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Exploring the antifouling effect of elastic deformation by DEM–CFD coupling simulation

机译:DEM-CFD耦合仿真探索弹性变形的防污效果

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The influence of elastic deformation and elastic modulus on the release of adhered bacteria was investigated in this paper. Four silicone elastomers (SE) with different elastic moduli and one rigid polystyrene sheet were prepared to verify the antifouling effect of elastic deformation. The SE film has an elastic deformation effect under the stimulus of fluid medium, which makes the surface unstable. That could reduce the adhesion of fouling organisms and provide a foul-release basis. Distinct anti-adhesion properties were observed in our study in that cells more easily adhered to the rigid surface than the elastic surfaces under hydrodynamic conditions. However, the bacterial attachment test showed a similar antifouling performance of SE and the rigid surface under static conditions. To investigate the anti-adhesion ability of the elastic surface and rigid surface, the bacterial adhesive kinetics were studied by Discrete Element Method (DEM)–Computational Fluid Dynamics (CFD) coupling simulation. Results indicated the number of bacteria adhering on the elastic wall was significantly lower than on the rigid wall. And as the elastic modulus increased, the bacterial adhesion increased accordingly within a certain range. This work should not only enhance understanding of elastomer-based antifouling materials, but also facilitate the design and construction of other types non-toxic foul-release materials.
机译:本文研究了弹性变形和弹性模量对粘附细菌释放的影响。制备具有不同弹性模量和一个刚性聚苯乙烯片的四种有机硅弹性体(SE)以验证弹性变形的防污效果。 SE膜在流体介质的刺激下具有弹性变形效果,这使得表面不稳定。这可以减少结垢生物的粘附性并提供污垢释放的基础。在我们的研究中观察到不同的抗粘附性能,在该细胞更容易被粘附到刚性表面上的细胞比流体动力学条件下的弹性表面更容易粘附到刚性表面上。然而,细菌附着试验在静态条件下显示了SE和刚性表面的类似防污性能。为了研究弹性表面和刚性表面的抗粘附能力,通过离散元素法(DEM) - 计算流体动力学(CFD)耦合仿真研究了细菌粘合动力学。结果表明,弹性墙上粘附的细菌数明显低于刚性壁。随着弹性模量的增加,细菌粘合在一定范围内相应地增加。这项工作不仅应加强对基于弹性体的防污材料的理解,还可以促进其他类型无毒污水释放材料的设计和构建。

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