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首页> 外文期刊>International journal of engine research >Strategies for active diesel particulate filter regeneration based on late injection and exhaust recirculation with different fuels
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Strategies for active diesel particulate filter regeneration based on late injection and exhaust recirculation with different fuels

机译:基于后期喷射和不同燃料废气再循环的主动式柴油机微粒滤清器再生策略

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Wall flow-type particulate filters are used in diesel vehicle engines to reduce particulate emissions below the limits established in regulations Euro 5 and Euro 6. The soot accumulated in the trap is eliminated during regeneration processes, often combining passive strategies with active ones. Active regeneration is conducted by modifications of the engine control parameters with respect to those set for normal vehicle operation. In this work, three of these parameters were modified to look for an optimized regeneration strategy, considering fuel consumption, gaseous emissions and rate of regeneration. The selected parameters were injection timing (affecting all injection events), exhaust gas recirculation and amount of postinjected fuel. The fuel tested was considered as an additional variable, and therefore, tests were performed with three different fuels: an ultra-low sulfur diesel fuel, a biodiesel fuel produced from animal fat and a gas-to-liquid fuel from low-temperature Fischer-Tropsch process. It was proved that eliminating the gas recirculation is the optimal option for a fast regeneration and reduced fuel consumption and that the late postinjection is essential to keep the temperature conditions needed for an efficient regeneration. Some limits were also proposed for these parameters to prevent from excessively fast or uncontrolled regeneration, to avoid excessive increase in fuel consumption and to reduce the probability of fuel dilution. Finally, the fuel properties were proved to be very relevant to the regeneration process, and therefore, both biodiesel and gas-to-liquid fuels (especially the former) showed un-optimized regeneration processes under the conditions set for regeneration process optimized with diesel fuel.
机译:壁流式颗粒物过滤器用于柴油发动机,以将颗粒物排放降低到欧盟法规5和欧盟法规6规定的限值以下。捕集阱中积碳烟灰在再生过程中被消除,通常将被动策略与主动策略结合使用。通过相对于正常车辆操作设定的发动机控制参数进行修改来进行主动再生。在这项工作中,修改了这些参数中的三个参数,以考虑燃料消耗,气体排放和再生速率来寻找最佳的再生策略。选择的参数是喷射正时(影响所有喷射事件),废气再循环和后喷射燃料量。测试的燃料被认为是附加变量,因此,测试使用了三种不同的燃料:超低硫柴油燃料,由动物脂肪产生的生物柴油燃料和由低温费休燃料生产的气液燃料。 Tropsch过程。事实证明,消除气体再循环是快速再生和减少燃料消耗的最佳选择,后期后期喷射对于保持有效再生所需的温度条件至关重要。还为这些参数提出了一些限制,以防止过度快速或不受控制的再生,避免燃料消耗过度增加并降低燃料稀释的可能性。最后,事实证明燃料性质与再生过程非常相关,因此,在为柴油优化的再生过程设定的条件下,生物柴油和气液燃料(尤其是前者)均显示出未优化的再生过程。 。

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