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Improvement of Fuel Economy and Transient Control in a Passenger Diesel Engine Using LP(Low Pressure)-EGR

机译:使用LP(EGR)-EGR改善乘用柴油机的燃油经济性和瞬态控制

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Diesel engines are the most commonly used power train of the freight and public transportations in the world. From the viewpoint of global warming restraint, however, reduction of exhaust emissions from the diesel engine is urgent demand. Stringent emission regulations are being proposed with growing concern on NOx, PM and CO2 emissions. Future emission regulations require advanced emission control technologies, such as SCR(Selective Catalytic Reduction), LNT(Lean NOx Trap) and EGR(Exhaust Gas Recirculation). The EGR is a commonly used technique to reduce emission. In this study, a LP-EGR(Low Pressure Exhaust Gas Recirculation) system was investigated to evaluate its potential on emission reduction and fuel economy improvement, especially for a passenger diesel engine. A 3.0C diesel engine equipped with the LP-EGR system was tested using an in-house control algorithm. Fuel economy improvement was obtained using the LP-EGR system under the steady and transient operating conditions, compared to the conventional HP-EGR(High Pressure Exhaust Gas Recirculation)system. At the middle speed and load conditions, results with the LP-EGR system showed that fuel economy was improved without any deterioration of the NOx and PM emissions.
机译:柴油发动机是世界货运和公共交通中最常用的动力总成。但是,从抑制全球变暖的观点出发,迫切需要减少柴油机的废气排放。提出了严格的排放法规,对NOx,PM和CO2排放的关注日益增加。未来的排放法规要求先进的排放控制技术,例如SCR(选择性催化还原),LNT(稀薄的NOx捕集器)和EGR(废气再循环)。 EGR是减少排放的常用技术。在这项研究中,对低压废气再循环(LP-EGR)系统进行了研究,以评估其在减少排放和改善燃油经济性方面的潜力,特别是对于乘用柴油机而言。使用内部控制算法对配备LP-EGR系统的3.0C柴油发动机进行了测试。与传统的HP-EGR(高压废气再循环)系统相比,使用LP-EGR系统在稳定和瞬态工况下可提高燃油经济性。在中速和负荷条件下,LP-EGR系统的结果表明,燃油经济性得到了改善,而NOx和PM排放却没有任何下降。

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