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An Investigation on Knock and Pre-Ignition with Tumble-Induced Turbulence

机译:带浊诱导的湍流爆震和预点火的调查

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A study on the effect of induction manifold angles in tumble-induced turbulence on detonation and pre-ignition in spark-ignition engines was conducted on a Ricardo E6 variable compression engine. A new cylinder head was designed and manufactured with four induction manifold inserts with angles of 30°, 40°, 50° and 60° in addition to the original angle of 90°. The onset of pre-ignition and detonation were defined by a piezoelectric pressure transducer. Knock was characterized by the "knock-limited compression ratio" concept. However pre-ignition was characterized by the input electrical power consumed by a pre-igniter acting as an artificial hot spot. A set of experiments were carried out on each induction manifold to cover the effect of the design and operating parameters of the engine on detonation and pre-ignition. The experiments revealed that the pre-ignition and detonation tendency increase with the increase of engine load, compression ratio, inlet air temperature, advancing the ignition timing and lowering the engine speed. Correlations were developed for the optimum angles of 40° and 50° to enable the onset of knock and pre-ignition to be predicted.
机译:上感应歧管的作用的研究在转筒式诱导湍流角上爆轰和在火花点火式发动机的预点火物上的里卡多E6可变压缩引擎进行的。一个新的气缸盖的设计,并用四个感应歧管插入具有30角°,40°,50°和60°除了90原来的角度°制造。预点火和爆炸的发生是由压电压力传感器限定。爆震的特点是“爆震限制压缩比”的概念。然而预点火的特点是通过作为人工热点预点火器消耗的输入电功率。一组实验是在各感应歧管中进行,以覆盖设计的操作参数的发动机的上爆炸的影响,并与预点火。实验显示,该预点火和爆炸的趋势增加与发动机负荷,压缩比,进口空气温度的上升,提前点火正时和降低发动机转速。相关性进行了对于40°和50°的最佳角度,使爆震和提前点火的发生要被预测的发展。

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