首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part D. Journal of Automobile Engineering >Effect of synchronized secondary air injection in exhaust hydrocarbon emission in a spark ignition engine
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Effect of synchronized secondary air injection in exhaust hydrocarbon emission in a spark ignition engine

机译:同步二次空气喷射对火花点火发动机废气排放的影响

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A synchronized secondary air injection (SAI) method has been proposed to reduce hydrocarbon (HC) emission by injecting secondary air intermittently into the exhaust port. The method has been tested in a single-cylinder spark ignition engine operating at cold-steady/cold-start conditions. HC concentration and exhaust gas temperature were monitored with a fast-response flame ionization detector and with thermocouples respectively. Effects of exhaust air-fuel ratio (A/F), engine A/F, spark timing and air injection timing have been investigated and the results are compared with a continuous SAI method and the baseline condition. Results show that HC reduction rate and exhaust gas temperature are sensitive to the timing of synchronized SAI. Two optimum SAI timings are observed which are at 1000 crank angle (CA) after top dead centre (ATDC) and 2300 CA ATDC depending on spark timing. At the cold-steady condition, the synchronized SAI is found to be more effective in HC reduction and also has much higher exhaust gas temperature than either the continuous SAI or the baseline condition. At the cold-start condition when a catalyst is not used, the accumulated HC emission during the first 120 s decreases by about 55 per cent with the synchronized SAI compared with that of the baseline condition, while the result with the continuous SAI is comparable with the baseline condition.
机译:已经提出了一种同步二次空气注入(SAI)方法,通过将二次空气间歇地注入排气口来减少碳氢化合物(HC)的排放。该方法已经在冷稳定/冷启动条件下运行的单缸火花点火发动机中进行了测试。 HC浓度和废气温度分别通过快速响应火焰电离检测器和热电偶进行监测。研究了排气空燃比(A / F),发动机A / F,火花正时和空气喷射正时的影响,并将结果与​​连续SAI方法和基线条件进行了比较。结果表明,HC还原率和废气温度对同步SAI的时间敏感。根据火花正时,观察到两个最佳SAI正时,分别位于上止点(ATDC)之后的1000曲柄角(CA)和2300 CA ATDC。在冷稳定条件下,同步SAI被发现在减少HC方面更有效,并且废气温度也比连续SAI或基准条件高得多。在冷启动条件下,当不使用催化剂时,与基准条件相比,同步SAI的前120 s内累积的HC排放减少约55%,而连续SAI的结果可与基准条件。

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