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引用本文:???????????????????Σ????????????????????????.?????????????????????[J].天然气工业,2017,37(1):90-96.
作者姓名:???????????????????Σ????????????????????????
作者单位:1.?й??????????????о????2.???????????????????Ч????????????????
摘    要:


Volume fracturing of deep shale gas horizontal wells
Jiang Tingxue,Bian Xiaobing,Wang Haitao,Li Shuangming,Jia Changgui,Liu Honglei & Sun Haicheng.Volume fracturing of deep shale gas horizontal wells[J].Natural Gas Industry,2017,37(1):90-96.
Authors:Jiang Tingxue  Bian Xiaobing  Wang Haitao  Li Shuangming  Jia Changgui  Liu Honglei & Sun Haicheng
Affiliation:(1. Sinopec Research Institute of Petroleum Engineering, Beijing 100101, China; 2. State Key Laboratory of Shale Oil and Gas Enrichment Mechanisms and Effective Development, Beijing 100101, China)
Abstract:??Deep shale gas reservoirs buried underground with depth being more than 3 500 m are characterized by high in-situ stress, large horizontal stress difference, complex distribution of bedding and natural cracks, and strong rock plasticity. Thus, during hydraulic fracturing, these reservoirs often reveal difficult fracture extension, low fracture complexity, low stimulated reservoir volume (SRV), low conductivity and fast decline, which hinder greatly the economic and effective development of deep shale gas. In this paper, a specific and feasible technique of volume fracturing of deep shale gas horizontal wells is presented. In addition to planar perforation, multi-scale fracturing, full-scale fracture filling, and control over extension of high-angle natural fractures, some supporting techniques are proposed, including multi-stage alternate injection (of acid fluid, slick water and gel) and the mixed- and small-grained proppant to be injected with variable viscosity and displacement. These techniques help to increase the effective stimulated reservoir volume (ESRV) for deep gas production. Some of the techniques have been successfully used in the fracturing of deep shale gas horizontal wells in Yongchuan, Weiyuan and southern Jiaoshiba blocks in the Sichuan Basin. As a result, Wells YY1HF and WY1HF yielded initially 14.1×104 m3/d and 17.5×104 m3/d after fracturing. The volume fracturing of deep shale gas horizontal well is meaningful in achieving the productivity of 50×108 m3 gas from the interval of 3 500–4 000 m in Phase II development of Fuling and also in commercial production of huge shale gas resources at a vertical depth of less than 6 000 m.
Keywords:Shale gas  Deep  Horizontal well  Volume fracturing  Planar perforation  Effective fracture  Stimulated reservoir volume (SRV)  Field application  
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