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Mathematical Modeling of Fluid Flow to Unconventional Oil Wells With Radial Fractures and Its Testing With Field Data

机译:径向裂隙非常规油井流体流动的数学模型及其现场数据测试

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Radial fractures are created in unconventional gas and oil reservoirs in modern well stimulation operations such as hydraulic refracturing (HRF), explosive fracturing (EF), and high energy gas fracturing (HEGF). This paper presents a mathematical model to describe fluid flow from reservoir through radial fractures to wellbore. The model can be applied to analyzing angles between radial fractures. Field case studies were carried out with the model using pressure transient data from three typical HRF wells in a lower-permeability reservoir. The studies show a good correlation between observed well performance and model-interpreted fracture angle. The well with the highest productivity improvement by the HRF corresponds to the interpreted perpendicular fractures, while the well with the lowest productivity improvement corresponds to the interpreted conditions where the second fracture is much shorter than the first one or where there created two merged/parallel fractures. Result of the case studies of a tight sand reservoir supports the analytical model.
机译:在现代油井压裂作业(HRF),爆炸性压裂(EF)和高能气体压裂(HEGF)等现代增产作业中,非常规天然气和石油储层中产生径向裂缝。本文提出了一个数学模型来描述从储层到径向裂缝再到井筒的流体流动。该模型可用于分析径向裂缝之间的夹角。使用来自较低渗透率储层中三个典型HRF井的压力瞬变数据对该模型进行了现场案例研究。研究表明,观察到的油井性能与模型解释的压裂角之间具有良好的相关性。 HRF生产率最高的井对应于解释的垂直裂缝,而生产率最低的井对应于解释的条件,其中第二条裂缝比第一个裂缝短得多,或者产生了两条合并/平行裂缝。致密砂储层案例研究的结果支持了该分析模型。

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