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Experimental investigation of dynamics effects on multiple-injection common rail system performance

机译:动力学对多次注入共轨系统性能影响的实验研究

摘要

Fundamental aspects of Common Rail (CR) fuel-injection-system dynamics were investigated, paying specific attention to the wave propagation induced pressure oscillations and to their relationships with the system control parameters and multiple-injection performance. A detailed experimental analysis of the pressure-wave propagation phenomena in a last-generation CR Multijet equipment of the solenoid type was carried out on a high performance new test-bench Moehwald-Bosch MEP2000-CA4000 under real engine simulated conditions. The experimental results include pressure time histories in the rail and at the injector inlet, as well as flow-rate patterns, for both single and multiple injection events. The measured volume of fuel injected at each injection pulse is also reported. The analysis of the system oscillating behavior was carried out with the support of a simple lumped parameter model. Such a model was shown to be capable of predicting the main frequencies of the hydraulic circuit and their dependence on the geometrical parameters. The good agreement between the outcome of this simple model and the experimental data also substantiated the reliable authors' interpretation of the primary cause and effect relations underlying the complex flow phenomena occurring in the system. A refined computational model was developed and validated in a parallel work, providing a hydrodynamic analysis tool that is complementary to experimentation and also a means of hydraulic-system layout design and optimization. Finally, the mutual fluid-dynamic interactions taking place between consecutive injection events by distinct injectors of the same system are investigated in addition to the difference in dynamics of valve covered orifice and Minisac-nozzle injectors. Cycle-to-cycle variations in system performance were also investigated.
机译:共轨(CR)燃油喷射系统动力学的基本方面进行了研究,特别注意了波传播引起的压力振荡及其与系统控制参数和多次喷射性能的关系。在高性能的新型试验台Moehwald-Bosch MEP2000-CA4000上,在真实发动机模拟条件下,对电磁阀类型的最后一代CR Multijet装置中的压力波传播现象进行了详细的实验分析。实验结果包括轨道和喷射器入口处的压力时间历史,以及单次和多次喷射事件的流速模式。还报告了在每个喷射脉冲下测得的燃料喷射量。在简单的集总参数模型的支持下进行了系统振荡行为的分析。这种模型显示出能够预测液压回路的主频率及其对几何参数的依赖性。这个简单模型的结果与实验数据之间的良好一致性也证实了可靠作者对系统中复杂流现象背后的主要因果关系的解释。在并行工作中开发并验证了精炼的计算模型,它提供了与实验互补的液压动力学分析工具,同时也是液压系统布局设计和优化的一种手段。最后,除了阀盖孔口和Minisac喷嘴喷射器的动力学差异外,还研究了同一系统的不同喷射器在连续喷射事件之间发生的相互流体动力相互作用。还研究了系统性能的逐周期变化。

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