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Effects of relative port orientation on the in-cylinder flow patterns in a small unit displacement HSDI Diesel Engine

机译:相对端口取向对小型单元位移HSDI柴油发动机缸内流动图案的影响

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The paper aims at providing information about the in-cylinder flow structure and its evolution of a high speed direct injection (HSDI) four valve per cylinder engine for off-highway applications. Fully transient CFD analyses by means of state-of-the-art tools and methodologies are carried out for the whole intake and compression strokes, in order to evaluate port effects on both engine permability and in-cylinder flow field evolution. Organized mean motions (i.e., swirl, tumble and squish) are investigated, trying to establish general rules in the port design optimization process, addressing relationships between the relative port orientation and the in-cylinder flow structure. Different port configurations are compared, each deriving from the rotation of the BASE port configuration on two different planes, the former being perpendicular to the cylinder axis, while the latter being parallel to the cylinder axis. Relative intake port orientation proves to strongly influence the flow field evolution within the combustion chamber, and is therefore expected to play a non negligible role on the subsequent spray evolution and fuel combustion.
机译:本文旨在提供有关缸内流动结构的信息及其每气缸发动机的高速直喷(HSDI)四阀的演变,用于偏远的公路应用。通过最先进的工具和方法进行完全瞬态的CFD分析,用于整个摄入和压缩笔划,以评估发动机允许性和缸内流场演化的港口效应。调查了组织平均动作(即,漩涡,翻转和粗糙),试图在港口设计优化过程中建立一般规则,解决相对端口方向与缸内流动结构之间的关系。比较不同的端口配置,每个从两个不同的平面上旋转基端口配置的旋转,前者垂直于汽缸轴,而后者平行于汽缸轴。相对进气口的取向证明强烈影响燃烧室内的流场演化,因此预计在随后的喷雾进化和燃料燃烧中起不可忽略的作用。

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