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低、特低滲透油藏壓裂水平井產能計算方法

A method to predict the production of fractured horizontal wells in low/ultra-low permeability reservoirs

  • 摘要: 考慮低、特低滲透油藏裸眼壓裂水平井流體從基質-裂縫-水平井筒及基質-水平井筒的耦合流動,以等值滲流阻力法及疊加原理為基礎,將裸眼壓裂水平井滲流區域劃分為三個流動區域:流體在水平井壓裂裂縫內的達西線性流動區域、水力壓裂裂縫泄流引起的非達西橢圓滲流區域和流體在地層中的徑向滲流區域.建立裸眼水平井水力壓裂多條橫向裂縫相互干擾的非達西產能預測模型,分析水力裂縫參數對產能影響,揭示裸眼壓裂水平井開采變化規律.模擬結果表明:裂縫條數越多,裂縫干擾越強,水平井壓裂存在一最優裂縫條數;裂縫沿水平井筒排布靠近兩端、中間相對較稀,且兩端長、中間短的開發效果最好.

     

    Abstract: In consideration of the matrix-crack-wellbore coupling flow and matrix-wellbore coupling flow in an open-hole fractured horizontal well in low/ultra-low permeability reservoirs, mathematical models were derived on the basis of the equivalent flowing resistance method and the superposition principle. For an open-hole fractured horizontal well, the flow field was divided into three regions according to the different flow mechanism:Darcy flow in artificial fractures, low-velocity non-Darcy elliptical flow in the matrix around artificial fractures, and low-velocity non-Darcy plane radial flow in the peripheral matrix. A non-Darcy analytical productivity equation for an open-hole fractured horizontal well was obtained considering mutual interference between multi-transverse fractures. The influences of hydraulic fracture parameters on oil production were analyzed, which reveals the variation in development of an open-hole fractured horizontal well. Numerical results show that the more the artificial fractures, the stronger the interference of artificial fractures, and consequently there exists an optimal quantity of artificial fractures. It is suggested that the artificial-fracture distribution should be dense at two ends of the wellbore and sparse in the middle of the wellbore; in addition, the length of artificial fractures at the two ends should be larger than that in the middle.

     

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