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Hot Zones Formation During Regeneration of Diesel Particulate Filters

机译:柴油机微粒过滤器再生过程中的热区形成

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摘要

A diesel particulate filter (DPF) is used to remove particulate matter (PM) from the diesel engine exhaust. The accumulated PM is periodically removed by combustion, which sometimes leads to excessive temperature excursions that melt the ceramic filter. This behavior cannot be explained by operation under stationary feed conditions. We propose that these temperature excursions are a dynamic effect following a rapid change in the driving mode while the DPF is being regenerated. Specifically, a rapid decrease in the exhaust temperature can lead to a counterintuitive large transient temperature rise above that which would exist under a higher stationary feed temperature. This unexpected behavior is similar to the well-known wrong-way behavior in packed-bed reactors, even though the axial-dependent flow through the filter in a DPF is rather different from the constant axial flow through a packed bed. We present simulations that provide insight about the dependence of the amplitude of this wrong-way temperature rise on the filtration velocity, the PM loading, dimensions of the DPF, and the amplitude of the rapid temperature decrease and when it occurs after the start of the regeneration. The insight provided by these simulations will help develop operation and control protocols that circumvent or at least decrease the probability of the occurrence of the destructive melting of the DPF.
机译:柴油机微粒过滤器(DPF)用于从柴油机排气中除去微粒物质(PM)。积聚的PM通过燃烧定期清除,这有时会导致温度过高,从而使陶瓷过滤器熔化。无法通过在固定进料条件下运行来解释此行为。我们提出,在DPF再生时,随着驾驶模式的快速变化,这些温度偏移是一种动态影响。具体地说,排气温度的快速下降会导致瞬时的大的瞬态温度升高,其高于在较高的固定进料温度下可能出现的升高。即使在DPF中通过过滤器的轴向相关流量与通过填充床的恒定轴向流量有很大不同,这种意外行为也类似于填充床反应器中众所周知的错误行为。我们提供了一些模拟,以了解这种反向温度升高的幅度与过滤速度,PM负荷,DPF尺寸以及快速降温的幅度以及在启动后发生的时间的相关性。再生。这些模拟提供的见解将有助于开发规避或至少降低DPF破坏性熔化发生概率的操作和控制协议。

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