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Modeling the Vacuum Circuit of a Pneumatic Valve System

机译:气动阀系统的真空回路建模

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The aim of this article is to present the theoretical and experimental work related to the vacuum system used for controlling the actuation of pneumatic valves in internal combustion engines in order to obtain a physical model of this system. In this context, these valves control the turbocharger operation in a two-stage sequential turbocharged diesel engine. With the purpose of providing the model with information, several characterization tests of the elements that integrate the vacuum system were performed. Related to the theoretical contents, two models of the vacuum system were developed and compared, either by using a 1D or a 0D approach. Within the experimental section the obtained instantaneous pressure in the actuator chamber of four air valves and two storage reservoirs of the circuit are measured and compared with the modeling results. Since the simulations show good agreement when comparing the instantaneous pressure evolutions and valve movement with the experimental data, the model can be used to predict the behavior of the vacuum system. Finally, the model is used to optimize the transient turbocharger sequential operation under real engine running conditions. The simulation results predict with accuracy the measurements acquired in an engine test bench. Therefore a consistent methodology has been established in order to reproduce the vacuum system behavior and can be used as a designing tool for complex applications devoted to engine controlling tasks.
机译:本文的目的是介绍与真空系统有关的理论和实验工作,该真空系统用于控制内燃机中气动阀的致动,以获得该系统的物理模型。在这种情况下,这些阀控制两级顺序涡轮增压柴油发动机中的涡轮增压器操作。为了向模型提供信息,对集成了真空系统的元件进行了几次表征测试。与理论内容相关,通过使用1D或0D方法开发并比较了真空系统的两个模型。在实验部分内,测量在四个空气阀和回路的两个储气罐的执行器腔室中获得的瞬时压力,并将其与建模结果进行比较。由于在将瞬时压力变化和阀门运动与实验数据进行比较时,仿真显示出良好的一致性,因此该模型可用于预测真空系统的行为。最后,该模型用于优化实际发动机运行条件下的瞬态涡轮增压器顺序运行。仿真结果准确地预测了在发动机测试台上获得的测量结果。因此,已经建立了一致的方法,以重现真空系统的行为,并且可用作专门用于发动机控制任务的复杂应用的设计工具。

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