磁导率
饱和(图论)
含水饱和度
材料科学
毛细管压力
地质学
土壤科学
页岩气
多孔性
岩土工程
多孔介质
天然气
作者
Yuling Tan,Songhang Zhang,Shuheng Tang,Guanglei Cui,Yong Ma,Mengdi Sun,Zhejun Pan
标识
DOI:10.1016/j.jngse.2021.104062
摘要
Abstract Shale gas is becoming more important in clean energy supply. There is original water content in shale pores under reservoir condition. In addition, the introduction of water-based fracturing fluid during hydraulic fracturing process also changes the shale reservoir water saturation. Water saturation has a profound impact on the gas effective permeability and its anisotropy, thus on shale gas production. Previous experimental studies on gas effective permeability were mostly on dry samples. Due to the great difficulty in gas-water two-phase flow experiment, there are very few experiments to study the impact of shale water saturation on gas permeability. How water content affects gas effective permeability is not well understood. This work proposes an experimental method to investigate the effect of water saturation on stress-dependent gas permeability. Moreover, the experimental method and gas permeability results are compared between this work and literature. An integrated permeability model considering the impact of water saturation is proposed. It is found that the water content has significant impact on gas effective permeability and the impact is more significant for low permeability samples.
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