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Mass transfer improvements in catalytic converter channels: a hybrid BGK-finite volume numerical simulation method

机译:催化转化通道的传质改进:混合BGK-Unitite数值模拟方法

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For compliance with future LEV/ULEV emission standards in United States and Euro 2000/Euro 2005 standards in European Community, catalytic converter performance has to be remarkably improved. The development of simulation codes allows to investigate a high range of possible exhaust system configurations and engine operating parameters. In the present study, a hybrid Lattice BGK-finite volume technique will be described, able to determine the mass transfer rates of the chemical species to the catalyzed wall of the monolith channels. The BGK code solves the fluid motion governing equations in a reduced form obtained by discretizing the continuum in a fixed number of particles. Each of them will be moved by a set of discrete velocities and collide with the neighbor particles according to a fixed pattern of particle-interaction. After evaluating the velocity field by means of the BGK method, the chemical species concentrations evolution will be evaluated into a converter channel using a finite volume technique. In the present study, different monolith channel configurations will be examined in order to analyze the influence of wall shape on the mass transfer effectiveness.
机译:为了符合美国未来的利益/ Ulev排放标准和2000欧元/欧元2005年欧洲共同体标准,必须显着提高催化转换器性能。仿真码的开发允许研究高范围的可能排气系统配置和发动机操作参数。在本研究中,将描述混合晶格BGK-有限体积技术,能够将化学物质的质量传递速率确定为催化壁的整体通道的催化壁。 BGK码以通过在固定数量的颗粒中离散化连续体而获得的减少形式的流体运动控制方程。它们中的每一个将由一组离散速度移动并根据颗粒相互作用的固定模式与邻居颗粒碰撞。通过BGK方法评估速度场,将使用有限体积技术评估化学物质浓度的进化进入转换器通道。在本研究中,将检查不同的单层通道配置,以便分析壁形状对传质效能的影响。

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