发动机的热效率和减少污染物排放的新技术之一。本研究向双乙醇燃料喷射报告了对双乙醇燃料喷射的实验研究,重点是火花正时对直接注射乙醇端口的乙醇的不同体积比率的发动机性能的影响。在两个发动机负载和3500rpm的单个汽缸250cc火花点火发动机上进行实验。火花正时在光负荷下的15至42 CAD BTDC在培养基负载下在15至32 CAD BTDC中变化,而直接注射(DI%)的体积比从0%变化至100%。实验结果表明,DI100%,最佳指示的平均有效压力(IMEP)和热效率在近30 CAD BTDC在中等负载下的23 CAD BTDC发生,这是最佳扭矩的最小火花提前(MBT )。在MBT火花正时,IMEP在DI56%和灯发动机负载下的8.28%比制造商所设定的原始火花正时的15个CAD BTDC,燃烧持续时间(CA10-90%)较短。这些结果归因于随着燃烧压力和温度提高时的改进燃烧阶段,当火花正时出现时。然而,所示的特定烃和一氧化碳排放随着先进的火花正时和增加的DI比率而增加。这些可能是由撞击腔室壁的燃料形成的本地富含混合物和与直喷相关的乙醇的冷却效果引起。另一方面,由于DI的电荷冷却效果,所示的特定一氧化氮发射随着DI比率的增加而降低。在MBT时序和光负荷下,与仅与端口注射相比,所示的特定一氧化氮发射在DI56%下减少37.53%,67.39%。

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