首页> 外文会议>ASME Internal Combustion Engine Division technical conference >HIGH-SPEED RAINBOW SCHLIEREN DEFLECTOMETRY OF N-HEPTANE SPRAYS USING A COMMON RAIL DIESEL INJECTOR
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HIGH-SPEED RAINBOW SCHLIEREN DEFLECTOMETRY OF N-HEPTANE SPRAYS USING A COMMON RAIL DIESEL INJECTOR

机译:使用共同的轨道柴油喷射器,高速彩虹Schlieren N-庚烷喷雾剂的偏转测定

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More precise measurements of the fuel injection process can enable better combustion control and more accurate predictions resulting in a reduction of fuel consumption and toxic emissions. Many of the current methods researchers are using to investigate the transient liquid fuel sprays are limited by cross sensitivity when studying regions with both liquid and vapor phases present (i.e. upstream of the liquid length). The quantitative rainbow schlieren technique has been demonstrated in the past for gaseous fuel jets and is being developed here to enable study of the spray near the injector. In this work an optically accessible constant pressure flow rig and a modern common rail diesel injector are used to obtain high speed images of vaporizing fuel sprays at elevated ambient temperatures and pressures. Quantitative results of full-field equivalence ratio measurements are presented as well as more traditional measurements such as vapor penetration and angle for a single condition (13 bar, 180°C normal air) using n-heptane injected through a single hole (0.1mm diameter) common rail fuel injector at 1000 bar fuel injection pressure. This work serves as a proof of concept for the rainbow schlieren technique being applied to vaporizing fuel sprays and full details of the image processing routine are provided. The ability of the imaging technique combined with the constant pressure flow rig make this approach ideal for generating large data sets in short periods of time for a wide range of operating conditions.
机译:更精确的燃料喷射过程测量可以实现更好的燃烧控制和更准确的预测,从而降低燃料消耗和有毒排放。许多目前的方法研究人员正在研究瞬态液体燃料喷雾在使用存在的液体和蒸气相的区域(即液体长度上游)时,通过交叉敏感性受到限制。过去的定量彩虹Schlieren技术已经证明了气体燃料喷射器,并且在此开发以实现喷射器附近的喷雾。在这项工作中,光学可接近的恒压流量钻机和现代公共轨道柴油喷射器用于获得高速图像的高速图像,在升高的环境温度和压力下蒸发燃料喷雾。提出了全场等效率测量的定量结果,以及使用通过单孔注入的正庚烷(直径0.1mm的单个条件(13巴,180°C正常空气)的蒸汽穿透和角度(13巴,180°C正常空气)等传统测量结果。 )普通轨道燃油喷射器,1000巴燃料喷射压力。这项工作用作彩虹Schlieren技术的概念证据,用于蒸发燃料喷雾,并提供了图像处理程序的完整细节。成像技术与恒压流动钻机组合的能力使得这种方法是在短时间内产生大型数据集的方法,以获得各种操作条件。

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