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Investigating Permeability of Coal Samples of Various Porosities under Stress Conditions

机译:应力条件下不同孔隙度煤样品的渗透率研究

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Among the numerous factors that have an impact on coal permeability, coal porosity is one of the main parameters. A change in the mechanical stress applied to coal results in a change of porosity. The main objective of the conducted research was to answer the following question: is a decline in coal permeability a direct effect of a decrease in coal porosity, and does mechanical stress result solely in a porosity change? A study of coal porosity under mechanical stress conditions was conducted using a uniquely constructed measurement stand. The coal samples used were briquettes prepared from a granular coal material (middle-rank coal of type B—meta bituminous, upper carboniferous formation) from the “Zofiówka” coal mine, in Poland. In order to describe coal permeability, the Klinkenberg equation was used, as it takes into consideration the slippage effect, typical of porous media characterized by low permeability. On the basis of the obtained results, it was established that the values of the Klinkenberg permeability coefficient decrease as the mechanical stress and the corresponding reduction in porosity become greater. As the briquette porosity increased, the Klinkenberg slippage effect: (i) disappeared in the case of nitrogen, (ii) and was minor for methane. The briquettes used were characterized by various porosities and showed that mechanical stress results mainly in a change in coal porosity, which, in turn, reduces coal permeability.
机译:在影响煤渗透性的众多因素中,煤的孔隙度是主要参数之一。施加在煤上的机械应力的变化导致孔隙率的变化。进行研究的主要目的是回答以下问题:煤渗透率的下降是煤孔隙度降低的直接影响,机械应力是否仅导致孔隙度变化?使用独特构造的测量架对机械应力条件下的煤孔隙度进行了研究。所使用的煤样品是从波兰“Zofiówka”煤矿的粒状煤材料(B型中阶煤—中等沥青,上石炭统)制成的团块。为了描述煤的渗透率,使用了Klinkenberg方程,因为它考虑了滑移效应,这是典型的低渗透率多孔介质的特征。基于所获得的结果,可以确定,随着机械应力和相应的孔隙率降低变大,克林肯伯格渗透系数的值减小。随着团块孔隙度的增加,克林根贝格滑移效应:(i)在氮的情况下消失,(ii)对甲烷的影响很小。所使用的团块具有多种孔隙特征,并显示出机械应力主要导致煤孔隙率发生变化,进而降低了煤的渗透率。

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