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Virtual Material Design and Air Filtration Simulation Techniques inside GeoDict and FilterDict

机译:地理标和过滤器内的虚拟材料设计和空气过滤仿真技术

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In case of depth filtration in fibrous filter media,pressure drop,permeability,filter efficiency, and filter lifetime depend strongly on the micro structure.In addition to the filter mechanisms which are present already for a single fiber we also simulate sieving effects and electrostatic forces that are highly dependent on the geometry of the material.The procedure decouples into several steps:First individual layers of the fibrous filter media are modeled and then stacked into a random three-dimensional representation with given mean properties such as porosity,fiber types and fiber directions.Next,the air flow through the media is computed by solving the steady Stokes equations,and the electric field given by surface charges on the fibers is computed by solving a Poisson problem with singular source terms and appropriate boundary conditions.Then,a stochastic ordinary differential equation models Brownian motion,friction with the air,inertia of particles due to mass,as well as attraction or repulsion due to electric forces
机译:在纤维过滤介质中深度过滤的情况下,压降,渗透性,过滤效率和过滤寿命在微结构上强烈取决于微结构。除了已经针对单个纤维的过滤机构的滤波机构,我们还模拟了筛分效果和静电力这高度依赖于材料的几何形状。该程序分成几个步骤:纤维过滤介质的第一单独层被建模,然后用给定平均性质如孔隙率,纤维类型和纤维堆叠成随机三维表示。方向。通过求解稳定的斯托克斯方程来计算通过介质的空气流动,并且通过用奇异源术语和适当的边界条件来解决纤维上的表面电荷给出的电场。然后,一个随机普通微分方程模型布朗运动,摩擦空气,由于质量和attrac而惯性粒子由于电力而排斥

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