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    • 21. 发明授权
    • Combustion engine with EGR apparatus
    • 燃烧发动机与EGR装置
    • US6000385A
    • 1999-12-14
    • US999634
    • 1997-10-31
    • Takao Fukuma
    • Takao Fukuma
    • F02B3/06F02D21/08F02D41/00F02D41/02F02D41/14F02D45/00F02M25/07
    • F02D41/144F02D41/0072F02M26/46F02M26/49F02B3/06Y02T10/47
    • A combustion engine with an EGR apparatus has an EGR path connecting an exhaust path and an intake path. An EGR control valve is mounted in the EGR path for controlling the amount of flow of an EGR gas flowing from the exhaust path to the intake path. The combustion engine also has an oxygen concentration sensor mounted downstream of a joint of the intake path and the EGR path, and in the intake path, for detecting a concentration of oxygen in an intake air. The intake air contains the EGR gas and an air introduced from an atmosphere via the intake path. The combustion engine also has converted actual EGR ratio calculating means for calculating a converted actual EGR ratio on the basis of the concentration of oxygen in the intake air detected by the sensor. The converted actual EGR ratio is a ratio of an actual EGR ratio to an actual air ratio. The actual EGR ratio is a ratio of the amount of the EGR gas to the amount of the intake air.
    • 具有EGR装置的内燃机具有连接排气通路和进气通路的EGR通路。 EGR控制阀安装在EGR通路中,用于控制从排气路径到进气路径的EGR气体的流量。 内燃机还具有安装在进气路径和EGR路径的关节下游的氧浓度传感器,并且在进气路径中,用于检测进气中的氧浓度。 吸入空气含有EGR气体和从大气经由进气路径引入的空气。 内燃机还具有转换的实际EGR率计算装置,用于基于由传感器检测到的进气中的氧气浓度来计算转换后的实际EGR率。 转换后的实际EGR率是实际EGR率与实际空气比的比。 实际的EGR率是EGR气体的量与吸入空气量的比。