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Study on Fractal Model for Predicting Permeability and Effective Thermal Conductivity to Fibres of Cut-Tobacco

机译:预测渗透率和有效导热性与切割烟草纤维的分形模型研究

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The permeability and the effective thermal conductivity of cut-tobacco were studied using two-dimensional fractal theory. The porous structure of cut-tobacco samples on their cross sections was analysed and their box-counting dimensions were calculated. The permeability process of gas through cut-tobacco has been analysed and fractal model of the process has been established. The heat conduction process of a single hole was studied and the thermal conductivity of cut-tobacco was obtained by the thermal resistance method. The results show that the fractal dimension of porous structure of cut-tobacco approximately is equal to 1.3. With the increasing of the fractal dimension, high porosity cut-tobacco is in favor of permeability process. Oppositely, with the decreasing of the fractal dimension, the porosity of cut-tobacco decreases corresponding to the component of cut-tobacco increasing which lead to the strength of the thermal conductivity coefficient. Comparison between theoretical and experimental results, the results show that the fractal model can effectively predict the permeability and effective thermal conductivity to fibres of cut-tobacco.
机译:使用二维分形理论研究了切割烟草的渗透性和有效的导热率。分析了在其横截面上的切割烟草样品的多孔结构,并计算了它们的盒子计数尺寸。已经分析了通过切割烟草的气体渗透过程,并建立了该过程的分形模型。研究了单孔的导热过程,通过耐热方法获得切割烟草的导热率。结果表明,切割烟草多孔结构的分形尺寸约等于1.3。随着分形尺寸的增加,高孔隙率切割烟草有利于渗透性过程。相反,随着分形尺寸的降低,切割烟草的孔隙率对应于切割烟草增加的组件,这导致导热系数的强度。理论和实验结果之间的比较,结果表明,分形模型可以有效地预测切割烟草纤维的渗透性和有效的导热性。

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