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Canister purge flow influence on EGO-sensor signal and exhaust gas emissions (PURGEOPT)

机译:罐吹扫流动影响自我传感器信号和废气排放(Purgeopt)

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In closed evaporation control systems, the purging air flow through the active carbon canister is mixed with the intake air flow. In order to avoid degradation of the λ control and the pollution emissions levels, the purged hydrocarbons must be evenly distributed among the cylinders and mixed as thoroughly as possible with the intake air. Based on the purge characteristics of standard carbon canisters and on the HC levels in a fully charged carbon canister, and using a 4-cylinder sixteen-valve engine, the operating frequency of the canister purge valve and the inlet point of the purge flow into the intake manifold were varied, using n-butane as the hydrocarbon. The measurements taken for HC emissions and the voltages of the lambda probes in the exhaust manifold showed that the inlet point, the valve operating frequency and the microdosing behavior of the valve significantly affect mixture and engine's HC emissions.
机译:在封闭的蒸发控制系统中,通过活性炭罐的吹扫空气与进气流混合。为了避免λ控制和污染排放水平的降解,吹扫的烃必须均匀地分布在气缸中,并尽可能彻底地混合进气空气。基于标准碳罐的吹扫特性,并在完全带电碳罐中的HC水平,并使用4缸16阀发动机,罐式吹扫阀的工作频率和吹扫流入的入口点使用N-丁烷作为烃的进气歧管变化。用于HC排放和排气歧管中的λ探针的电压的测量表明,入口点,阀门工作频率和阀的微量序列显着影响混合和发动机的HC排放。

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