Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
5484420 | Journal of Petroleum Science and Engineering | 2017 | 57 Pages |
Abstract
On the basis of the model, the transient flow behavior is detected and analyzed in detail. Results in this investigation show that the system exhibits six typical flow regimes: pseudo-bilinear flow, pseudo-linear flow, pseudo-radial flow, compound-linear flow, compound-radial flow and fracture closure effect. The characterization of transient behavior depends on the intense of pressure sensitivity in the fracture and reservoir, and fracture property parameters including fracture conductivity, number, spacing and asymmetry factor. Likewise, the transient behavior has four unique features: (1) the pressure sensitivity causes a gradual increasing in both pressure drop and derivative over time due to the partial closure in fracture, until to the maximum; (2) the deviation of derivative from the non-pressure-sensitive case can be used to investigate the period when the partial fracture closure occurs, and the occurrence of maximal value on pressure derivative corresponds to the occasion that the fracture is completely closed and the conductivity approximately declines to zero; (3) the influence of pressure-sensitive effect is more remarkable in the disadvantageous condition of fracture property, corresponding to considerable pressure depletion, which leads to great conductivity decay rate; (4) the existence of reservoir pressure-sensitive effect can significantly amplify the influence of fracture pressure-sensitive effect on the intermediate- and late-time flow regimes, while having a negligible influence on the early-time flow regime. This work provides a comprehensive knowledge and insight into the interpretation of fracturing evaluation and performance estimations of multi-fractured system in pressure-sensitive reservoirs.
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Authors
Junlei Wang, Ailin Jia, Yunsheng Wei, Yadong Qi,