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首页> 外文期刊>The Journal of Chemical Physics >Effective diffusivity through arrays of obstacles under zero-mean periodic driving forces
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Effective diffusivity through arrays of obstacles under zero-mean periodic driving forces

机译:在零均值周期性驱动力下通过障碍物阵列的有效扩散

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We perform a numerical investigation of the transport of Brownian particles driven by a zero-mean periodic force across two-dimensional arrays of obstacles with finite length. By applying axial and transversal driving forces relative to the diffusion transport direction, the effective diffusivity is determined as function of the array geometry and the driving frequency, finding excess diffusion peaks at certain frequency ranges. The results indicate that a suitable selection of the axial and transversal frequencies yields enhanced diffusion transport along the axial direction. Symmetric and asymmetric arrays are considered, showing that the asymmetry has a detrimental effect in the magnitude of the excess diffusion peaks. This suggests that enhanced diffusion is obtained because the oscillatory driving force exploits preferential transport channels, whose effective obstacle spacing is maximized under symmetric configurations.
机译:我们对由零均值周期性力驱动的布朗粒子在有限长度的障碍物二维阵列上的传输进行了数值研究。通过施加相对于扩散传输方向的轴向和横向驱动力,可将有效扩散率确定为阵列几何形状和驱动频率的函数,并在某些频率范围内找到多余的扩散峰。结果表明,在轴向和横向的频率的适当选择债收益率增强沿轴向方向扩散运输。考虑对称和非对称阵列,表明不对称对过量扩散峰的大小具有不利影响。这表明获得增强的扩散,因为振荡驱动力利用了优先的运输通道,其有效的障碍物间距在对称配置下最大化。

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