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A system-level numerical study of a homogeneous charge compression ignition spring-assisted free piston linear alternator with various piston motion profiles

机译:具有不同活塞运动曲线的均质充量压缩点火弹簧辅助自由活塞式线性交流发电机的系统级数值研究

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A free piston linear alternator (FPLA) can convert the fuel's chemical energy to electrical energy efficiently via a linear alternator. Since the piston motion in the FPLA is not constrained, there are significant cyclic variabilities in the FPLA's operation; thus, advanced control methods are essential for prolonged stable operation. In this paper, an FPLA with a high-stiffness helix spring is proposed, called a spring-assisted FPLA. The spring can work as a flywheel to stabilize the engine operation and reduce the cyclic variabilities. The steady-state thermodynamic performance of the engine is studied. Homogeneous charge compression ignition (HCCI) is used for combustion due to its high thermal efficiency and low exhaust emissions. This research is the first focusing on spring-assisted HCCI FPLA with a fully functional system-level model, with accurate predictions of combustion, gas exchange, friction, etc. with each submodel validated. A zero-dimensional system-level model is built in MATLAB/Simulink with a predictive combustion model developed by experimental data on a crank-slider engine. Since the thermodynamics and piston dynamics are highly coupled in FPLAs, a decoupling algorithm called Piston Motion Generator (PMG) is developed to remove the need for controls over the model predictions so that the current study can focus on the thermodynamic performance. A parametric sweep is performed with changing compression ratio, scavenging efficiency, and spring energy ratio beta, i.e., spring stiffness. The simulation results show that the free piston motion is distorted with higher acceleration near top dead center (TDC), especially with low energy ratio springs, which can significantly reduce the heat transfer losses. Low energy ratio springs can also delay the ignition timing and enable the use of a low octane rating fuel with high compression ratio to achieve high thermal efficiency. As a result, the maximum brake efficiency (electrical conversion efficiency) and thermal efficiency are 41.1% and 46.7%, respectively, achieved with a high compression ratio, high scavenging efficiency, and low spring energy ratio beta.
机译:自由活塞线性交流发电机(FPLA)可以通过线性交流发电机将燃料的化学能有效地转换为电能。由于FPLA中的活塞运动不受限制,因此FPLA的操作中存在明显的周期性变化;因此,先进的控制方法对于长时间稳定运行至关重要。本文提出了一种具有高刚度螺旋弹簧的FPLA,称为弹簧辅助FPLA。弹簧可以用作飞轮来稳定发动机运行并减少周期性变化。研究了发动机的稳态热力学性能。均质充量压缩点火(HCCI)由于其高热效率和低废气排放而被用于燃烧。这项研究是首次针对具有全功能系统级模型的弹簧辅助HCCI FPLA,并通过验证的每个子模型对燃烧,气体交换,摩擦等进行了准确的预测。在MATLAB / Simulink中建立了零维系统级模型,该模型具有通过曲柄滑块发动机上的实验数据开发的预测燃烧模型。由于热力学和活塞动力学在FPLA中高度耦合,因此开发了一种称为“活塞运动发生器”(PMG)的解耦算法,以消除对模型预测的控制需求,因此当前的研究可以集中在热力学性能上。通过改变压缩比,扫气效率和弹簧能比β(即弹簧刚度)来执行参数扫描。仿真结果表明,活塞的自由运动在上止点(TDC)附近具有较高的加速度时会发生变形,尤其是在能量比较小的弹簧附近,这可以显着减少传热损失。低能量比的弹簧还可以延迟点火正时,并允许使用具有高压缩比的低辛烷值燃料来实现高热效率。结果,在高压缩比,高扫气效率和低弹簧能比β的情况下,获得的最大制动效率(电转换效率)和热效率分别为41.1%和46.7%。

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