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System Design and Analysis of a Directly Air-Assisted Turbocharged SI Engine with Camshaft Driven Valves

机译:凸轮轴驱动气门直接空气辅助涡轮增压SI发动机的系统设计与分析

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The availability of compressed air in combination with downsizing and turbocharging is a promising approach to improve the fuel economy and the driveability of internal combustion engines. The compressed air is used to boost and start the engine. It is generated during deceleration phases by running the engine as a piston compressor. In this paper, a camshaft-driven valve is considered for the control of the air exchange between the tank and the combustion chamber. Such a valve system is cost-effective and robust. Each pneumatic engine mode is realized by a separate cam. The air mass transfer in each mode is analyzed. Special attention is paid to the tank pressure dependence. The air demand in the boost mode is found to increase with the tank pressure. However, the dependence on the tank pressure is small in the most relevant operating region. The air demand of the pneumatic start shows a piecewise continuous dependence on the tank pressure. Finally, a tank sizing method is proposed which uses a quasi-static simulation. It is applied to a compact class vehicle, for which a tank volume of less than 10 L is sufficient. A further reduction of the tank volume is limited by the specifications imposed on the pneumatic start.
机译:压缩空气的结合以及小型化和涡轮增压是提高燃油经济性和内燃机可驾驶性的一种有前途的方法。压缩空气用于增压和启动发动机。它是在减速阶段通过将发动机作为活塞式压缩机运行而产生的。在本文中,考虑使用凸轮轴驱动阀来控制燃料箱和燃烧室之间的空气交换。这样的阀系统是成本有效且坚固的。每种气动发动机模式均通过单独的凸轮实现。分析每种模式下的空气质量传递。要特别注意油箱压力的依赖性。发现增压模式下的空气需求随油箱压力的增加而增加。但是,在最相关的工作区域中对油箱压力的依赖性很小。气动启动的空气需求显示出对罐压力的分段连续依赖性。最后,提出了一种利用准静态模拟的坦克定型方法。适用于油箱容积小于10 L的紧凑型车辆。油箱容积的进一步减小受到气动启动的规范的限制。

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