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Productivity equation of fractured horizontal well in a water-bearing tight gas reservoir with low-velocity non-Darcy flow

机译:低速非达西渗流的含水致密气藏中压裂水平井产能方程

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摘要

Based on the features of tight gas reservoirs and considering the existence of threshold pressure gradient (TPG), a new mathematical model was established for low-velocity non-Darcy flow in water-bearing tight gas reservoirs. Calculation method of control areas is also presented. Productivity equations of vertical fractured well and horizontal fractured well in tight gas reservoirs are obtained with TPG. Influential factors were analyzed to provide theoretical basis for the effective development of tight gas reservoirs. According to the numerical results, with the increase of pressure drawdown, both the volumetric flow rate of gas well and control area grow first and then gradually becomes stable. The influence of TPG on the volumetric flow rate of gas well is great and cannot be neglected. For fractured horizontal well, gas well production increases with the increase of flow conductivity capacity and half-length of hydraulic fractures. For certain length of the borehole, when the fracture spacing increases and the number of the fractures decreases, the control area and the volume flow rate of the gas well decreases. Consequently, there is an optimum allocation among drawdown pressure, fracture half-length, fracture conductivity and fracture spacing to achieve maximum production.
机译:根据致密气藏的特征,考虑到阈值压力梯度(TPG)的存在,建立了含水致密气藏低速非达西渗流的数学模型。还介绍了控制区域的计算方法。利用TPG技术,得到了致密气藏中垂直裂缝井和水平裂缝井的产能方程。分析了影响因素,为致密气藏的有效开发提供理论依据。根据数值结果,随着压力下降的增加,气井和控制区的体积流量先增大,然后逐渐稳定。 TPG对气井体积流量的影响很大,不能忽略。对于压裂水平井,气井产量随导流能力和水力压裂裂缝长度的增加而增加。对于一定长度的井眼,当裂缝间距增大而裂缝数量减少时,气井的控制面积和体积流量减小。因此,在压降压力,裂缝半长,裂缝电导率和裂缝间距之间存在最佳分配,以实现最大产量。

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