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PIV study of the effect of piston position on the in-cylinder swirling flow during the scavenging process in large two-stroke marine diesel engines

机译:pIV研究活塞位置对大型二冲程船用柴油机扫气过程中缸内旋流的影响

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摘要

A simplified model of a low speed large twostroke marine diesel engine cylinder is developed. The effect of piston position on the in-cylinder swirling flow during the scavenging process is studied using the stereoscopic particle image velocimetry technique. The measurements are conducted at different cross-sectional planes along the cylinder length and at piston positions covering the air intake port by 0, 25, 50 and 75 %. When the intake port is fully open, the tangential velocity profile is similar to a Burgers vortex, whereas the axial velocity has a wakelike profile. Due to internal wall friction, the swirl decays downstream, and the size of the vortex core increases. For increasing port closures, the tangential velocity profile changes from a Burgers vortex to a forced vortex, and the axial velocity changes correspondingly from a wake-like profile to a jet-like profile. For piston position with 75 % intake port closure, the jet-like axial velocity profile at a cross-sectional plane close to the intake port changes back to a wake-like profile at the adjacent downstream cross-sectional plane. This is characteristic of a vortex breakdown. The non-dimensional velocity profiles show no significant variation with the variation in Reynolds number.
机译:开发了低速大型二冲程船用柴油机气缸的简化模型。使用立体粒子图像测速技术研究了扫气过程中活塞位置对缸内涡流的影响。测量是在沿气缸长度的不同横截面平面上以及在覆盖进气口0%,25%,50%和75%的活塞位置进行的。当进气口完全打开时,切向速度分布类似于Burgers涡旋,而轴向速度具有尾流分布。由于内壁的摩擦,涡流向下游衰减,涡流核的尺寸增加。为了增加端口的封闭性,切向速度分布从伯氏涡流变为强制涡流,轴向速度从尾流形变为射流形。对于具有75%进气口关闭的活塞位置,在靠近进气口的横截面处,射流状的轴向速度分布在相邻的下游横截面处变回尾流状。这是涡旋破坏的特征。随着雷诺数的变化,无量纲的速度分布没有明显的变化。

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