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Digital image processing techniques for the analysis of fuel sprays global pattern

机译:用于分析燃料喷雾的数字图像处理技术

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We studied the fuel atomization process of two fuel injectors to be fitted in a new small rotary engine design. The aim was to improve the efficiency of the engine by optimizing the fuel injection system. Fuel sprays were visualised by an optical diagnostic system. Images of fuel sprays were produced under various testing conditions, by changing the line pressure, nozzle size, injection frequency, etc. The atomisers were a high-frequency microfluidic dispensing system and a standard low flow-rate fuel injector. A series of image processing procedures were developed in order to acquire information from the laser-scattering images. This paper presents the macroscopic characterisation of Jet fuel (JP8) sprays. We observed the droplet density distribution, tip velocity, and spray-cone angle against line-pressure and nozzle-size.. The analysis was performed for low line-pressure (up to 10 bar) and short injection period (1-2 ms). Local velocity components were measured by applying particle image velocimetry (PIV) on double-exposure images. The discharge velocity was lower in the micro dispensing nozzle sprays and the tip penetration slowed down at higher rates compared to the gasoline injector. The PIV test confirmed that the gasoline injector produced sprays with higher velocity elements at the centre and the tip regions.
机译:我们研究了两个燃料喷射器的燃料雾化过程,以安装在新的小旋转发动机设计中。目的是通过优化燃油喷射系统来提高发动机的效率。通过光学诊断系统可视化燃料喷雾。通过改变线压,喷嘴尺寸,注射频率等,在各种测试条件下产生燃料喷雾的图像。雾化器是高频微流体分配系统和标准低流量燃料喷射器。开发了一系列图像处理程序,以便从激光散射图像获取信息。本文呈现了喷射燃料(JP8)喷射的宏观表征。我们观察到液滴密度分布,尖端速度和喷射锥角度抵抗管线压力和喷嘴尺寸。分析进行低线压(最多10巴)和短喷射时段(1-2毫秒) 。通过在双曝光图像上施加粒子图像速度(PIV)来测量局部速度分量。微量分配喷嘴喷射喷嘴的放电速度较低,与汽油喷射器相比,微量分配喷嘴喷雾喷嘴喷射尖端速度下降。 PIV测试证实,汽油喷射器在中心和尖端区域处产生具有更高速度元件的喷雾。

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