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Mesoscale modeling of electrical percolation in fiber-filled systems

机译:纤维填充系统中电渗流的中尺度建模

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The research described in this paper primarily involves mesoscale simulations: dissipative particle dynamics (DPD) of packed assemblies of oriented fibers suspended in a viscous medium. Computer simulations have been performed in order to explore how the aspect ratio and degree of fiber alignment affect the critical volume fraction (percolation threshold) required to achieve electrical conductivity. The fiber network impedance was assessed using Monte Carlo simulations after establishing the structural arrangement with DPD. The predictions are compared with the predictions of classical percolation theory and found to be in close agreement. The approach is thus validated and can be extended to systems that cannot be tackled analytically; in particular, the work is motivated by long-standing interest in materials which display a complex percolation behavior. (c) 2005 American Institute of Physics.
机译:本文描述的研究主要涉及中尺度模拟:悬浮在粘性介质中的定向纤维堆积组件的耗散粒子动力学(DPD)。为了探索纵横比和纤维排列度如何影响实现电导率所需的临界体积分数(渗透阈值),已进行了计算机模拟。在用DPD建立结构布置之后,使用蒙特卡洛模拟评估光纤网络的阻抗。将这些预测与经典渗流理论的预测进行了比较,并发现它们之间有着密切的一致性。因此,该方法得到了验证,可以扩展到无法通过分析解决的系统;特别是,长期以来人们对表现出复杂渗滤行为的材料产生了浓厚的兴趣。 (c)2005年美国物理研究所。

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