A Modeling Study of the Productivity of Horizontal Wells in Hydrocarbon-Bearing Reservoirs: Effects of Fracturing Interference

Author:

Huang Lei1,Jiang Peijia2,Zhao Xuyang3,Yang Liang4,Lin Jiaying1,Guo Xuyang15ORCID

Affiliation:

1. State Key Laboratory of Petroleum Resources and Prospecting, China University of Petroleum, Beijing 102249, China

2. Beijing Gas Group Company Limited, Beijing 100035, China

3. Geological Research Institute of CNPC Logging Company Limited, Xi’an, Shaanxi 710000, China

4. Supervision Center of CNPC Tarim Oilfield Company, Korla, Xinjiang 841000, China

5. Department of Petroleum Engineering, China University of Petroleum-Beijing at Karamay, Karamay, Xinjiang 834000, China

Abstract

Commercial production from hydrocarbon-bearing reservoirs with low permeability usually requires the use of horizontal well and hydraulic fracturing for the improvement of the fluid diffusivity in the matrix. The hydraulic fracturing process involves the injection of viscous fluid for fracture initiation and propagation, which alters the poroelastic behaviors in the formation and causes fracturing interference. Previous modeling studies usually focused on the effect of fracturing interference on the multicluster fracture geometry, while the related productivity of horizontal wells is not well studied. This study presents a modeling workflow that utilizes abundant field data including petrophysical, geomechanical, and hydraulic fracturing data. It is used for the quantification of fracturing interference and its correlation with horizontal well productivity. It involves finite element and finite difference methods in the numeralization of the fracture propagation mechanism and porous media flow problems. Planar multistage fractures and their resultant horizontal productivity are quantified through the modeling workflow. Results show that the smaller numbers of clusters per stage, closer stage spacings, and lower fracturing fluid injection rates facilitate even growth of fractures in clusters and stages and reduce fracturing interference. Fracturing modeling results are generally correlated with productivity modeling results, while scenarios with stronger fracturing interference and greater stimulation volume/area can still yield better productivity. This study establishes the quantitative correlation between fracturing interference and horizontal well productivity. It provides insights into the prediction of horizontal well productivity based on fracturing design parameters.

Funder

China University of Petroleum, Beijing

Publisher

Hindawi Limited

Subject

General Earth and Planetary Sciences

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