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页岩油藏压裂水平井压–闷–采参数优化研究
引用本文:陈志明,赵鹏飞,曹耐,廖新维,王佳楠,刘辉. 页岩油藏压裂水平井压–闷–采参数优化研究[J]. 石油钻探技术, 2022, 50(2): 30-37. DOI: 10.11911/syztjs.2022005
作者姓名:陈志明  赵鹏飞  曹耐  廖新维  王佳楠  刘辉
作者单位:1.油气资源与探测国家重点实验室(中国石油大学(北京)), 北京 102249
基金项目:国家自然科学基金项目“基于试井理论和数据驱动的页岩油藏三维裂缝网络参数智能反演”(编号:52074322);北京市自然科学基金项目“页岩储层变导流能力裂缝网络井试井反演理论研究”(编号:3204052)部分研究内容
摘    要:目前在页岩油藏的多段压裂水平井压–闷–采过程中,缺乏系统完善的水平井压裂参数优化方法,为此,基于动态反演理论,建立了压裂参数优化方法.首先,根据页岩油藏压裂后形成的复杂缝网,采用数值理论和离散裂缝方法,建立了考虑页岩油储层特征和复杂天然裂缝的多段压裂水平井数值模型(EDFM-NM),得到了含离散天然裂缝的油藏压力解及多...

关 键 词:页岩油  水平井  动态反演  参数优化  段间距  闷井时间  井距  长庆油田
收稿时间:2021-07-29

Fracturing Parameters Optimization of Horizontal Wells in Shale Reservoirsduring "Well Fracturing-Soaking-Producing"
Affiliation:1.State Key Laboratory of Petroleum Resources and Prospecting, China University of Petroleum (Beijing), Beijing, 102249, China2.Sinopec Research Institute of Petroleum Engineering, Beijing, 102206, China
Abstract:Regarding the absence of a systemic and complete method for optimizing the multi-stage fracturing parameters of horizontal wells in shale reservoirs during well fracturing-soaking-producing, a fracturing parameter optimization method was developed based on the dynamic inversion theory. First, a numerical model (EDFM-NM) for horizontal wells was established depending on the complex induced fracture networks formed in hydraulic fracturing of shale oil reservoirs, which takes into consideration the characteristics of the reservoirs as well as complex natural fractures. With the model, solution for the pressure of reservoirs with discrete natural fractures and numerical solution of bottom hole pressure of horizontal wells after multi-stage fracturing were obtained. Second, approaches for optimization of stage spacing, soaking time, and well spacing were proposed utilizing the dynamic analysis. Finally, the optimization method was applied to shale oil Well XC in Changqing Oilfield. Reasonable stage spacing, soaking time, and well spacing were found to be 100?125 m, 25?35 d, and 590?610 m, respectively. The research results can provide a theoretical basis for the optimization of fracturing parameters during “well fracturing–soaking–producing” of shale reservoirs in Changqing Oilfield. 
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