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Fast NGC: A New On-Line Technique for Fuel Flow Measurement

机译:FAST NGC:一种用于燃料流量测量的新型技术

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Knowledge of fuel mass injected in an individual cycle is important for engine performance and modelling. Currently direct measurements of fuel flow to individual cylinders of an engine are not possible on-engine or in real-time due to a lack of available appropriate measurement techniques. The objective of this work was to undertake real-time Coriolis fuel flow measurement using GDI injectors on a rig observing fuel mass flow rate within individual fuel injections. This paper evaluates the potential of this technology - combining Coriolis Flow Meters (CFMs) with Prism signal processing together known as Fast Next Generation Coriolis (Fast NGC), and serves as a basis for future transitions on-engine applications. A rig-based feasibility study has been undertaken injecting gasoline through a GDI injector at 150 bar in both single shot mode and at a simulated engine speeds of 1788 and 2978 rpm. The results show that these injections can, in principle, be observed. In addition a number of features of the Fast NGC system unique to gasoline are discussed, and the repeatability of the technique is preliminarily assessed. The study concludes that the Fast NGC system has the potential to measure individual injector flow rates on-engine in real-time.
机译:在单个循环中注入的燃料质量知识对于发动机性能和建模是重要的。目前由于缺乏可用的适当测量技术,目前对发动机的各个汽缸的直接测量到发动机的单个汽缸中不可能或实时。这项工作的目的是使用GDI喷射器在钻机上观察单独的燃料喷射内的燃料质量流量的实时科里奥利燃料流量测量。本文评估了这种技术的潜力 - 将科里奥利流量计(CFMS)与棱镜信号处理组合在一起,称为快速下一代科里奥利(FAST NGC),并作为未来发动机应用程序的过渡的基础。已经在单次射击模式下通过GDI喷射器注入汽油通过GDI注射器注入汽油,并以1788和2978rpm的模拟发动机速度来注入汽油。结果表明,这些注射原则上可以观察到。此外,还讨论了许多对汽油独特的NGC系统的许多特征,并初步评估了该技术的可重复性。该研究得出结论,快速的NGC系统有可能实时测量发动机上的单独喷射器流速。

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