首页> 外文会议>Optical measurement nondestructive testing techniques, 2010 >Effect of Manifold Orientation on Non-Reacting In-Cylinder Tumble Flows in an IC Engine with Pentroof Piston - An Investigation Using PIV
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Effect of Manifold Orientation on Non-Reacting In-Cylinder Tumble Flows in an IC Engine with Pentroof Piston - An Investigation Using PIV

机译:歧管方向对带斜顶活塞的IC发动机中非反应缸内滚流的影响-基于PIV的研究

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This paper deals with experimental study of in-cylinder tumble flows in a single-cylinder, four-stroke, two-valve internal combustion engine using a pentroof-offset-bowl piston under non-reacting conditions with four intake manifold orientations at an engine speed of 1000 rev/min., during suction and compression strokes using particle image velocimetry. Two-dimensional in-cylinder tumble flow measurements and analysis are carried out in combustion space on a vertical plane passing through cylinder axis. Ensemble average velocity vectors are used to analyze the tumble flows. Tumble ratio (TR) and average turbulent kinetic energy (TKE) are evaluated and used to characterize the tumble flows. From analysis of results, it is found that at end of compression stroke, 90° intake manifold orientation shows an improvement in TR and TKE compared other intake manifold orientations considered. Also, 90° intake manifold orientation shows an improvement in TR and TKE are higher by about 2.8 and 1.2 times respectively compared to standard intake manifold orientation. The present study will be useful in understanding effect of intake manifold orientation on the in-cylinder tumble flows under real engine conditions.
机译:本文涉及在非反应工况下,在发动机转速为四个进气歧管方向的非反应条件下,使用五点偏置碗形活塞在单缸,四冲程,两气门内燃机中缸内翻滚流动的实验研究。使用颗粒图像测速仪在吸气和压缩冲程中的最大转速为1000转/分钟。在燃烧空间中通过汽缸轴的垂直平面上进行二维汽缸内翻滚流量测量和分析。集合平均速度矢量用于分析滚流。评估翻滚比(TR)和平均湍动能(TKE)并用于表征翻滚流量。从结果分析发现,在压缩冲程结束时,与其他考虑的进气歧管方向相比,90°进气歧管方向显示出TR和TKE的改善。同样,与标准进气歧管方向相比,90°进气歧管方向显示出TR和TKE分别提高了约2.8和1.2倍。本研究将有助于理解进气歧管方向对实际发动机工况下缸内翻转流的影响。

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