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Applying Boosting to Gasoline HCCI Operation With Residual Gas Trapping

机译:用剩余气体捕获施加升压汽油HCCI操作

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The application of Homogeneous Charge Compression Ignition (HCCI) combustion to naturally aspirated engines has shown a much reduced usable load range as compared to spark ignition (SI) engines. The approach documented here applies inlet charge boosting to gasoline HCCI operation on an engine configuration that is typical for SI gasoline engines, in conjunction with residual gas trapping. The latter helps to retain the benefits of much reduced requirement for external heating. In the present work, the achievable engine load range is controlled by the level of boost pressure while varying the amount of trapped residual gas. In addition, it was found that there is a maximum amount of boost that can be applied without intake heating for any given amount of trapped residuals. NO{sub}x emissions decrease with increasing amounts of trapped residual. A substantial increase in the upper limit of load range can be achieved without auxiliary intake heating, while NO{sub}x emissions are characteristically low.
机译:与火花点火(Si)发动机相比,均匀电荷压缩点火(HCCI)燃烧对天然吸气发动机的应用具有大大降低的可用负载范围。此处记录的方法适用于诸如剩余气体捕获的Si汽油发动机典型的发动机配置上的汽油电荷提高了汽油HCCI操作。后者有助于保留对外部加热需求大大降低的好处。在本作工作中,可实现的发动机负荷范围由增压压力的水平控制,同时改变捕获的残留气体量。另外,发现存在最大的升压量,可以在没有进气加热的情况下施加任何给定的捕获的残留物。没有{sub} x排放随着捕获的剩余量的增加而降低。可以在没有辅助进气加热的情况下实现负载范围的上限的大幅增加,而NO {SUB} x排放是特性低的。

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