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Spray Visualization and Characterization of a Micro-Variable Circular-Orifice (MVCO) Injector Coupled with a Swirl Adapter for Diesel Reformer Applications

机译:喷射微变量圆形孔口(MVCO)喷射器的图像和表征,其与柴油重整器应用的旋流适配器连接

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This paper focuses on the spray and atomization characteristics of a Micro-Variable Circular-Orifice (MVCO) fuel injector coupled with a unique swirl adapter. Spray characteristics produced from this configuration, such as spray penetration length, spray velocity and the droplet size distribution were evaluated under different injection pressure and air inlet pressure. Diesel injection pressure ranges from 300 bar to 700 bar at a back pressure of 1bar while compressed air at pressures of 2 bar and 4 bar was supplied to the swirl adapter. High speed Mie scattering images were recorded to capture the spray evolution, as seen from both the front view and the bottom view. Phase Doppler Anemometry (PDA) measurements were conducted at different locations in the spray for the acquisition of droplet sizes and velocity distributions. Unlike traditional multi-hole injectors which normally inject six to eight fuel jets, the MVCO fuel injector presented a unique fan spray pattern displaying more than twenty jets in an approximately axi-symmetric fashion. Due to the interaction between the spray jets, the breakup was enhanced compared to conventional injectors, causing shorter spray tip penetration and finer droplet size. Coupling the swirl adapter with the injector caused the fuel spray to become more uniform, and also achieving a higher degree of atomization. PDA results displayed a clear rotational motion indicating a strong tangential velocity component imparted to the fuel spray by the adapter. The above characteristics favor a highly atomized, uniform mixture formation, thereby reducing coke formation and auto-ignition hot-spots, which could potentially increase diesel reformer efficiency.
机译:本文侧重于微可变圆形孔口(MVCO)燃料喷射器的喷雾和雾化特性,与独特的旋流适配器联接。在不同的喷射压力和空气入口压力下评估由该配置产生的喷射特性,例如喷雾穿透长度,喷雾速度和液滴尺寸分布。柴油喷射压力范围从300巴到700巴,在1bar的后压,而2巴的压力下的压缩空气供应到漩涡适配器。记录高速MIE散射图像以捕获喷射进化,如前视图和仰视图所示。相多普勒风光测量(PDA)测量在喷雾中的不同位置进行,以获取液滴尺寸和速度分布。与通常注射六到八个燃料喷射器的传统多孔喷射器不同,MVCO燃料喷射器呈现出以大约轴对称的方式显示超过二十个喷射的独特风扇喷射图案。由于喷射喷射器之间的相互作用,与常规喷射器相比,分离增强,导致较短的喷射尖端穿透和更细的液滴尺寸。将旋流适配器与喷射器联接导致燃料喷雾变得更加均匀,并且还实现更高程度的雾化。 PDA结果显示出透明的旋转运动,表示赋予适配器燃料喷射的强切线速度分量。上述特征赞成高度雾化,均匀的混合物形成,从而减少焦炭形成和自燃热点,这可能会增加柴油重整器效率。

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