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《Natural Gas Industry》 2014-01
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A numerical simulation of the inter-cluster interference in multi-cluster staged fracking for horizontal wells

Pan Linhua;Zhang Shicheng;Cheng Lijun;Lu Zhaohui;Liu Kaiyu;Key Laboratory for Shale Gas Resource &Exploration,Ministry of Land and Resources ∥ Chongqing Institute of Geology and Mineral Resources;Chongqing Engineering Research Center for Shale Gas Resource & Exploration,Chongqing Institute of Geology and Mineral Resources;Chongqing Shale gas Research Center and State Key Laboratory of Petroleum Resource and Prospecting;Faculty of Petroleum Engineering,China University of Petroleum;Downhole Operation Division of CNPC Great Wall Drilling Company;  
Multi-cluster staged fracking is a key technology to develop low permeability and unconventional reservoirs,with which,the stimulated reservoir volume(SRV)can be increased significantly,so as to enhance the oil or gas production and ultimate recovery.In order to study the interference between fractures of different clusters in multi-staged fractured horizontal wells,a three-dimension finite element model for simulating the propagation of fractures was established.The model was theoretically based on fluid-solid coupling equations in porous medium and damage mechanics,and zero-thickness cohesive element was adopted to simulate the rock damage during the initiation and propagation of artificial fractures.Factors affecting the inter-cluster fracture interference in multicluster staged fracking,including perforation cluster numbers,cluster spacing,reservoir and treatment parameters,were researched by a series of simulations.The results showed that the perforation cluster numbers and spacing are two primary factors.Based on the model,the cluster spacing of a horizontal well was optimized.As a result,the production of this well was distinctively improved compared with that of the adjacent well,which proves that the model is feasible and reliable in optimizing the design of multi-cluster staged fracking for horizontal wells.
【Fund】: 重庆市重点基金项目(编号:cstc2013jjB90005);; 重庆市科技攻关项目(编号:cstc2012gg-yyjsB90004);; 国家自然科学基金(编号:51304258)
【CateGory Index】: TE357
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