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Study on the optimal design of volume fracturing for shale gas based on evaluating the fracturing effect—A case study on the Zhao Tong shale gas demonstration zone in Sichuan, China

机译:基于评估压裂效应的页岩气体积压裂最优设计研究 - 以赵彤页岩气示范区在四川省的案例研究

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Hydraulic fracturing is the key technology in the development of shale gas reservoirs, and it mainly adopts volume fracturing technology to communicate hydraulic fractures with natural fractures to increase the drainage area. In view of the difficulty in characterizing the complex fractures created by multistaged fracturing in horizontal shale gas wells and the immaturity of fracturing optimization design methods, this study first evaluated the stimulation effect of fracturing technology based on treatment data and microseismic data. Then, the fracture characteristics after frac were considered, and a post-frac simulation was studied based on the discrete fracture network (DFN) model and the microseismic monitoring data as constraints. Finally, from the simulation results, an optimal design method of volume fracturing for shale gas was proposed based on the evaluation of the frac effects. The National Shale Gas Demonstration Zone in Zhaotong, Sichuan Basin was used as an example to study the optimal frac design of shale gas wells. The results show that (1) after optimizing the design, the optimal interval range is 50–70 m, the liquid volume of a single stage is 1800–2200 m3, the amount of sand is 80 m~120 t, and the slurry rate is 10–12 m3/min. (2) Two different frac design schemes were implemented in two wells on the same platform, and the production of the optimized design scheme was 14.7% greater than the original scheme. Therefore, the frac optimization design based on evaluating the fracturing effect can better guide the development of subsequent shale gas wells in this area.
机译:液压压裂是页岩气藏开发的关键技术,主要采用体积压裂技术,将液压骨折与自然骨折传达,以增加排水区。鉴于表征在水平页岩气井中多级压裂产生的复杂骨折和压裂优化设计方法的不成熟,本研究首先评估了基于治疗​​数据和微震数据的压裂技术的刺激效果。然后,考虑FRAC后的断裂特性,基于离散断裂网络(DFN)模型和微震监测数据作为约束来研究近距离映像。最后,从仿真结果中,基于对FRAC效应的评估,提出了对页岩气体体积压裂的最佳设计方法。四川盆地昭通国家页岩气示范区被用作研究页岩气井最佳的FRAC设计。结果表明(1)优化设计后,最佳间隔范围为50-70米,单级的液体体积为1800-2200m3,砂量为80米〜120t,浆料速率是10-12 m3 / min。 (2)两种不同的FRAC设计方案在两个井上实施了同一平台的两个井,优化的设计方案的生产比原始方案大14.7%。因此,基于评估压裂效果的FRAC优化设计可以更好地指导该地区的后续页岩气井的发展。

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