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A review of shale swelling by water adsorption

机译:页岩吸水膨胀研究综述

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Due to the improvement of drilling and recovery techniques, shale gas exploration has developed rapidly over the past ten years, and problems that have arisen have attracted increasing attention. Swelling of shale with the adsorption of water is one of the leading problems for shale gas exploration, as it causes wellbore instability and shale formation collapse. The main objective of this study is to investigate the relationship of factors that influence shale swelling. On the basis of previous studies, three factors initial water content, clay fraction and confined pressure were selected for analysis. In order to further understand the speed of shale swelling, investigations of specimens with different initial water/moisture contents swelling in water/humid conditions are summarized. The results show that water adsorption creates higher swelling volume than moisture adsorption and the maximum swelling speed occurs at an initial water content of about 14%. To measure swelling potential, a multiple linear regression model is developed to obtain an equation to predict shale's swelling potential. According to the regression results, shale swelling is negatively linearly related to initial water content and logarithmic confined pressure, and is correlated linearly with clay fraction. (C) 2015 Elsevier B.V. All rights reserved.
机译:由于钻井和采收技术的改进,页岩气勘探在过去十年中发展迅速,出现的问题已引起越来越多的关注。吸附水使页岩膨胀是页岩气勘探的主要问题之一,因为它会引起井筒失稳和页岩形成塌陷。这项研究的主要目的是研究影响页岩膨胀的因素之间的关系。在以往研究的基础上,选择了初始含水量,黏土分率和承压三个因素进行分析。为了进一步了解页岩溶胀的速度,总结了在水/湿条件下具有不同初始水/水分含量溶胀的标本的研究。结果表明,水吸附产生的溶胀量大于水分吸附,并且最大溶胀速度出现在初始含水量约为14%时。为了测量溶胀潜力,开发了一个多元线性回归模型来获得一个预测页岩溶胀潜力的方程式。根据回归结果,页岩膨胀与初始含水量和对数承压呈负线性关系,与黏土分数呈线性关系。 (C)2015 Elsevier B.V.保留所有权利。

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