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A Methodology for the Estimation of Hole-to-Hole Injected Mass Based on Spray Momentum Flux Measurement

机译:一种基于喷涂动量磁通量测量的孔隙孔注入质量的方法

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In the present paper, a new methodology for the estimation of the mass delivered by a single hole of a GDI injector is presented and discussed. The GDI injector used for the activity featured a five-hole nozzle characterized by three holes with the same diameter and two holes with a larger diameter. The different holes size guarantees a significant difference in terms of mass flow. This new methodology is based on global momentum flux measurement of each single plume and on its combination with the global mass measurement made with the gravimetric principle. The momentum flux is measured by means of a dedicated test bench that detects the impact force of the single spray plume at different distances. The sensing device is moved in different positions and, in each point, the force trace averaged over several injection events is acquired. The global mass delivered by the injector is measured by collecting and weighing the fuel flown during a defined number of consecutive injections. By the combination of these two measurements, the estimation of the single hole mass is proposed. The method is validated by means of a dedicated device that is able to collect the mass of the single hole. The method is applied in several operating conditions in terms of injection pressure and actuation time, obtaining encouraging results in terms of hole-to-hole injected mass evaluation capability.
机译:在本文中,介绍并讨论了由GDI注射器的单个孔递送的质量估计的新方法。用于该活动的GDI注射器采用五孔喷嘴,其特征在于具有相同直径和两个直径的两个孔的三孔。不同的孔尺寸确保了质量流量的显着差异。这种新方法基于每个单一羽流的全局动量磁通量测量,并与热量原理制成的全球质量测量相结合。通过专用的测试台来测量动量磁通量,该试验台检测单个喷雾羽流下不同距离的冲击力。感测装置在不同位置移动,并且在每个点中,获取在若干喷射事件上平均的力迹线。通过喷射器输送的全局质量通过收集和称重在限定数量的连续注射期间捕获燃料来测量。通过这两种测量的组合,提出了单孔质量的估计。该方法通过能够收集单孔的质量的专用设备来验证。在注射压力和致动时间方面,在几个操作条件下应用该方法,从而在孔到空穴注入的质量评价能力方面获得令人鼓舞的结果。

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