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A Simulation Method to Guide DISI Engine Redesign for Increased Efficiency using Alcohol Fuel Blends

机译:指导DISI发动机重新设计以使用酒精燃料混合物提高效率的仿真方法

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A turbocharged 2.0L 4-cylinder direct injection spark ignition (DISI) engine designed for use with gasoline is simulated using one dimensional engine simulation. Engine design modifications - increased compression ratio, 2-step valve train with dual independent cam phasing and fuel injection timing - are considered in an effort to improve fuel economy with gasoline and take advantage of properties of ethanol fuel blends (up to E85). This paper discusses a methodology to use the simulation to quantitatively evaluate the design modification effects on fuel economy. Fuel consumption predictions from the simulation for each design are evaluated. The goal is to identify the best design with the constraints of hardware physical limitations, engine residual tolerance and knock tolerance. The result yields a specification for a 2-step valve train design and phasing requirements that can improve fuel economy for each compression ratio design.
机译:使用一维发动机模拟对设计用于汽油的涡轮增压2.0升4缸直喷火花点火(DISI)发动机进行了模拟。为了提高汽油的燃油经济性并利用乙醇混合燃料的特性(高达E85),对发动机设计进行了修改(增加压缩比,具有双独立凸轮相位和燃料喷射正时的两步气门机构)。本文讨论了一种使用仿真方法定量评估设计修改对燃油经济性影响的方法。评估了每种设计在模拟中的油耗预测。目标是在硬件物理限制,发动机残余公差和爆震公差的约束下确定最佳设计。结果得出了两步气门机构设计的规范和相位要求,可以提高每种压缩比设计的燃油经济性。

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