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Study on Valve Strategy and Fuel Benefits of Skip Fire Based on Electromagnetic Valve Train

机译:基于电磁气门机构的跳火的气门策略和燃油效益研究

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Cylinder deactivation (CDA) is a fuel consumption reduction technology for gasoline engines. Skip fire is a new type of CDA because the load and the density of firing cylinder are in proportion to the torque demand. However, it is difficult to realize because valves need to be switched between valve deactivation and normal operation stroke by stroke. The Electromagnetic valve train (EMVT) provides a fully flexible control method to achieve skip fire. In the paper, a new skip fire strategy based on electromagnetic intake valve train (EMIV) is proposed. Then, the oxygen concentration of the exhaust pipe, energy losses, in-cylinder pressure of the skipped cycle and exhaust gas recirculation (EGR) rate of the firing cycle are studied by the 1D simulation in GT-Power. The results shows the majority of gas sucked into the skipped cylinder is exhaust gas by reasonable control of IVO and IVC, and the exhaust oxygen-rich can be avoided. Meanwhile, EGR rate of the firing cylinder and energy losses of the skipped cylinder are maintained at lower level. At the conditions of 1200 and 1600 rpm, fuel economy has been improved respectively 8.1%-16.6% and 6.4%-14.6% when the brake mean effective pressure (BMEP) ranges from 0.4MPa to 0.2MPa.
机译:汽缸停用(CDA)是降低汽油发动机燃油消耗的技术。跳火是一种新型的CDA,因为射击缸的负载和密度与扭矩需求成正比。但是,由于需要在阀停用和正常操作行程之间切换,因此很难实现。电磁气门机构(EMVT)提供了一种完全灵活的控制方法来实现跳火。本文提出了一种基于电磁进气门机构(EMIV)的新型跳火策略。然后,通过GT-Power中的一维模拟研究了排气管中的氧气浓度,能量损失,跳过循环的缸内压力和点火循环的排气再循环(EGR)速率。结果表明,通过对IVO和IVC的合理控制,吸入到漏斗缸中的大部分气体为废气,可以避免废气富氧。同时,点火缸的EGR率和漏斗缸的能量损失保持在较低水平。在1200和1600 rpm的条件下,当制动平均有效压力(BMEP)为0.4MPa至0.2MPa时,燃油经济性分别提高了8.1%-16.6%和6.4%-14.6%。

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