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Combustion Characteristics and Exhaust Gas Emissions of a Diesel Engine Supplied with Reformed EGR

机译:改革EGR提供的柴油机燃烧特性和废气排放

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The Reformed EGR (REGR) technique involves the injection of hydrocarbon fuel (e.g., diesel) into a catalytic reformer fitted into the engine EGR system, so that the produced hydrogen-containing gas mixture is fed back to the engine as REGR. Thus, in effect the engine operates in a similar way to a dual-fueled engine with standard EGR. Depending on the reforming conditions, the composition and the calorific value of the REGR may vary and this affects the engine performance and emissions. In the present study, simulated REGR with different H{sub}2/CO ratios has been examined. The combustion of REGR with maximum H{sub}2 and minimum CO contents resulted in the highest reduction of NO{sub}x emissions. This case simulated the reformer operation where the CO is fully converted to H{sub}2 by promoting the exothermic water gas shift reaction (WGSR). The highest reductions of both smoke and fuel consumption were achieved in the case of simulating the reformer operation where the CO is not fully converted to H{sub}2. In all the examined cases, the use of REGR resulted in reduced NO{sub}x and smoke emissions. Improved fuel economy was achieved only at middle and high load engine operation compared to the standard operation with diesel fuel only.
机译:重新改造的EGR(RECT)技术涉及将烃燃料(例如,柴油)注射到装配到发动机EGR系统中的催化重整器中,从而将制备的含氢气体混合物作为REGR重新进入发动机。因此,其实际上,发动机以与具有标准EGR的双燃料发动机类似的方式操作。根据改革条件,雷发的组成和热值可能会有所不同,这会影响发动机性能和排放。在本研究中,已经检查了不同H {Sub} 2 / CO比的模拟结束。 Rege的燃烧具有最大H {Sub} 2和最小CO内容导致NO {Sub} x排放的最高减少。这种情况模拟了通过促进放热水换水反应(WGSR)将Co完全转化为H {Sub} 2的重整器操作。在模拟CO未完全转换为H {SUB} 2的情况下,实现了烟雾和燃料消耗的最高减少。在所有检查的病例中,使用后的使用导致了没有减少的{sub} x和烟雾排放。与仅与柴油燃料的标准操作相比,仅在中高负荷发动机运行中实现了改善的燃油经济性。

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