Mathematical Model for Rate Transient Analysis with Additional Interface Skin for Fractured Horizontal Well With Weak Fluid Supply

Jiali Zhang, X. Liao, Nai Cao
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Abstract

This paper develops a mathematical model for rate transient analysis in multi-stage fractured horizontal wells with considering weak fluid supply. A new concept of additional skin factor is introduced in the proposed model to characterize the fluid supply. Then, the mathematical model are solved by using the perturbation transformation, point source integration method, Laplace transform, and numerical inversion, while the fracture flow equations are solved by fracture discretization and superposition principle. First, the flow regimes of multi-stage fractured horizontal wells with considering weak fluid supply are identified based on the rate transient behaviors, including wellbore storage and skin effect, bilinear flow, linear flow, pseudo-radial flow in the fractured zone, interface skin effect, pseudo-radial flow in the original zone, and boundary-dominated flow. The effect of additional interface skin makes the double logarithmic curve of production rate appear an abrupt "overlap". The results of the sensitivity study show that the abrupt "overlap" becomes more obvious with the increase of the fracture conductivity, fracture number, the stress sensitivity coefficient, especially the interface skin. Finally, the proposed mathematical model is used to perform a case study on the production data of actual tight-gas wells from the Ordos Basin. The interface skin factor, fracture half-length, fracture conductivity, and boundary radius are evaluated. Through the proposed model, the characteristics of weak fluid supply in tight gas reservoirs are fully understood.
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弱供液条件下压裂水平井附加界面表皮速率瞬态分析数学模型
建立了考虑弱流体供给的多级压裂水平井速率暂态分析数学模型。在该模型中引入了附加表皮因子的新概念来表征流体供应。然后,采用微扰变换、点源积分法、拉普拉斯变换和数值反演等方法求解数学模型,采用裂缝离散化和叠加原理求解裂缝流动方程。首先,基于井筒储存和集皮效应、双线性流动、线性流动、裂缝区伪径向流动、界面集皮效应、原始区伪径向流动和边界主导流动等速率瞬态特征,识别了考虑弱供液的多级压裂水平井的流动规律;附加界面蒙皮的作用使产量双对数曲线出现突兀的“重叠”。敏感性研究结果表明,随着裂缝导电性、裂缝数量和应力敏感系数的增加,界面表面的突发性“重叠”变得更加明显。最后,将所建立的数学模型应用于鄂尔多斯盆地致密气井实际生产数据的实例研究。评估了界面表皮因子、裂缝半长、裂缝导电性和边界半径。通过该模型,充分认识了致密气藏弱流体供给特征。
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