Petroleum Science >2022, lssue 6: - DOI: https://doi.org/10.1016/j.petsci.2022.05.001
An approximate analytical solution for transient gas flows in a vertically fractured well of finite fracture conductivity Open Access
文章信息
作者:Yun-Hu Lu, Kang-Ping Chen, Yan Jin, Hong-Da Li, Quan Xie
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引用方式:Yun-Hu Lu, Kang-Ping Chen, Yan Jin, Hong-Da Li, Quan Xie, An approximate analytical solution for transient gas flows in a vertically fractured well of finite fracture conductivity, Petroleum Science, Volume 19, Issue 6, 2022, Pages 3059-3067, https://doi.org/10.1016/j.petsci.2022.05.001.
文章摘要
Abstract: An analytical solution in physical variable space is presented for transient gas flows during constant-rate production from a vertically-fractured well in an infinite homogeneous reservoir with finite fracture conductivity. The solution is based on the short-time asymptotic solution and a new approximate transient elliptical flow solution, which covers transient flows from the bilinear flow regime to the pseudo-radial flow regime. The solution covers the well-known asymptotic solutions in both short- and long-time limits of bilinear and pseudo-radial flows. The analytical model provides a practical and reliable engineering tool to evaluate the fractured reservoir properties, which can be programmed using a spreadsheet.
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Keywords: Transient gas pressure; Fractured well; Analytical solution