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In-cylinder tumble flows and performance of a motorcycle engine with circular and elliptic intake ports

机译:带有圆形和椭圆形进气口的摩托车发动机的缸内翻转流量和性能

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摘要

The temporal and spatial evolution processes of the flows in the cylinder of a four-valve, four-stroke, single cylinder, reciprocating motorcycle engine installed with the elliptic and circular intake ports were experimentally studied by using the particle image velocimetry (PIV). The engine was modified to fit the requirements of PIV measurement. The velocity fields measured by the PIV were analyzed and quantitatively presented as the tumble ratio and turbulence intensity. In the symmetry plane, both the circular and elliptic intake ports could initiate a vortex around the central region during the intake stroke. During the compression stroke, the central vortex created in the cylinder of the engine with the circular intake port disappeared, while that in the engine cylinder with the elliptic intake port further developed into the tumble motion. In the offset plane, weak vortical structures were initiated by the bluff-body effect of the intake valves during the intake stroke. The vortical structures induced by the elliptic intake port were more coherent than those generated by the circular intake port; besides, this feature extends to the compression stroke. The cycle-averaged tumble ratio and the turbulence intensity of the engine with the elliptic intake port were dramatically larger than those of the engine with the circular intake port. The measured engine performance was improved a lot by installing the elliptic intake port. The correlation between the flow features and the enhancement of the engine performance were argued and discussed.
机译:利用粒子图像测速技术(PIV),对装有椭圆形和圆形进气口的四气门,四冲程,单缸,往复式摩托车发动机的汽缸内气流的时空演化过程进行了实验研究。发动机进行了改装以满足PIV测量的要求。对通过PIV测量的速度场进行了分析,并定量表示为滚降比和湍流强度。在对称平面中,圆形和椭圆形进气口都可能在进气冲程期间围绕中心区域引发涡流。在压缩冲程期间,在具有圆形进气口的发动机气缸中产生的中心涡流消失,而在具有椭圆形进气口的发动机气缸中产生的中心涡流进一步发展为旋转运动。在偏置平面中,在进气冲程期间,进气门的钝体效应会引发弱涡旋结构。椭圆形进气口引起的涡旋结构比圆形进气口产生的涡旋结构更连贯。此外,此功能扩展到压缩冲程。具有椭圆形进气口的发动机的平均循环翻转比和湍流强度明显大于具有圆形进气口的发动机。通过安装椭圆形进气口,可大大提高测得的发动机性能。讨论并讨论了流动特性与发动机性能增强之间的相关性。

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