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- W3135342912 abstract "Abstract Microwave stimulation technology is a potential effective method to improve shale gas recovery. It is very important to study the influence factors of microwave heating and evaluate the effect of microwave heating on promoting shale microstructure development. Infrared thermal imaging technology was used to study the influence of shale permittivity, saturation and microwave irradiation (MI) parameters on shale heating. The results show that the larger the permittivity is, the faster the heating rate of the sample is and the higher the final temperature is. Meanwhile, it was further confirmed that the contents of pyrite and siderite are positively correlated with the dielectric constant of the samples. The shale with higher saturation has better heating effect under the same microwave heating condition. In addition, when the microwave is used to heat the samples, there is a threshold effect of microwave power. When the microwave power is larger than the threshold, the samples will be heated rapidly. However, when the microwave power increased to a certain extent, better heating effect and higher microwave energy utilization efficiency can be obtained by extending the heating time rather than increasing the microwave power. The SEM images analysis shows that when the thermal stress are greater than the cementation strength between the minerals, micro-fractures will be produced. By analyzing the stress-strain curves of shale samples with different saturation, it is found that the peak stress and elastic modulus of the samples all decreased in different extent. In conclusion, the experimental results show that microwave heating can effectively improve the temperature of shale reservoir, weaken the shale strength, and induce effective fractures. Therefore, this technology has certain application potential in shale gas recovery." @default.
- W3135342912 created "2021-03-15" @default.
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- W3135342912 creator A5089054185 @default.
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- W3135342912 date "2021-06-01" @default.
- W3135342912 modified "2023-09-24" @default.
- W3135342912 title "The temperature and mechanical damage investigation of shale with various dielectric properties under microwave irradiation" @default.
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- W3135342912 doi "https://doi.org/10.1016/j.jngse.2021.103919" @default.
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