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Effect of engine parameters on in-cylinder flows in a two-stroke gasoline direct injection engine

机译:发动机参数对二冲程汽油直喷发动机缸内流量的影响

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This paper deals with the in-cylinder flow field analysis in a two-stroke engine under motoring conditions by particle image velocimetry (PIV) and computational fluid dynamics (CFD). The main objective is to analyze the effect of engine parameters viz., engine speed, compression ratio (CR) and port orientation on the in-cylinder flows in a loop-scavenged two-stroke gasoline direct injection (GDI) engine, with an aim to help researchers to design fuel efficient and less polluting two-stroke engines. In this study, a single-cylinder 70 cm(3) two-stroke engine which is very commonly used for the two-wheeler application, is considered. The engine cylinder is modified to provide optical access into the in-cylinder region. The PIV experiments are conducted at various engine speeds viz., 500, 1000 and 1500 rev/min, and the plane averaged velocity vector fields obtained, are analyzed to understand the in-cylinder flow behavior. The CFD study is also carried out using the commercial CFD code, STARCD, to study and compare the in cylinder flow parameters at various engine operating conditions. The CFD results are compared with the experimental results to the extent possible. The CFD predictions are found to be in good agreement with the experimental results. Therefore, the CFD analysis has been extended further to understand the effect of various engine parameters on the in-cylinder flows. We found that the turbulent kinetic energy and tumble ratio increased by about 25% and 20% respectively, when the engine speed was increased from 1000 to 1500 rev/min. Also, we found that the turbulent kinetic energy and tumble ratio decreased by about 13% and 26% when the compression ratio was increased from 7 to 8. In addition, we found that the port orientation, rather than port areas had a greater influence on the in-cylinder flow parameters. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文通过粒子图像测速(PIV)和计算流体力学(CFD)来研究二冲程发动机在发动机驱动条件下的缸内流场分析。其主要目的是分析一个循环扫气二冲程汽油直接喷射(GDI)发动机的发动机参数,即发动机转速,压缩比(CR)和进气口方向对缸内流量的影响,旨在帮助研究人员设计省油,污染少的二冲程发动机。在这项研究中,考虑了单缸70 cm(3)两冲程发动机,该发动机是两轮车应用中非常常用的。修改发动机汽缸以提供进入汽缸内区域的光学通道。 PIV实验是在各种发动机转速(即500、1000和1500转/分钟)下进行的,并对获得的平面平均速度矢量场进行了分析,以了解缸内流动行为。还使用商业CFD代码STARCD进行CFD研究,以研究和比较各种发动机工况下的缸内流量参数。将CFD结果与实验结果进行尽可能的比较。发现CFD预测与实验结果非常吻合。因此,CFD分析已得到进一步扩展,以了解各种发动机参数对缸内流量的影响。我们发现,当发动机转速从1000转/分钟增加到1500转/分钟时,湍动能和翻滚比分别增加了约25%和20%。此外,我们发现当压缩比从7增加到8时,湍流动能和翻滚比分别降低了约13%和26%。此外,我们发现端口方向而不是端口面积对端口的影响更大。缸内流量参数。 (C)2016 Elsevier Ltd.保留所有权利。

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