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Conduction through a damaged honeycomb lattice

机译:通过损坏的蜂窝状网格传导

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摘要

The temperature distribution and rate of heat transfer across an infinite periodic strip of a honeycomb lattice consisting of conductive segments or links joined at nodes or junctions is discussed. A pristine honeycomb behaves like an isotropic medium whose effective conductivity is independent of the orien tation of an applied macroscopic temperature gradient. Monte Carlo simulations are performed to deter mine the effect of link damage or disruption and lattice deformation due to junction displacement. In the simulations, a specified percentage of randomly distributed links are assigned a conductivity that is lower than that of the undamaged links. The balance equations governing the nodal temperatures at the junc tions are solved by iteration subject to a periodicity condition along the strip and the Dirichlet condition along the two infinite edges of the strip. The results illustrate the effect of imperfections on the temper ature distribution over the network and document the dependence of the effective conductivity on the percentage and conductivity of the defective links. In the case of nonconductive damaged links, the effec tive conductivity becomes nearly zero when a critical percentage of links are clipped, in agreement with bond percolation theory. However, the functional form of the number density of possible pathways con necting the lower to the upper edge of the strip predicted by percolation theory differs from that of the effective conductivity. Lattice deformation due to random node displacement has a small effect on the effective conductivity of the network.
机译:讨论了蜂窝状格子的无限周期性带上的温度分布和传热速率,该蜂窝状格子由在节点或结点处连接的导电段或链节组成。原始蜂窝的行为类似于各向同性介质,其有效电导率与所施加的宏观温度梯度的方向无关。进行蒙特卡洛模拟,以确定由于结位移而引起的链节损坏或破坏以及晶格变形的影响。在模拟中,指定百分比的随机分布链接的电导率低于未损坏链接的电导率。控制交点处节点温度的平衡方程是通过迭代求解的,该迭代受沿着带的周期性条件和沿着带的两个无限边缘的Dirichlet条件的影响。结果说明了缺陷对网络温度分布的影响,并记录了有效电导率对有缺陷链节的百分比和电导率的依赖性。对于非导电性损坏的链环,按照键渗流理论,当临界链环的一部分被剪裁时,有效电导率几乎变为零。然而,通过渗流理论预测的连接带的下边缘到上边缘的可能路径的数量密度的函数形式不同于有效电导率。随机节点位移引起的晶格变形对网络的有效电导率影响很小。

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