首页|深部煤层气水平井大规模极限体积压裂技术——以鄂尔多斯盆地东缘临兴区块为例

深部煤层气水平井大规模极限体积压裂技术——以鄂尔多斯盆地东缘临兴区块为例

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针对深煤层渗透性差、弹性模量较低、泊松比较高、塑性强、破裂压力高、裂缝扩展难度大、加砂困难等特点,提出缝网改造规模化、缝网扩展均衡化、缝网支撑有效化的压裂设计理念,形成以高排量大规模注入、高强度加砂、等孔径限流射孔、暂堵转向、一体化可变黏滑溜水、多粒径组合支撑剂为核心的深煤层水平井大规模极限体积压裂技术.将该技术应用于鄂尔多斯盆地东缘临兴区块首口深煤层多级压裂水平井先导性试验,施工排量18 m3/min、加砂强度2.1 m3/m、用液强度16.5 m3/m,压裂后形成了复杂裂缝网络,平均缝长为205 m,储层改造体积为1 987×104 m3,最高产气量达6×104 m3/d,实现了深部煤层气的高效开发.
Extreme massive hydraulic fracturing in deep coalbed methane horizontal wells:A case study of the Linxing Block,eastern Ordos Basin,NW China
Deep coal seams show low permeability,low elastic modulus,high Poisson's ratio,strong plasticity,high fracture initiation pressure,difficulty in fracture extension,and difficulty in proppants addition.We proposed the concept of large-scale stimulation by fracture network,balanced propagation and effective support of fracture network in fracturing design and developed the extreme massive hydraulic fracturing technique for deep coalbed methane(CBM)horizontal wells.This technique involves massive injection with high pumping rate+high-intensity proppant injection+perforation with equal apertures and limited flow+temporary plugging and diverting fractures+slick water with integrated variable viscosity+graded proppants with multiple sizes.The technique was applied in the pioneering test of a multi-stage fracturing horizontal well in deep CBM of Linxing Block,eastern margin of the Ordos Basin.The injection flow rate is 18 m3/min,proppant intensity is 2.1 m3/m,and fracturing fluid intensity is 16.5 m3/m.After fracturing,a complex fracture network was formed,with an average fracture length of 205 m.The stimulated reservoir volume was 1 987×104 m3,and the peak gas production rate reached 6.0×104 m3/d,which achieved efficient development of deep CBM.

deep coalbed methaneextreme massive hydraulic fracturingfracture networkgraded proppantsslick water with variable viscosityOrdos Basin

杨帆、李斌、王昆剑、文恒、杨睿月、黄中伟

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中联煤层气有限责任公司,北京 100015

中海油研究总院有限责任公司,北京 100028

中国石油大学(北京)油气资源与工程全国重点实验室,北京 102249

深部煤层气 极限体积压裂 裂缝网络 组合支撑剂 变黏滑溜水 鄂尔多斯盆地

国家自然科学基金面上项目中国海洋石油集团有限公司综合科研课题

52274014KJZH-2023-2303

2024

石油勘探与开发
中国石油天然气股份有限公司勘探开发研究院 中国石油集团科学技术研究院

石油勘探与开发

CSTPCD北大核心
影响因子:4.977
ISSN:1000-0747
年,卷(期):2024.51(2)
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