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Effects of Scavenging System Configuration on In-Cylinder Air Flow Organization of an Opposed-Piston Two-Stroke Engine

机译:扫气系统配置对两活塞对置发动机缸内气流组织的影响

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In-cylinder air flow is very important from the point of view of mixture formation and combustion. In this direction, intake chamber structure and piston crown shape play a very crucial role for in-cylinder air pattern of opposed-piston two-stroke (OP2S) engines. This study is concerned with the three-dimensional (3D) computational fluid dynamics (CFD) analysis of in-cylinder air motion coupled with the comparison of predicted results with the zero-dimensional (0D) parametric model. Three configurations viz., a flat piston uniform scavenging chamber, a flat piston non-uniform scavenging chamber and a pit piston non-uniform scavenging chamber have been studied. 0D model analysis of in-cylinder air flow is consistent with 3D CFD simulation. It is concluded that a pit piston non-uniform scavenging chamber is the best design from the point of view of tumble ratio, turbulent kinetic energy and turbulent intensity, which play very important roles in imparting proper air motion. Meanwhile a flat piston uniform scavenging chamber can organize a higher swirl ratio and lower tumble ratio which is important to improve the scavenging process.
机译:从混合物形成和燃烧的角度来看,缸内空气流量非常重要。在这个方向上,进气室结构和活塞顶形状对于对置活塞二冲程(OP2S)发动机的缸内空气形态起着至关重要的作用。这项研究涉及气缸内空气运动的三维(3D)计算流体动力学(CFD)分析,以及与零维(0D)参数模型的预测结果的比较。研究了三种构造,即扁平活塞均匀扫气室,扁平活塞不均匀扫气室和凹坑活塞不均匀扫气室。缸内气流的0D模型分析与3D CFD模拟一致。结论是,从翻滚比,湍动能和湍流强度的观点来看,井下活塞不均匀扫气室是最佳设计,这在赋予适当的空气运动方面起着非常重要的作用。同时,平坦的活塞均匀扫气室可以组织更高的涡流比和更低的滚流比,这对于改善扫气过程很重要。

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