Research on Horizontal Well Multi-Fracture Propagation Law under the Synergistic Effect of Complex Natural Fracture and Reservoir Heterogeneity

Author:

Zhao Huan1234,Li Wei134ORCID,He Tiansu1,Wang Jianbo1ORCID,Zhang Mingxiu1,Wang Siqi1,Chen Fulu1

Affiliation:

1. College of Petroleum Engineering, Northeast Petroleum University, Daqing 163318, China

2. Daqing Oilfield Co., Ltd., Daqing 163453, China

3. National Key Laboratory of Continental Shale Oil, Daqing 163453, China

4. National Engineering Research Center of Oil & Gas Drilling and Completion Technology, Daqing 163318, China

Abstract

Conventional fracturing design generally only considers the propagation of a single fracture in homogeneous storage, but the heterogeneity characteristics of the reservoir and the development of complex natural fractures will affect the fracturing effect. In order to study the horizontal well fracture propagation law under the synergistic effect of complex natural fracture reservoir heterogeneity, the globally embedded cohesive element finite model is established, and the heterogeneous reservoirs are built by Python programming. The influencing factors of multi-fracture propagation with heterogeneous reservoirs are analyzed, including the in situ stress difference, the injection rate of fracturing fluid, the perforation spacing, and the perforating clusters number. The results show that the heterogeneity and the natural fracture of the reservoir will affect the in situ stress distribution and propagation direction. When the in situ stress difference is low, the reservoir heterogeneity and natural fractures have a great influence on the fracture morphology. With the increase in injection rate, the fracture length and fracture width increase. With the in situ stress difference increase, the fracture deflection angle decreases. With the increase in fracturing fluid injection rate, the fracture length increases. The number of hydraulic fractures communicating with natural fractures increases with the natural fracture number and the number of perforation clusters under the synergistic effect of complex natural fracture and reservoir heterogeneity.

Funder

Natural Science Foundation of Heilongjiang Province

National Natural Science Foundation of China

Northeast Petroleum University

Publisher

MDPI AG

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