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Effect of input energy on the cold start characteristics of an EHC with heat storing material on a motorcycle engine

机译:输入能量对摩托车发动机上带有储热材料的EHC冷启动特性的影响

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摘要

An EHC (electrically heated catalyst) of a four stroke motorcycle engine with heat storing material was used to investigate the effect of input energy on the carbon monoxide (CO) conversion efficiency after cold start. The factors studied included the length of the heat storing material, heating temperature and preheating time. The stainless steel heat storing material was 15 mm wide and 0.3 mm deep and was installed at the inlet and mid-section of the catalyst. The settings of the parameters were heat storing material lengths of 30 and 60 cm, pre-heating time of 5, 15 and 25 s, a CO setting level of 1.3% and 1.8% and a heating temperature of 140, 180 and 220℃. It was revealed that for the shorter heat storing material, better conversion efficiency was attained when heating at the inlet. Heating at the mid-section of the catalyst with the same length of heat storing material resulted in less energy stored, quicker heat dissipation and more frequent re-heating required. In contrast, with a longer heat storing material, the temperature rise was more gradual and more heat was absorbed, resulting in a more stable overall temperature development. It was further showed that under the same input energy, the shorter heat storing material provided a higher CO conversion efficiency than the longer material. Further, a threshold total input energy for achieving a CO conversion efficiency above 65% was found to be 100 kJ.
机译:使用具有储热材料的四冲程摩托车发动机的EHC(电加热催化剂)来研究冷启动后输入能量对一氧化碳(CO)转化效率的影响。研究的因素包括储热材料的长度,加热温度和预热时间。不锈钢储热材料为15毫米宽,0.3毫米深,并安装在催化剂的入口和中部。参数的设置是:储热材料长度为30和60 cm,预热时间为5、15和25 s,CO设置水平为1.3%和1.8%,加热温度为140、180和220℃。揭示了对于较短的储热材料,当在入口处加热时获得了更好的转化效率。在相同长度的储热材料下,在催化剂的中间部分进行加热会导致存储的能量减少,散热更快,所需的重新加热频率更高。相反,使用更长的储热材料,温度上升更加平缓,并且吸收了更多的热量,从而使整体温度发展更加稳定。进一步表明,在相同的输入能量下,较短的储热材料比较长的储热材料提供更高的CO转化效率。此外,发现用于实现高于65%的CO转化效率的阈值总输入能量为100kJ。

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