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The Effects of Fracture Penetration Ratio and Fracture Conductivity on the Performance of Hydraulic Fractured Vertical Wells in Gas Reservoirs

机译:断裂渗透率和断裂电导率对气体储层液压骨折垂直井性能的影响

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Predicting the effects of the fracture penetration ratio and fracture conductivity in hydraulicallyfractured vertical wells in dry-gas and wet-gas reservoirs is important in determining the well performance in a given formation. A fracture length and conductivity which provide the highest ultimate gas recovery factor at the earliest time to reach abandonment conditions is the proper fracture type which has to be selected for developing the reservoir. A three dimensional reservoir simulation model is used to evaluate the performance of hydraulic fractured vertical wells as a function of fracture penetration ratio and fracture conductivity. Accurate determination of initial gas reserves, average reservoir pressure at abandonment time, and the time to reach abandonment conditions is very important to the petroleum industry. Material balance technique and volumetric method, currently used in the petroleum industry to determine the reserves, which do not consider well performance and, as a result, predict a very high recovery factor at abandonment pressure for hydraulic fractured vertical wells in volumetric dry-gas and wet-gas reservoirs. Well performance in hydraulic fractured vertical wells depends on fracture penetration ratio and fracture conductivity. A comparison with horizontal wells of same penetration ratio is also provided in this paper as an alternative to hydraulic fracturing. A number of simulation runs were performed on a square shape reservoir of horizontal permeability 0.01 md, 0.1 md and 1 md with a penetration ratio of 0.2, 0.4 and 0.8. Our results quantify and show that the ultimate recovery factor and abandonment time are function of fracture penetration ratio regardless of fracture conductivity. In addition, our results shows that in low permeability reservoirs a hydraulic fractured vertical well of similar penetration ratio to a horizontal well perform twice in terms of recovery factor and abandonment time. The effects of formation thickness, well parameters and reservoir rock properties on the average reservoir pressure at abandonment time and on the time to reach the economic limit are also presented in this paper. Based on the results of fracture penetration ratio and fracture conductivity in volumetric dry-gas and wet-gas reservoirs, this paper presents recommendations regarding the proper well type with which the reservoir should be developed.
机译:在干气和湿气储层中预测液压逆型垂直井中的断裂渗透率和断裂电导率的影响对于确定给定的形成中的井性能是重要的。在最早时间达到遗弃条件的最高终极气体回收因子的断裂长度和电导率是必须选择适当的断裂型以用于开发储层。三维储层仿真模型用于评估液压破裂垂直井的性能作为断裂渗透比和断裂电导率的函数。准确测定初始气体储备,放弃时间的平均水库压力,以及伸展遗弃条件的时间对石油工业非常重要。物料平衡技术和体积方法,目前用于石油工业,确定储备,其不考虑井的性能,结果,预测容量干气体中液压骨折垂直井的储存压力非常高的回收率。湿气体储层。液压断裂型井中的井性能取决于断裂渗透率和断裂电导率。本文还提供了与相同渗透比的水平孔的比较,作为液压压裂的替代方案。在水平渗透率0.01md,0.1md和1md的平方形状贮存器上进行多种仿真运行,渗透比为0.2,0.4和0.8。我们的结果量化并表明,无论骨折导电性如何,最终回收因子和遗弃时间都是断裂渗透率的作用。此外,我们的结果表明,在低渗透储存器中,在恢复因子和遗弃时间方面,在水平井中与水平井相似的液压垂直井。本文还提出了地层厚度,井参数和储层岩石性能对放弃时间和达到经济限制的平均水库压力的影响。基于体积干气和湿气体储层中断裂渗透率和断裂电导率的结果,本文提出了关于应制定水库的适当井类型的建议。

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