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Use of Variable Valve Actuation to Control the Load in a Direct Injection, Turbocharged, Spark-Ignition Engine

机译:使用可变阀门致动控制直喷,涡轮增压,火花点火发动机中的负载

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Downsizing and Turbo Charging (TC) and Direct Injection (DI) may be combined with Variable Valve Actuation (VVA) to better deal with the challenges of fuel economy enhancement. VVA may control the load without throttle; control the valve directly and quickly; optimize combustion, produce large volumetric efficiency. Benefits lower fuel consumption, lower emissions and better performance and fun to drive. The paper presents an engine model of a 1.6-liter TDI VVA engine specifically designed to run pure ethanol, with computed engine maps for brake specific fuel consumption and efficiency. The paper also presents driving cycle results obtained with a vehicle model for a passenger car powered by this engine and a traditional naturally aspirated gasoline engine. Preliminary results of the VVA system coupled with downsizing, turbo charging and Direct Injection permits significant driving cycle fuel economies.
机译:缩小化和涡轮增压(TC)和直喷(DI)可以与可变阀驱动(VVA)结合,以更好地应对燃料经济性提高的挑战。 VVA可以控制载荷而无节流阀; 直接控制阀门; 优化燃烧,产生大容量效率。 利益较低的燃料消耗,降低排放和更好的性能和乐趣。 本文介绍了1.6升TDI VVA发动机的发动机模型,专门设计用于运行纯乙醇,具有计算发动机地图,用于制动特定的燃料消耗和效率。 本文还提供了用由该发动机提供动力的乘用车和传统的自然吸气汽油发动机的车辆模型获得的驾驶循环结果。 VVA系统的初步结果加上缩小化,涡轮增压和直喷,允许大量的驾驶循环燃料经济体。

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