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Spray-Wall Impingement of Diesel-CNG Dual Fuel Jet using Schlieren Imaging Technique

机译:使用Schlieren成像技术的CNG双燃料喷射器的喷壁撞击

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Natural gas is a low cost fuel with high availability in nature. However, it cannot be used by itself in conventional diesel engines due to its low flame speed and high ignition temperature. The addition of a secondary fuel to enhance the mixture formation and combustion process facilitate its wider use as an alternative fuel. An experimental study was performed to investigate the diesel-CNG dual fuel jet-wall impingement. A constant volume optical chamber was designed to facilitate maximum optical access for the study of the jet-wall impingement at different injection pressures, temperatures and injector-wall distances. The bottom plate of the test rig was made of aluminum (piston material) and it was heated up to 500 K at ambient pressure. An injector driver was used to control the single-hole nozzle diesel injector combined with a natural gas injector. The injection timing of both injectors was synchronized with a camera trigger. The jet-wall impingement of diesel and diesel-CNG dual fuel jets was recorded with a high speed camera using Schlieren imaging technique and associated image processing software. The measurements of the jet radial penetration were higher in diesel-CNG dual fuel while the jet height travel along were higher in the case of diesel single fuel.
机译:天然气是一种低成本的燃料,在自然界中具有很高的利用率。但是,由于其低火焰速度和高点火温度,它本身不能用于常规柴油发动机。添加辅助燃料以增强混合物的形成和燃烧过程有利于其作为替代燃料的广泛使用。进行了一项实验研究,以研究柴油-CNG双燃料喷射壁撞击。设计了一个恒定体积的光学室,以方便最大的光学通道,以研究在不同的喷射压力,温度和喷射器壁距离下的射流壁撞击。试验台的底板由铝(活塞材料)制成,并在环境压力下加热到500K。喷油器驱动器用于控制与天然气喷油器结合的单孔喷嘴柴油喷油器。两个喷油器的喷油正时与相机触发器同步。使用Schlieren成像技术和相关的图像处理软件,使用高速相机记录了柴油和CNG双燃料喷射的喷射壁撞击。柴油-CNG双燃料的射流径向渗透率测量值较高,而柴油单燃料的射流高度行进方向测量值较高。

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