首页> 外文会议>International Symposium on Combustion >IN SITU FUEL CONCENTRATION MEASUREMENT NEAR SPARK PLUG IN SPARK-IGNITION ENGINES BY 3.39 μm INFRARED LASER ABSORPTION METHOD
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IN SITU FUEL CONCENTRATION MEASUREMENT NEAR SPARK PLUG IN SPARK-IGNITION ENGINES BY 3.39 μm INFRARED LASER ABSORPTION METHOD

机译:原位燃料浓度测量在火花塞上的火花点火发动机附近3.39μm红外激光吸收法

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Recently, improving the thermal efficiency and reducing the exhaust emissions of internal combustion engines have become crucial. To this end, it is important to determine the fuel concentration in the vicinity of the spark plug near the spark timing, because initial combustion affects the subsequent main combustion in spark-ignition engines. In this study, a fiber optic system linked to an optical sensor installed in the spark plug, by means of which light can pass through the combustion chamber, was developed to determine the fuel concentration near the spark plug using an IR absorption method. A He-Ne laser with a wavelength of 3.39 μm that coincides with the absorption line of hydrocarbons was used as alight source. By exchanging an ordinary spark plug for this spark plug with the optical sensor, successive measurement of fuel concentration before the spark timing near the spark plug was performed in a port-injection spark-ignition engine fueled with iso-octane under the firing condition. The effects of pressure and temperature on the molar absorption coefficient of fuel were clarified in advance. The air/fuel ratio averaged for many cycles near the spark plug with this optical system agreed with that measured with a buret, which represented the mean value averaged over a protracted period. Next, this sensor was applied to determine the air/fuel ratio quantitatively in a direct-injection gasoline engine. As a result, it was clarified that the air/fuel ratio and its standard deviation near the spark plug have a strong relationship to stable engine operation.
机译:最近,提高了热效率和减少内燃机的废气排放变得至关重要。为此,重要的是要确定火花塞附近的火花塞附近的燃料浓度,因为初始燃烧影响了火花点火发动机中的后续主燃烧。在该研究中,通过该研究将与安装在火花塞中的光学传感器连接的光纤系统,通过该光学传感器可以通过燃烧室通过燃烧室,以使用IR吸收方法确定火花塞附近的燃料浓度。波长为3.39μm的HE-NE激光器与烃的吸收线一致用作Alight源。通过用光学传感器交换该火花塞的普通火花塞,在火花塞附近的火花塞附近的火花正时进行燃料浓度的连续测量在烧制条件下用异辛烷燃料的端口喷射火花点火发动机进行。预先阐明了压力和温度对摩尔吸收系数的影响。在火花塞附近的空气/燃料比平均循环,该系统与突然测量的该光学系统相同,该潜水系统表示在延伸期间平均平均值的平均值。接下来,施加该传感器以定量地在直喷式汽油发动机中定量地确定空气/燃料比。结果,阐明了火花塞附近的空气/燃料比及其标准偏差与稳定发动机操作具有很强的关系。

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