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Simulation and experimental measurement of dynamic behavior of solid foam filter for diesel exhaust gas

机译:柴油机尾气用固体泡沫过滤器动态特性的仿真与实验测量

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摘要

A new diesel particulate filter (DPF) based on solid 3-SiC foam is presented in this work. This solid foam filter becomes a promising alternative to the common wall flow filter, as it is effective in filtering ultra fine soot particles and provides a larger specific surface area for catalytic coating. This new DPF is validated with a series of experiments, which are realized on real bench test. A simplified descriptive model based on the new analogy between solid foams and fiber filter is developed. The equations of the model describe the fluid flow, the diffusion phenomenon, inertia and direct intercept mechanisms to describe the filtration processes. The simulations show a good agreement between the experimental data and the model. This model is able to supply information about the filtration efficiency of the exhaust gas particles and the pressure drop along the solid foam filter, consequently it can be used in order to estimate the catalytic activity (i.e. the total number of soot particles consumed by the catalytic reaction).
机译:这项工作提出了一种基于固体3-SiC泡沫的新型柴油机微粒过滤器(DPF)。这种固体泡沫过滤器成为普通壁流式过滤器的有希望的替代品,因为它可以有效过滤超细的烟尘颗粒,并为催化涂层提供更大的比表面积。此新的DPF已通过一系列实验验证,这些实验在真实的基准测试中实现。基于固体泡沫和纤维过滤器之间的新类比,简化了描述模型。该模型的方程式描述了流体流动,扩散现象,惯性和直接拦截机制,以描述过滤过程。仿真显示实验数据与模型之间的良好一致性。该模型能够提供有关废气颗粒过滤效率和沿着固体泡沫过滤器的压降的信息,因此可用于估算催化活性(即,催化颗粒消耗的烟尘颗粒总数)。反应)。

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