首页> 外文期刊>International Journal of Modern Physics, C. Physics and Computers >LATTICE BOLTZMANN SIMULATION ON FLOW WITH SOOT ACCUMULATION IN DIESEL PARTICULATE FILTER
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LATTICE BOLTZMANN SIMULATION ON FLOW WITH SOOT ACCUMULATION IN DIESEL PARTICULATE FILTER

机译:柴油机颗粒过滤器中烟尘积累的格子Boltzmann模拟。

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摘要

Since diesel exhaust gas has more ambient air pollutants such as NOx and particulate matters (PM) including soot, the special treatment for exhaust emission standards is needed. Recently, a diesel particulate filter (DPF) has been developed to reduce PM in the after-treatment of exhaust gas. However, since the structure of the filter is small and complex, it is impossible to examine the phenomena inside the filter experimentally. In this study, we conduct fluid simulation in the diesel filter. We use the lattice Boltzmann method. The soot accumulation is considered to simulate the PM trap in the filter. For the wall-boundary in the simulation, the inner structure of the filter is obtained by a 3D-CT technique. Results show complex flow pattern in the diesel filter. Due to the soot accumulation, the velocity is changed and the pressure is increased. The pressure drop becomes larger as soot concentration at the inlet is higher.
机译:由于柴油机废气中的环境空气污染物较多,例如NOx和包括烟灰在内的颗粒物(PM),因此需要对废气排放标准进行特殊处理。近来,已经开发了柴油机微粒过滤器(DPF)以减少废气后处理中的PM。但是,由于滤波器的结构小而复杂,因此不可能通过实验检查滤波器内部的现象。在这项研究中,我们在柴油滤清器中进行流体模拟。我们使用格子玻尔兹曼方法。烟灰积累被认为是模拟过滤器中的PM捕集器。对于模拟中的壁边界,通过3D-CT技术获得滤波器的内部结构。结果显示柴油滤清器中的流型复杂。由于碳烟的积累,速度会发生变化,压力会增加。入口处的烟尘浓度越高,压降越大。

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