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首页> 外文期刊>Journal of Petroleum Science & Engineering >Relative permeability to water or gas in the presence of hydrates in porous media from critical path analysis
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Relative permeability to water or gas in the presence of hydrates in porous media from critical path analysis

机译:关键路径分析中多孔介质中水合物存在下对水或气体的相对渗透率

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摘要

Most existing models for predicting relative permeability in the presence of hydrate are either empirical or based on simplistic representations of the pore system and hydrate growth. Multiple models are often needed to explain relative permeability behavior observed in the laboratory over different ranges of, hydrate saturation. Critical path analysis (CPA) offers a framework for predicting relative permeability based on pore system properties, including the percolation threshold and breadth of the pore size distribution. Using an existing method developed for partially saturated soils, I show that CPA can accurately predict relative permeability to either water or gas over the entire range of measured hydrate saturation for several suites of laboratory measurements. The method does not require any assumption of hydrate growth habit, and assumes that hydrate tends to grow in the largest pores first. This work represents an improvement in understanding the link between pore structure and transport properties of hydrate bearing sediment. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在存在水合物的情况下,大多数现有的预测相对渗透率的模型都是经验性的,或者是基于孔隙系统和水合物生长的简单表示。通常需要多个模型来解释在水合物饱和度不同范围内在实验室中观察到的相对渗透率行为。关键路径分析(CPA)提供了一个基于孔隙系统特性(包括渗透阈值和孔径分布宽度)来预测相对渗透率的框架。使用针对部分饱和土壤开发的现有方法,我证明了CPA可以准确预测几组实验室测量值在整个水合物饱和度测量范围内对水或天然气的相对渗透率。该方法不需要任何关于水合物生长习惯的假设,并假设水合物首先倾向于在最大的孔中生长。这项工作代表了对理解孔隙结构和含水合物沉积物的输送特性之间联系的一种改进。 (C)2016 Elsevier Ltd.保留所有权利。

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