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Simulation Study of Advanced Variable Displacement Engine Coupled to Power-Split Hydraulic Hybrid Powertrain

机译:先进变排量发动机与动力分流液压混合动力系统的仿真研究

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摘要

The simulation based investigation of the variable displacement engine is motivated by a desire to enable unthrottled operation at part load, and hence eliminate pumping losses. The mechanism modeled in this work is derived from a Hefley engine concept. Other salient features of the proposed engine are turbocharging and cylinder deactivation. The cylinder deactivation combined with variable displacement further expands the range of unthrottled operation, whereas turbocharging increases the power density of the engine and allows downsizing without the loss of performance. Although the proposed variable displacement turbocharged engine (VDTCE) concept enables operations in a very wide range, running near idle is impractical. Therefore, the VDTCE is integrated with a hybrid powertrain to mitigate issues with engine transients and mode transitions. The engine model is developed in AMESim using physics based models, such as thermodynamic cycle simulation, filling and emptying of manifolds, and turbulent flame entrainment combustion. A predictive model of the power-split hydraulic hybrid driveline is created in SIMULINK, thus facilitating integration with the engine. The integrated simulation tool is utilized to address design and control issues, before determining the fuel economy potential of the powertrain comprising a VDTCE engine and a hydraulic hybrid driveline.
机译:对可变排量发动机进行基于仿真的研究的动机是希望在部分负荷下实现无节流运行,从而消除泵送损失。在这项工作中建模的机制源自Hefley引擎概念。提出的发动机的其他显着特征是涡轮增压和气缸停用。气缸停用和可变排量相结合,进一步扩大了非节流运行的范围,而涡轮增压增加了发动机的功率密度,并允许缩小尺寸而不会损失性能。尽管提出的可变排量涡轮增压发动机(VDTCE)概念可以在很宽的范围内运行,但在怠速附近运行是不切实际的。因此,VDTCE与混合动力总成集成在一起,以减轻发动机瞬态和模式转换的问题。发动机模型是在AMESim中使用基于物理的模型开发的,例如热力学循环模拟,歧管的填充和排空以及湍流的火焰夹带燃烧。在SIMULINK中创建了动力分配液压混合动力系统的预测模型,从而促进了与发动机的集成。在确定包括VDTCE发动机和液压混合动力系统的动力总成的燃油经济潜力之前,集成的仿真工具可用于解决设计和控制问题。

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