首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part D. Journal of Automobile Engineering >An automotive engine charge-air intake conditioner system: analysis of fuel economy benefits in a gasoline engine application
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An automotive engine charge-air intake conditioner system: analysis of fuel economy benefits in a gasoline engine application

机译:汽车发动机增压空气进气调节器系统:分析汽油发动机应用中的燃油经济性优势

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A combination of analytical techniques has been used to quantify the potential fuel economy benefits of an automotive engine charge-air intake conditioner system applied to a spark-ignited gasoline engine. This system employs a compressor, intercooler, and expander to provide increased charge density with the possibility of reducing charge-air temperature below sink temperature. This reduction in charge-air temperature provides the potential for improved knock resistance at full load; thereby allowing the possibility of increasing compression ratio with corresponding benefits in thermodynamic cycle efficiency and part-load fuel economy. The four linked and interfaced models comprised a first-law thermodynamic model of the charge-air conditioner system, a one-dimensional engine cycle simulation, a two-zone combustion model, and a knock criterion model. An analysis was carried out under full load at 3000 r/min and showed that a charge-air conditioner system - with compressor, intercooler, and expander efficiencies of 0.8 - allowed the compression ratio to be increased by approximately half a ratio, which gave up to 1.5 per cent reduction in brake specific fuel consumption at 2000 r/min 2 bar brake mean effective pressure when compared with a conventional pressure charger intercooler system with no expander.
机译:分析技术的组合已用于量化应用于火花点火汽油发动机的汽车发动机增压空气进气调节系统的潜在燃油经济性收益。该系统采用了压缩机,中冷器和膨胀器,以提供更高的充气密度,并有可能将增压空气温度降低至低于沉陷温度。增压空气温度的这种降低为提高满载时的抗爆震性提供了可能。因此,有可能增加压缩比,同时在热力循环效率和部分负荷燃油经济性方面具有相应的好处。这四个链接和接口的模型包括增压空气调节器系统的第一定律热力学模型,一维发动机循环仿真,两区域燃烧模型和爆震标准模型。在满负荷下以3000 r / min进行的分析表明,增压空气调节器系统-压缩机,中冷器和膨胀机的效率为0.8-使压缩比提高了大约一半。与不带膨胀机的传统增压器中冷器系统相比,在2000 r / min 2 bar制动平均有效压力下可将制动器的比油耗降低1.5%。

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