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The Effect of Intake Valve Angle on In-cylinder Flow during Intake and Compression Process

机译:进气门角对油缸流动过程中的进气阀角度的影响

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Valve angle defined as the angle between a valve axis and a cylinder axis is one of the most important design factors that may have an influence on valve train design, cylinder head size, in-cylinder flow, etc. In particular, since valve angle cannot be altered during the development process once basic engine specification is determined at the initial concept design stage, the decision of a valve angle is an important process and the determined valve angle imposes restriction on the potential of the gasoline engine performance. In this study the effect of the valve angle on in-cylinder flows has been experimentally investigated using a PIV (Particle Image Velocimetry) technique. In-cylinder flows of two test engines that have different valve angles have been measured at four different horizontal and three different vertical planes during intake and compression processes. During the intake process, the result shows that the intake flow of the conventional engine in horizontal plane is more complicated than that of narrow angle engine and the flow in vertical plane is rapidly decayed at the end stage of intake process. The flow pattern of the narrow angle engine is well arranged in horizontal plane and the vertical component of the flow remains so high that forms large scale strong tumble flow. During the compression process, the flow pattern is well arranged compared with intake flows and basic tumble flow structures are maintained until the end of the compression stage regardless of the valve angle.
机译:作为阀轴和气缸轴之间的角度定义的阀角是最重要的设计因子之一,可能对阀门列车设计,气缸头尺寸,缸内流量等产生影响。因此,由于阀角不能在开发过程中被改变,一旦在初始概念设计阶段确定基本发动机规格,阀角的决定是一个重要的过程,所确定的阀角对汽油发动机性能的电位施加限制。在这项研究中,使用PIV(颗粒图像速度法)技术实验研究了阀角对缸内流动的影响。在进气和压缩过程中,在四个不同的水平和三个不同的垂直平面下测量具有不同阀角的两个测试发动机的缸内流动。在进气过程中,结果表明,常规发动机在水平平面中的进气比比窄角度发动机更复杂,并且在进气过程的端部阶段迅速衰减垂直平面中的流动。窄角度发动机的流动图案充足地布置在水平平面中,并且流动的垂直分量保持如此之高,形成大规模的强调流动。在压缩过程中,与进气流程相比,流动图案与进气流相比,并且碱性翻滚流动结构保持直到压缩级的结束,而不管阀角。

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