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The effect of a multiple spark discharge ignition system and spark plug electrode configuration on cold starting of a dedicated E85-fueled vehicle

机译:多火花出点火系统和火花塞电极配置对专用E85燃料车辆的冷启动的影响

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This paper describes the experiments conducted to determine the effect of high-energy multiple spark discharge (MSD) ignition systems and spark plug electrode design, on the cold start performance of a vehicle which was converted for dedicated operation on E85 (a blend of 85% ethanol and 15% gasoline) fuel. Tests were conducted using three different ignition configurations; original equipment manufacturer (OEM) ignition and spark plugs, high-energy multiple spark discharge (MSD) ignition with OEM, J-type spark plugs, and high-energy MSD ignition with surface gap electrode spark plugs. The high-energy MSD ignition with OEM spark plugs showed a significant improvement in cold-start performance over the OEM ignition. The addition of the surface gap spark plugs caused a decrease in cold-start performance. Despite this, the surface gap spark plugs produced higher ending coolant temperature than the other configurations. The temperature difference results are inconclusive, but they indicate that surface gap spark plugs might be useful in reducing time to closed loop engine operation.
机译:本文介绍了确定高能量多火花放电(MSD)点火系统和火花塞电极设计的实验,在E85上转换为专用操作的车辆的冷启动性能(85%的混合物)的冷启动性能乙醇和15%汽油)燃料。使用三种不同的点火配置进行测试;原装设备制造商(OEM)点火和火花塞,高能量多火花放电(MSD)用OEM,J型火花塞和高能量MSD点火,带表面间隙电极火花塞。使用OEM火花塞的高能量MSD点火在OEM点火上显示了冷启动性能的显着提高。添加表面间隙火花塞导致冷启动性能降低。尽管如此,表面间隙火花塞产生比其他配置更高的结束冷却剂温度。温度差异结果不确定,但它们表明表面间隙火花塞可能在减少到闭环发动机操作的时间。

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