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The influence of fuel injection and heat release on bulk flow structures in a direct-injection, swirl-supported diesel engine

机译:燃料喷射和放热对直喷涡流发动机中整体流动结构的影响

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摘要

Particle image velocimetry is applied to measure the vertical (r-z) plane flow structures in a light-duty direct-injection diesel engine with a realistic piston geometry. The measurements are corrected for optical distortions due to the curved piston bowl walls and the cylindrical liner. Mean flow fields are presented and contrasted for operation both with and without fuel injection and combustion. For operation with combustion, the two-dimensional divergence of the measured mean velocity fields is employed as a qualitative indicator of the locations of mean heat release. In agreement with numerical simulations, dual-vortex, vertical plane mean flow structures that may enhance mixing rates are formed approximately mid-way through the combustion event. Late in the cycle a toroidal vortex forms outside the bowl mouth. Imaging studies suggest that soot and partially oxidized fuel trapped within this vortex are slow to mix with surrounding fluid; moreover, the vortex impedes mixing of fluid exiting the bowl with air within the squish volume.
机译:粒子图像测速技术用于测量具有逼真的活塞几何形状的轻型直喷柴油发动机中的垂直(r-z)平面流结构。对由于弯曲的活塞碗壁和圆柱形衬套引起的光学畸变校正测量值。给出并对比了在有或没有燃料喷射和燃烧的情况下运行的平均流场。为了进行燃烧操作,将测得的平均速度场的二维散度用作平均放热位置的定性指标。与数值模拟相一致,在燃烧过程的中途大约形成了可提高混合速率的双涡流垂直平面平均流动结构。在循环的后期,在碗口的外面形成了环形涡流。影像学研究表明,积聚在该涡流中的烟尘和部分氧化的燃料与周围的流体混合较慢。此外,涡旋阻碍了离开转鼓的流体与挤压体积内的空气的混合。

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