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Experimental and Numerical Assessment of Multi-Event Injection Strategies in a Solenoid Common-Rail Injector

机译:螺线管共轨喷射器中多次事件注射策略的实验性和数值评价

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Nowadays, injection rate shaping and multi-pilot events can help to improve fuel efficiency, combustion noise and pollutant emissions in diesel engine, providing high flexibility in the shape of the injection that allows combustion process control. Different strategies can be used in order to obtain the required flexibility in the rate, such as very close pilot injections with almost zero Dwell Time or boot shaped injections with optional pilot injections. Modern Common-Rail Fuel Injection Systems (FIS) should be able to provide these innovative patterns to control the combustion phases intensity for optimal tradeoff between fuel consumption and emission levels. In this work, a 1D-CFD model in GT-SUITE of a solenoid ballistic Common-Rail injector was firstly refined respect to the previous work [1] and then it was validated against an extensive experimental dataset of single injections, standard double pilot and multi-pilot injection patterns (up to 4 pilot events) with almost zero dwell time between two consecutive injection events. The experimental hydraulic test data used to validate the one-dimensional model were obtained by means of the UniPG Injection Analyzer based on the Zeuch’s method. The comparison between the experimental and simulated volumetric injection rates showed a more than satisfactory accuracy of the model in predicting the actual behavior of the ballistic injector for all the injection patterns tested, even for relatively complex injector command strategies, characterized by reduced Dwell Time values between consecutive injection events.
机译:如今,注射速率整形和多功能事件可以有助于提高柴油发动机的燃油效率,燃烧噪声和污染物排放,提供允许燃烧过程控制的注射形状的高柔韧性。可以使用不同的策略来获得速率的所需灵活性,例如非常接近的先导喷射,几乎与零停留时间或具有可选的先导喷射的启动形状注射。现代公共轨道燃料喷射系统(FIS)应该能够提供这些创新模式来控制燃料消耗和排放水平之间最佳权衡的燃烧相强度。在这项工作中,首先将螺线管弹道共轨喷射器的GT-Suite中的1D-CFD模型精致地改进了上一个工作[1],然后针对单一注射,标准双重飞行员的广泛实验数据集进行了验证多导频注入图案(最多4个试点事件),两个连续注射事件之间的零停留时间几乎为零。用于验证一维模型的实验液压测试数据是通过基于Zeuch的方法的Unipg注射分析仪获得的。实验和模拟体积注射率之间的比较显示了模型的令人满意的精度,在预测所测试的所有注射模式的弹道喷射器的实际行为中,即使对于相对复杂的注射器指挥策略,也表征了降低的停留时间值连续注射事件。

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