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The determination of air/fuel ratio differences between cylinders in a production engine using exhaust gas oxygen sensors

机译:使用废气氧传感器在生产发动机中的气缸之间的空气/燃料比差的测定

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Cylinder air/fuel ratio distribution is an important factor affecting the economy, power, vibration, and emissions of an internal combustion engine. Currently production automobiles utilize an exhaust gas sensor located in the main exhaust stream in order to regulate air/fuel mixtures. By measuring the oxygen content of the exhaust gas for each cylinder independently, the degree of air/fuel variation between cylinders can be determined. This information can be used to determine the mixture quality of specific cylinders. Knowing these variances can lead to design changes in the intake and exhaust manifolds as well as better control of fuel metering which will improve the output of the engine. This study was carried out using a 1991 3.8L Buick V-6 engine with customized exhaust manifolds utilizing exhaust gas oxygen sensors for each cylinder in addition to the sensor located in the main combined exhaust gas stream. Production level, ZrO_2 sensors were used for this experimental study. This paper details the experimental setup, and the results of this study. It demonstrates an effective and economical means of determining cylinder variations in air/fuel mixture.
机译:气缸空气/燃料比分布是影响内燃机经济,动力,振动和排放的重要因素。目前生产汽车利用位于主排气流中的废气传感器,以调节空气/燃料混合物。通过独立地测量每个汽缸的废气的氧含量,可以确定气缸之间的空气/燃料变化程度。该信息可用于确定特定汽缸的混合质量。了解这些差异可以导致进气和排气歧管的设计变化,以及更好地控制将改善发动机输出的燃料计量。该研究使用1991 3.8L别克V-6发动机进行,其除了位于主组合的废气流中的传感器之外,还利用每个气缸的废气氧传感器进行定制排气歧管。生产水平,ZrO_2传感器用于该实验研究。本文详细说明了实验设置,以及本研究的结果。它展示了确定空气/燃料混合物中的气缸变化的有效和经济的方法。

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