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Parameters Optimization of Fractured Horizontal Well of Overall Fracturing Well Patterns in Ultra-low Permeability Oilfield

机译:超低渗透油田总压裂井图案裂缝水平井的参数优化

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Fluid flowing in ultra-low permeability reservoirs present non-linear characteristics. Based on the equivalent flowing resistance method and superposition principle with flowing field partition principle, non-Darcy flowing model of two phases for overall fracturing combined well pattern with fractured horizontal well and fractured vertical well is established with mutual interference between multi transverse fractures. It analyses the parameters influences of hydraulic fractured horizontal well on development effectiveness in different well patterns, in order to guide the development program design of overall fracturing. The simulated results indicated that the relationship between the horizontal length with the optimum number of cracks of fractured horizontal well is linear, and the optimal angle of fractured horizontal well and horizontal well bore within rectangular combined well pattern overall fracturing is 50°~80 °. The optimum hydraulic fracture conductivity in ultra-low permeability reservoirs is 10~15D·cm. The results also show that the equal arrangement of cracks along the horizontal well bore that longer cracks near the ends and shorter cracks in the middle is suggested as an optimal development way of fractured horizontal well.
机译:在超低渗透储存器中流动的流体存在非线性特性。基于等效流动性的流场分隔原理和叠加原理,在多横裂纹之间建立了具有裂缝水平阱的总压裂井图案的两相的非达西流动模型,在多横向骨折之间的相互干扰。它分析了液压断裂水平井对不同井模式发展效能的影响,以指导整体压裂的发展方案设计。模拟结果表明,水平长度与裂缝水平井裂缝的最佳裂缝之间的关系是线性的,并且裂缝水平井的最佳角度和横向井孔隙内的矩形组合井图案总体压裂是50°〜80 °超低渗透储存器中最佳的液压断裂电导率为10〜15d· cm。结果还表明,沿水平孔孔的裂缝相同的裂缝布置,在末端附近的裂缝和中间较短的裂缝被提出为裂缝水平井的最佳发育方式。

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