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Reducing Exhaust HC Emission at SI Engine Using Continuous and Synchronized Secondary Air Injection

机译:使用连续和同步的二次空气喷射减少SI发动机的排气

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The effect of secondary air injection (SAI) on exhaust hydrocarbon (HC) emission has been investigated in a spark-ignition (SI) single cylinder engine operating at steady-state cold condition. Both continuous SAI and synchronized SAI, which corresponds to intermittent secondary air injection to exhaust port, are tested. Oxidation characteristics of HC are monitored with a FID analyzer and exhaust gas temperatures with thermocouples. Effects of exhaust air-fuel ratio (A/F), location of SAI, and engine-A/F have been investigated. Results show that HC reduction rate increases as the location of SAI is closer to the exhaust valve for both synchronized and continuous SAIs. HC emission decreases with increasing exhaust-A/F when exhaust-A/F is rich, and is relatively insensitive when exhaust-A/F is lean. In synchronized SAI, SAI timing has significant effect on HC reduction and exhaust gas temperature. Optimum SAI timing observed is ATDC 100° and 230°. Synchronized SAI is found to be more effective in HC reduction compared to continuous SAI. HC emission for a typical cold start condition decreases about 77% and 23% with synchronized and continuous SAIs, respectively, compared to that with base engine condition, which has no SAI. In addition, the exhaust gas temperature with synchronized SAI is much higher than that with continuous SAI and base engine condition, especially near the exhaust port exit.
机译:在在稳态冷条件下操作的火花点火(Si)单缸发动机中,研究了二次空气注射(SAI)对排气烃(HC)发射的影响。测试了与间歇的二级空气喷射到排气口的连续SAI和同步的SAI都进行了测试。用FID分析仪和热电偶的废气温度监测HC的氧化特性。已经研究了废气 - 燃料比(A / F),SAI的位置和发动机-A / F的影响。结果表明,随着SAI的位置更接近用于同步和连续SAIS的排气阀,HC缩小率增加。当排气A / F富有时,HC发射随着排气-A / F的增加而降低,并且当排气A / F倾斜时相对不敏感。在同步的SAI中,SAI时序对HC减少和废气温度具有显着影响。观察到的最佳SAI定时为ATDC 100°和230°。与连续的SAI相比,发现同步SAI在HC REANGES中更有效。典型的冷启动条件的HC排放分别在没有SAI的基本发动机状态的情况下,分别具有同步和连续的SAIS减少了约77%和23%。此外,具有同步Sai的废气温度远高于连续的SAI和基本发动机状态,特别是在排气口出口附近。

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