首页> 外文会议>SAE/JSAE Small Engine Technology Conference >Influence of Ethanol Content, Compression Ratio and Cylinder Head Material on Idling Speed, Warm-Up Time and Emissions of a Non-Road Small Single Cylinder Gasoline Engine
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Influence of Ethanol Content, Compression Ratio and Cylinder Head Material on Idling Speed, Warm-Up Time and Emissions of a Non-Road Small Single Cylinder Gasoline Engine

机译:乙醇含量,压缩比和气缸盖材料对非公路小型单缸汽油发动机怠速,预热时间和排放的影响

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A Design of experiments methodology was carried out to investigate the effects of compression ratio, cylinder head material, and fuel composition on the engine speed, fuel consumption, warm-up time, and emissions of a carbureted single cylinder air-cooled spark ignited engine. The work presented here is aimed at finding out the sensitivity of engine responses, as well as the optimal combination among the aforementioned parameters. To accomplish this task two cylinder heads, one made of aluminum and the second one of cast iron, were manufactured; an antechamber-type adapter for the spark plug to modify the combustion chamber volume was used. Ethanol/gasoline blends containing 10 and 20 volume percent ethanol were prepared. Engine performance was evaluated based on the changes in engine speed at idle conditions. The concentrations of CO_2, CO, and HC in the exhaust were recorded. The test results show that the higher engine speed, lower HC, and lower CO_2 take place for the aluminum cylinder head, higher level compression ratio, and 10 percent ethanol blend combination. The lower fuel consumption corresponds with the aluminum cylinder head, higher level compression ratio, and 20 percent ethanol blend case. The shortest warm-up time is achieved with the cast iron cylinder head, the higher compression ratio, using 10 percent ethanol blend. In general, it is also concluded that CO and HC emissions decrease with the increase of the ethanol content in the fuel blend. The results indicate that cylinder head material affects engine behavior, but less than expected. Among the three factors varied within this work, and limited by their level values, the compression ratio is the most influencing parameter affecting the engine performance at idle conditions.
机译:进行了实验方法的设计,以研究压缩比,气缸盖材料和燃料组合物对发动机速度,燃料消耗,热预热时间和碳钢的单缸空气冷却火花点火发动机的发射的影响。这里提出的工作旨在发现发动机响应的敏感性,以及上述参数中的最佳组合。为了完成这项任务,制造了两个气缸盖,由铝和第二种铸铁制成的缸盖;使用用于改变燃烧室容积的火花塞的Antechamber型适配器。制备含有10和20体积%乙醇的乙醇/汽油共混物。根据空闲条件下发动机速度的变化评估发动机性能。记录了废气中的CO_2,CO和HC的浓度。测试结果表明,发动机速度,下部HC和较低的CO_2较高,铝缸盖,较高水平压缩比和10%的乙醇混合物组合进行。较低的燃料消耗对应于铝缸盖,更高水平的压缩比和20%的乙醇混合壳。使用10%的乙醇混合物,铸铁缸盖,压缩比较高的压缩比来实现最短的预热时间。通常,还得出结论,CO和HC排放随着燃料混合物中乙醇含量的增加而降低。结果表明,气缸盖材料影响发动机行为,但少于预期。在这项工作中变化的三个因素中,并受到其水平值的限制,压缩比是影响空闲条件下发动机性能的最大影响参数。

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