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The optimum cell density for wall-flow monolithic filters: Effects of filter permeability, soot cake structure and ash loading

机译:壁流整体滤波器的最佳细胞密度:过滤渗透性,烟灰饼结构和灰分的影响

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A major challenge in the development of diesel filter systems is the selection of the appropriate filter medium in terms of its geometric configuration (cell density, wall thickness) and its physical properties (porosity, pore size). This selection aims to achieve minimization of the filter pressure drop as well as more efficient filter regeneration. The aim of the present work is to provide engineering criteria to support the design and selection of suitably sized wall-flow monolithic filters for diesel particulate control. The approach followed in the present paper is to employ a comprehensive, experimentally validated mathematical framework taking into account the effects of filter structure (cell density, filter dimensions, wall thickness, permeability), soot cake microstructure and its evolution under varying exhaust flow conditions, as well as ash accumulation, in order to derive optimal configurations and sizing criteria of monolithic filters that can be used for specific applications. A major result concerns the derivation of nomographs giving the optimum cell density for honeycomb filters under the combined constraints of given filter volume, exhaust flow, temperature as well as different soot and ash loadings inside the filter. These nomographs are expected to facilitate the task of selection and reliable life-cycle deployment of diesel particulate filters.
机译:在柴油机系统的开发中的主要挑战是在其几何构型(细胞密度,壁厚)和其物理性质(孔隙率,孔径)方面选择适当的过滤介质。该选择旨在实现滤波压降的最小化以及更有效的过滤器再生。本作本作的目的是提供工程标准,以支持适用于柴油颗粒控制的适当尺寸的壁流整体过滤器的设计和选择。本文遵循的方法是采用全面的实验验证的数学框架,考虑到过滤器结构(细胞密度,过滤尺寸,壁厚,渗透率),烟灰蛋糕微观结构及其在不同排气流动条件下的演变的影响,以及灰分累积,以推导出可用于特定应用的单片过滤器的最佳配置和规模尺寸。主要结果涉及制备程序的导出,其在给定的过滤器体积,排气,温度,温度以及过滤器内的不同烟灰和灰分载体的组合约束下,为蜂窝滤波器提供最佳细胞密度。预计这些规定仪表将促进柴油颗粒过滤器的选择和可靠的生命周期部署任务。

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