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HCCI Combustion Phasing Transient Control by Hydrogen-Rich Gas: Investigation Using a Fast Detailed-Chemistry Full-Cycle Model

机译:HCCI燃烧通过富含氢气逐行测量的瞬态控制:使用快速详细的全周期模型进行调查

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A novel modeling approach is applied to investigate the use of hydrogen-rich gas (HRG) for controlling the combustion process in a Homogenous-Charge Compression-Ignition (HCCI) engine. A detailed-chemistry stochastic reactor model is coupled with a one-dimensional gas dynamics model to account for the full engine cycle. The integrated model simulates the steady-state and transient operation of a single-cylinder HCCI engine. A previously developed tabulation scheme is utilized to speed up the detailed-chemistry simulations, which, though computationally cheap compared to many other approaches, are impractical for simulations involving a large number of cycles. A control strategy based on HRG addition is implemented using a closed-loop controller built within the gas dynamics model. Simulations conducted at different speeds and with varying loads indicate that the HRG can be effectively used to control the combustion phasing, and hence expand the operating range of the HCCI engine.
机译:应用一种新颖的建模方法来研究使用富含氢气(HRG)来控制均匀电荷压缩 - 点火(HCCI)发动机中的燃烧过程。详细化学随机反应器模型与一维气体动力学模型耦合,以占全发动机循环。集成模型模拟了单缸HCCI发动机的稳态和瞬态操作。先前开发的制表方案用于加速详细化学模拟,虽然与许多其他方法相比,但是计算涉及大量循环的模拟是不切实际的。使用内置在气体动力学模型内的闭环控制器来实现基于HRG的控制策略。以不同速度和变化负载进行的模拟表明HRG可以有效地用于控制燃烧相位,从而扩展HCCI发动机的操作范围。

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