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Textural Characterization Of Media Composed Of Compacted Pieces Of Cardboard And Polyethylene Using A Gas Tracer Method

机译:用气体示踪法表征由纸板和聚乙烯压实件组成的介质的结构特征

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The aim of this work is the experimental determination of effective transport properties of porous media consisting of compacted pieces of cardboard and polyethylene (PE).The proposed method itself is more general and can be applied to many different materials and contexts.Three major transport properties were determined: porosity, tortuosity factor and permeability.Three parameters characterizing the media were varied over a wide range: the bulk density, the size of the elements entering the mix, and the proportion of cardboard and PE in the mix.The properties were measured by means of a specially designed experimental device based on miscible gas tracing.The porosity and tortuosity factor were simultaneously determined by parametric identification, based on the experimental sample output response to an inlet gas concentration step change compared to the results of a direct numerical model.Permeability was calculated in the standard way from the measurement of the pressure drop across the sample.rnThe reproducibility of the measurements was very good.It was found that changing the material density of the medium significantly affects all three structural properties.When the bulk density is varied between 300 and 900 kg m~(-3), the tortuosity factor varies in a range as large as 18-8 and the permeability decreases by a ratio of 2-3.The tortuosity factor shows unusual variation, characterized by a decrease when density is increased above 500 kg m~(-3).The size of the elements does not significantly affect the structural properties of the medium in the range of parameters studied.
机译:这项工作的目的是实验确定由压实的硬纸板和聚乙烯(PE)组成的多孔介质的有效传输性能,该方法本身更通用,可应用于许多不同的材料和环境。三大传输性能确定了孔隙率,曲折系数和渗透率,表征介质的三个参数在很宽的范围内变化:堆积密度,进入混合物的元素的大小以及纸板和PE在混合物中的比例。通过一个基于可混溶气体示踪的特殊设计的实验装置,根据实验样品输出对入口气体浓度阶跃变化的响应(与直接数值模型的结果相比),通过参数识别同时确定孔隙率和曲折因子。渗透率是根据测量压降的标准方法计算的测量的可重复性非常好,发现改变介质的材料密度会显着影响所有三个结构特性。当堆积密度在300至900 kg m〜(-3)之间变化时,曲折度弯曲系数在18-8范围内变化,渗透率以2-3的比率减小。曲折系数显示出不寻常的变化,其特征是当密度增加到500 kg m〜(-3)以上时减小。在所研究的参数范围内,元素的含量不会显着影响介质的结构性能。

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