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In-cylinder air-flow characteristics of different intake port geometries using tomographic PIV

机译:使用断层图像的不同进气口几何形状的气缸气流特性

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摘要

For improving the in-cylinder flow characteristics of intake air/charge and for strengthening the turbulence intensity, specific intake port geometries have shown significant potential in compression ignition engines. In this experimental study, effects of intake port geometries on air-flow characteristics were investigated using tomographic particle imaging velocimetry (TPIV). Experiments were performed using three experimental conditions, namely, swirl port open (SPO), tangential port open (TPO), and both port open (BPO) configurations in a single cylinder optical research engine. Flow investigations were carried out in a volumetric section located in the middle of the intake and exhaust valves. Particle imaging velocimetry (PIV) images were captured using two high speed cameras at a crank angle resolution of 2 degrees in the intake and compression strokes. The captured PIV images were then pre-processed and post-processed to obtain the final air-flow-field. Effects of these two intake ports on flow-field are presented for air velocity, vorticity, average absolute velocity, and turbulent kinetic energy. Analysis of these flow-fields suggests the dominating nature of the swirl port over the tangential port for the BPO configuration and higher rate of flow energy dissipation for the TPO configuration compared to the SPO and BPO configurations. These findings of TPIV investigations were experimentally verified by combustion and particulate characteristics of the test engine in thermal cylinder head configuration. Combustion results showed that the SPO configuration resulted in superior combustion amongst all three port configurations. Particulate characteristics showed that the TPO configuration resulted in higher particulate compared to other port configurations. Published by AIP Publishing.
机译:为了改善进气/充电的缸内流动特性并用于加强湍流强度,特定的进气口几何形状在压缩点火发动机中示出了显着的潜力。在该实验研究中,使用断层颗粒成像速度(TPIV)研究了进气口几何物对气流特性的影响。使用三个实验条件进行实验,即旋流口开放(SPO),切向端口打开(TPO)以及单个汽缸光学研究发动机中的两个端口打开(BPO)配置。流量研究在位于进气阀中间的体积截面中进行。在进气和压缩冲程中,在曲柄角分辨率下使用两个高速相机捕获粒子成像速度(PIV)图像。然后预处理和后处理捕获的PIV图像以获得最终的气流场。对于空气速度,涡流,平均绝对速度和湍流动能,提出了这两个进气口对流场的影响。这些流场的分析表明,与SPO和BPO配置相比,用于BPO配置的切线端口上的旋转端口的主导性和TPO配置的更高流动能量耗散速率。通过在热缸盖上的测试发动机的燃烧和颗粒特性进行实验验证了TPIV调查的这些发现。燃烧结果表明,SPO配置导致所有三个端口配置中的卓越燃烧。颗粒特性表明,与其他端口配置相比,TPO配置导致较高的颗粒。通过AIP发布发布。

著录项

  • 来源
    《Physics of fluids》 |2017年第9期|共16页
  • 作者单位

    Indian Inst Technol Kanpur Dept Mech Engn Engine Res Lab Kanpur 208016 Uttar Pradesh India;

    Indian Inst Technol Kanpur Dept Mech Engn Engine Res Lab Kanpur 208016 Uttar Pradesh India;

    Indian Inst Technol Kanpur Dept Mech Engn Engine Res Lab Kanpur 208016 Uttar Pradesh India;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 流体力学;
  • 关键词

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