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Experimental and modeling study of liquid fuel injection and combustion in diesel engines with a common rail injection system

机译:具有共轨喷射系统的柴油发动机液体燃料喷射和燃烧的实验和模型研究

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Fuel injection is one of the most important processes in compression-ignition internal combustion engines owing to its significant impact on the exhaust emissions and thermal efficiency. In this study, experiments were carried out to investigate the influence of injection pressure and injection timing on the temporal evolution of the injection rate and injection duration in a specially designed experiment rig equipped with a common rail injection system. It is well known that the injection signal from the electronic control unit (ECU) of the injection system, which is often the only injection information available in engine operation and experiments, gives little information about the actual injection rate profile. It is shown in the present experiments that the actual injection duration is usually longer than the energizing time (ET). The time delay between the actual injection of the fuel and the ECU signal is about 0.3-0.4 ms, and the time delay appears to be insensitive to the injector geometry and injection pressure condition. The injection process can be characterized as five stages, a fast injector valve opening stage, a slow valve opening stage, a valve fully open stage, followed by a slow valve closing stage, and finally a rapid valve closing stage. It is found that the first stage, the fast valve opening stage, is insensitive to the injection pressure and injector nozzle diameter; however, the peak injection rate is a strong function of these parameters. The second and the third stage may not appear with a short injection duration. A new injection model was developed for the common rail injection system, which was capable of simulating the instantaneous fuel injection rate and injection duration for a range of injection pressure and injection duration. The model was shown to be able to replicate the experimental injection rate profile of the present experiments and experiments found in the literature for common rail injection system. The new injection model was applied to predict the effect of injection pressure and injection duration on the performance of a diesel engine under various engine speed and load conditions. The new injection model was shown to be able to describe the injection mass flow rate, which eventually leads to a reasonably good prediction of the variations of the spray development, in-cylinder pressure, heat release rate, and emissions.
机译:由于燃料喷射对废气排放和热效率有显着影响,因此它是压燃式内燃机中最重要的过程之一。在这项研究中,进行了实验,以研究在配备了共轨喷射系统的专门设计的试验台上,喷射压力和喷射时间对喷射速率和喷射持续时间的时间演变的影响。众所周知,来自喷射系统电子控制单元(ECU)的喷射信号通常是发动机运行和实验中唯一可用的喷射信息,几乎没有提供有关实际喷射率曲线的信息。在本实验中显示,实际喷射持续时间通常长于通电时间(ET)。实际喷油和ECU信号之间的时间延迟约为0.3-0.4毫秒,并且该时间延迟似乎对喷油器的几何形状和喷油压力条件不敏感。喷射过程可以表征为五个阶段,即快速喷射器气门打开阶段,缓慢气门打开阶段,气门完全打开阶段,随后是缓慢气门关闭阶段,最后是快速气门关闭阶段。发现第一阶段,即快速阀打开阶段,对喷射压力和喷射器喷嘴直径不敏感。但是,峰值注入速率是这些参数的强大函数。第二阶段和第三阶段可能不会以较短的注射持续时间出现。针对共轨喷射系统开发了一种新的喷射模型,该模型能够在一定的喷射压力和喷射持续时间范围内模拟瞬时燃料喷射速率和喷射持续时间。该模型显示出能够复制本实验和文献中针对共轨喷射系统的实验中的实验喷射速率曲线。新的喷射模型被用于预测在各种发动机转速和负载条件下喷射压力和喷射持续时间对柴油机性能的影响。事实证明,新的喷射模型能够描述喷射质量流量,最终可以合理地很好地预测喷雾的变化,缸内压力,放热率和排放。

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