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Computer Models of Nonwoven Geometry and Filtration Simulation

机译:非织造布几何模型和过滤模拟

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A geometric model for the 3 dimensional structure of nonwoven was developed. It contains the porosity, fiber diameters and fiber anisotropy as parameters, and results in complex realizations of the media. Due to the use of a random number generator, no two realizations look alike albeit they all satisfy the requirements for porosity, fiber diameter distribution and fiber anisotropy within a prescribed tolerance. This is very similar to real nonwoven, where no two small samples ever look exactly the same. In these structures, the fluid flow and particle deposition are simulated. Initial pressure drop, filter efficiency and filter lifetime are quantities that are computed based on the nonwoven, the mean flow velocity and the particle size distribution. Additionally, electric charges, adhesion forces and in case of very small particles, diffusion may play a role. With this simulation chain from nonwoven geometry to filtration properties, ultimately the virtual material design of nonwoven will become feasible: For a given filtration application, an optimal, possibly graded nonwoven is sought by an automated computer simulation that finds the best nonwoven parameters. Of course, also other than filtration properties can be simulated, current interests lie in deformations, acoustic absorption and effective strength.
机译:建立了非织造布三维结构的几何模型。它包含孔隙率,纤维直径和纤维各向异性作为参数,并导致介质的复杂实现。由于使用了随机数发生器,因此没有两个实现看起来相似,尽管它们都在规定的公差范围内满足了孔隙率,纤维直径分布和纤维各向异性的要求。这与真实的非织造布非常相似,在真实的非织造布中,没有两个小样品看起来完全相同。在这些结构中,模拟了流体流动和颗粒沉积。初始压降,过滤器效率和过滤器寿命是基于无纺布,平均流速和粒径分布计算的量。另外,电荷,粘附力以及在非常小的颗粒的情况下,扩散也可能起作用。借助从无纺布几何形状到过滤特性的仿真链,最终无纺布的虚拟材料设计将变得可行:对于给定的过滤应用,通过自动计算机仿真寻求最佳的,可能是分级的无纺布,以找到最佳的无纺布参数。当然,除了过滤特性之外,还可以模拟,当前的关注点在于变形,吸声和有效强度。

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