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Development of a lean-burn natural gas-powered vehicle based on a direct- injection diesel engine

机译:基于直喷式柴油发动机的益燃天然气动力车辆开发

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This paper describes the successive stages needed to develop a lean-burn natural gas engine. A wide optimization was undertaken with the view to power commercial medium duty vehicle able to meet the 2005 proposals with the European MVEG cycle. PSA Peugeot Citroen DJ5TED 2.5 Liters displacement Direct Injection Diesel engine was chosen to be converted to natural gas Spark Ignition engine. On the basis of findings from simulation using the KMB computer code, combustion chambers of three different shapes were selected, meeting specific air flow motion criteria. After fitting sparkplug and ignition system providing high- energy required under lean operation, the chamber shape showing the best emissions-consumption trade-off was selected from engine bench tests. Then, after turbocharger matching, optimizations were carried out on lean and stoichiometric mixture in order to ensure excellent exhaust emissions and output performances. The validity of the concept was demonstrated with an equivalence ratio in steady state operation below 0.6 over a large range of speeds and loads. The development of the engine control system with a dedicated Electronic Control Unit was also addressed for the vehicle application. The last step on chassis-dynamometer was the assessment of the required strategies to forecast and control variations in natural gas composition and to ensure good drivability.
机译:本文介绍了开发瘦燃烧天然气发动机所需的连续阶段。随着能够与欧洲MVEG循环的2005年建议能够满足2005年建议的电力商业中型车辆进行了广泛的优化。 PSA PEUGEOT雪铁龙DJ5TED 2.5升位移直喷柴油发动机被选择转换为天然气火花点火发动机。根据使用KMB计算机代码的模拟的发现,选择了三种不同形状的燃烧室,满足特定的空气流动标准。在拟合发光和点火系统之后,在瘦操作下提供高能量,腔室形状从发动机工作台测试中选择了最佳排放功率折衷。然后,在涡轮增压器匹配之后,在瘦和化学计量混合物上进行优化,以确保优异的排放和输出性能。概念的有效性在大量速度和负载范围内以低于0.6的稳态操作的等效比率证明了该概念的有效性。具有专用电子控制单元的发动机控制系统的开发也被寻址用于车辆应用。底盘测力计的最后一步是评估预测和控制天然气组成变化的所需策略,并确保良好的驾驶性能。

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