高性能单缸奥托发动机可编程CDI点火正时试验研究

R. A. Rachmanto, Martinus Darmawan Bagas Wijayanto, W. E. Juwana, P. Kataraki
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引用次数: 0

摘要

点火正时是从火花塞火花基于点火角度在压缩行程期间在燃烧室相对于活塞位置和曲轴角速度。调节点火角是优化发动机燃烧过程的一种方法。优化燃烧过程可以提高发动机性能,降低油耗。本研究利用可编程CDI研究点火角度变化的最佳数据。测试在单缸四冲程Otto发动机上进行,在上止点前,该发动机的点火角分别为+3°、+6°和+9°。试验结果表明,扭矩和功率均有提高,而制动油耗有所降低。点火角为+9°时数据采集最佳,峰值扭矩为6.91 Nm,峰值功率为4.80 kW,比油耗最小值为0.234 kg/kWh,热效率最高值为36%。通过研究,得出点火正时对发动机性能的影响。
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Experimental Test of Ignition Timing with Programable CDI on Performance Single Cylinder Otto Engine
Ignition timing is sparking from the spark plug based on the ignition angle during the compression stroke in the combustion chamber relative to the piston position and the crankshaft angular speed. Adjusting the ignition angle is one method to optimize the combustion process in the engine. An optimal combustion process can improve engine performance and reduce fuel consumption. This study investigates optimal data from ignition angle changes using a programmable CDI. The test was performed on a single-cylinder fourstroke Otto engine with standard ignition angle variations, +3°, +6°, and +9° before TDC. The test results show that torque and power have increased while brake-specific fuel consumption has decreased. Optimal data acquisition at ignition angle of +9° with peak torque value of 6.91 Nm and peak power value of 4.80 kW, while the lowest value of specific fuel consumption is 0.234 kg/kWh, and the highest value of thermal efficiency is 36 %. From this study, it was concluded that the ignition timing could affect the engine performance.
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