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Anatomically informed mesoscale electrical impedance spectroscopy in southern pine and the electric field distribution for pin-type electric moisture metres

机译:南部松树的解剖学告知中尺度电阻抗光谱和针型电湿度计的电场分布

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Electrical impedance spectra of wood taken at macroscopic scales below the fibre saturation point have led to inferences that the mechanism of charge conduction involves a percolation phenomenon. The pathways responsible for charge conduction would necessarily be influenced by wood structure at a variety of sub-macroscopic scales - at a mesoscale - but these questions have not yet been addressed. The goal of this work is to explore if mesoscale anatomical features in wood affect impedance spectra. Small (0.5 mm diameter) needles were used as electrodes and were configured such that the line segment between the electrodes could be oriented radially, tangentially, longitudinally and in combinations of those directions in both earlywood and latewood, including comparisons of earlywood-latewood transitions. The spectra were fit to an equivalent circuit model with a constant phase element in parallel with a resistor and Warburg element that describes ionic conduction. Finite element simulations were run to examine the effect of the fringing electric field near the electrodes. The simulations revealed that the current density was concentrated at the electrodes, resulting in a lack of dependence on electrode spacing thus explaining why measurements taken with pin-type electric moisture metres are nearly independent of electrode geometry.
机译:在纤维饱和点以下的宏观尺度上获取的木材的电阻抗谱已得出推论,即电荷传导机制涉及渗滤现象。负责电荷传导的途径必然会受到各种亚宏观尺度(中尺度)的木材结构的影响,但这些问题尚未得到解决。这项工作的目的是探索木材的中尺度解剖特征是否会影响阻抗谱。使用小(直径为0.5毫米)的针作为电极,并进行配置,以使电极之间的线段可以在早木和晚木中径向,切向,纵向以及这些方向的组合进行定向,包括比较早木和晚木过渡。光谱拟合到等效电路模型,该模型具有一个恒定相元素,与一个电阻器和描述离子传导的Warburg元素并联。进行了有限元模拟,以检查电极附近边缘电场的影响。模拟显示电流密度集中在电极上,导致对电极间距的依赖性不足,从而解释了为什么用针式电湿度计进行的测量几乎与电极的几何形状无关。

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