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Assessment of the performance of diesel particulate filter systems with fuel additives for enhanced regeneration characteristics

机译:评估柴油颗粒过滤系统与燃料添加剂进行增强再生特性的性能

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Diesel particulate filter (DPF) are well known as a developing form of exhaust after-treatment for compression ignition engines. Subjected to extensive testing in experimental form, DPFs have yet to achieve widespread application in regular use on production road vehicles, despite their potential for delivering reductions of typically 90% in diesel exhaust particulate emissions. Tests have shown that different additives are effective in enhancing performance in a range of DPF types, and on engines of different configurations. Efforts have been made to correlate performance with engine operating regime, by linking soot particulate condition to the frequency of regeneration. A performance index has been developed to try to predict regeneration characteristics with additive treated fuel. The work has shown that there are engine operating conditions producing soot which is less likely to burn off in the DPF. However, these less favorable engine operating conditions change with engine technology. The latest generation of engines are characterized by electronic control of engine management functions. This facility offers the possibility of control linked to DPF back pressure/soot loading, to manage engine operation to produce enhanced regeneration conditions in the DPF, thus combining an increasingly established particulate control strategy with very high specific performance and fuel efficiency.
机译:柴油颗粒过滤器(DPF)是众所周知的压缩点火发动机的废气后处理的显影形式。尽管有可能在柴油机排气颗粒排放中减少典型90%的可能性,但DPF在经常使用的实验表格中尚未实现广泛应用,尚未在生产公路车辆上定期使用。测试表明,不同的添加剂有效地增强了一系列DPF类型的性能,以及不同配置的发动机。通过将烟灰微粒条件与再生频率连接到发动机操作方案,已经努力与发动机操作制度相关联。已经开发了一种性能指标来试图预测具有添加剂处理的燃料的再生特性。该工作表明,有发动机操作条件产生烟灰,其在DPF中不太可能燃烧。然而,这些不太有利的发动机运行条件随发动机技术而变化。最新一代发动机的特点是通过电子控制发动机管理功能。该设施提供了控制与DPF背部压力/烟灰装载的可能性,以管理发动机操作,以在DPF中产生增强的再生条件,从而将越来越建立的颗粒控制策略与非常高的特定性能和燃料效率相结合。

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