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An Innovative Two-Stroke Twin-Cylinder Engine Layout for Range Extending Application

机译:一种创新的双行程双缸发动机布局,用于延长应用

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Global trends show an increasing approval of electrified mobility due to advantages like local zero emission and low noise. But range anxiety, missing comprehensive availability and high costs significantly obstruct the acceptance and growth of electro mobility. Extended research on finding innovative solutions focus on the elimination of the disadvantages of pure electric drivetrain systems. Therefore an ICE range extended electric vehicle is a promising approach. Commonly, small-capacity gasoline engines with low cylinder numbers are used for range extending applications. Targets are low emissions, efficient packaging, good NVH behaviour and low costs. In this paper the layout and design of an innovative two-stroke twin-cylinder engine with a capacity of one litre is presented. Compared to conventional single- or twin-cylinder four-stroke engines a two-stroke engine has better running smoothness due to the ignition sequence of 180 degrees. The use of uniflow scavenging with intake ports and exhaust side valves enables low untreated emissions and the application of a closed loop 3-way catalytic exhaust aftertreatment. The essential scavenging pressure is continuously provided by a mechanical blower. The thermodynamical layout through an extended CFD simulation ensures an optimized scavenging process. Cost and simplicity targets can be met by applying an external mixture preparation. Unique to small two-stroke engines are the pressure lubrication and the use of friction bearings. Additionally, a sophisticated mass balancing system with full compensation could be obtained. The final layout presents an unconventional engine applying well-proven technologies.
机译:由于局部零排放和低噪声等优点,全球趋势显示出越来越多的电气化移动性。但系列焦虑,缺失综合可用性和高成本显着阻碍了电动流动性的接受和增长。寻求创新解决方案的扩展研究专注于消除纯电动传动系统系统的缺点。因此,冰区延伸电动车是一种有希望的方法。通常,具有低缸数的小容量汽油发动机用于延伸应用范围。目标是低排放,高效包装,良好的NVH行为和低成本。本文介绍了一种具有一升容量的创新的双行程双缸发动机的布局和设计。与传统的单缸或双缸四冲程发动机相比,由于180度的点火序列,双行程发动机具有更好的运行平滑度。利用进气口和排气侧阀的使用uniflow清除使得能够低未处理的排放和闭环3 - 催化废气后处理的应用。由机械鼓风机连续提供必要的清除压力。通过扩展CFD仿真的热力学布局确保了优化的清除过程。通过施加外部混合物制备,可以满足成本和简单目标。小型两冲程发动机独有的是压力润滑和摩擦轴承的使用。另外,可以获得具有完全补偿的复杂质量平衡系统。最终的布局提供了一种申请经过精心验证的技术的非传统发动机。

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