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Computational and experimental study of swirl flow within SI engine with modified shrouded intake valve

机译:改进的带罩进气门SI发动机内旋流的计算和实验研究

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Swirling flow can be used in a spark-ignition engine to increase turbulence intensity of the working fluid in the engine by using a shrouded intake valve. However, on using shrouded intake valve, a greater restriction to the incoming fluid is offered. In this backdrop, a computational and experimental study of swirl flow within the spark-ignition engine with a modified shrouded intake valve has been carried out and the same is then compared with 100 degrees, 120 degrees and 180 degrees shrouded intake valves. The results show that the fluid flow patterns generated by the intake valves within the engine cylinder are similar in nature. The engine with the modified shrouded intake valve generates a substantial amount of swirl with comparatively lesser restriction to the incoming fluid. Whereas, the engine using other types of intake valves, either generates higher swirl ratio with lower mean flow coefficient or lower swirl ratio with higher mean flow coefficient.
机译:涡流可用于火花点火发动机中,以通过使用带盖进气门来增加发动机中工作流体的湍流强度。然而,在使用带盖的进气门时,对进入的流体提供了更大的限制。在这种背景下,已经对带有改进的带罩进气门的火花点火发动机内的涡流进行了计算和实验研究,然后将其与100度,120度和180度带罩进气门进行了比较。结果表明,由发动机汽缸内的进气门产生的流体流型本质上是相似的。具有改进的带罩进气门的发动机产生大量涡流,对进入流体的限制相对较小。然而,使用其他类型的进气门的发动机要么以较低的平均流量系数产生较高的涡流比,要么以较高的平均流量系数产生较低的涡流比。

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