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Advanced gasoline engine turbocharging technology for fuel economy improvements

机译:先进的汽油发动机涡轮增压技术,用于燃油经济性改进

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Data on several hundred family sedan production vehicles over a ten-year period are analyzed to compare turbocharged with non-turbocharged engines. It is shown that for the same power turbocharging enables gasoline engine downsizing by about 30%, improves fuel economy by 8-10% while improving torque and acceleration performance. Data with experimental turbocharged, downsized gasoline engines also shows that in the same vehicle, for the same power and performance, downsized turbocharged engines can give about 18% improvement in fuel economy. The paper discusses these data and analyzes the benefits of engine downsizing and turbocharging and the possible mechanisms of these effects. It is shown that the same basic small engine can be turbocharged using a wide range of turbocharger matching to cover a power range normally covered by 4-5 engine families of progressively increasing displacement. Thus additional benefits can be obtained by rationalizing the engine product lines. Advanced turbocharging technology for gasoline engines is discussed including cold-start emissions (catalyst light-off), high-temperature materials, variable geometry mechanisms and electrically assisted turbocharging. It is shown that these technologies combined with an appropriate control logic can yield great benefits in driveability while at the same time giving all the fuel economy, weight and packaging benefits of engine downsizing.
机译:分析了在十年期间的几百家庭轿车生产车辆的数据,以将涡轮增压与非涡轮增压发动机进行比较。结果表明,对于相同的功率涡轮增压,使汽油发动机能够减少约30%,在提高扭矩和加速性能的同时提高燃油经济性8-10%。具有实验涡轮增压的数据,缩小的汽油发动机还表明,在同一车辆中,对于相同的电力和性能,缩小的涡轮增压发动机可以提高燃料经济性提高约18%。本文讨论了这些数据,并分析了发动机缩小和涡轮增压的好处以及这些效果的可能机制。结果表明,使用各种涡轮增压器匹配的涡轮增压器可以涡轮增压,以覆盖通常覆盖的电源范围,该功率范围由逐步增加位移的4-5个发动机系列。因此,通过合理化发动机产品线可以获得额外的益处。讨论了汽油发动机的高级涡轮增压技术,包括冷启动排放(催化剂熄灭),高温材料,可变几何机构和电辅助涡轮增压。结果表明,这些技术与适当的控制逻辑相结合,可以在驾驶性方面产生很大的益处,同时为发动机缩小的所有燃油经济性,重量和包装效益提供了促进。

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