含裂缝冲击的复杂裂缝几何半解析模型

Zhiming Chen, Jianyong Xie, X. Liao, Xiaofeng Li, Jiali Zhang, Rongtao Li, Lang Li
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引用次数: 2

摘要

在这项研究中,我们利用一种有效的半解析模型,开发了一种新的含裂缝冲击的复杂裂缝几何模型。该半解析模型能够模拟考虑复杂非平面水力裂缝和裂缝冲击的页岩井动态。结合节点分析和拉普拉斯变换,得到了扩散系数方程的压力瞬态解。用数值模型对半解析模型进行了验证。然后,将该模型应用于某母井和某子井的压力测试数据分析。结果表明,含裂缝冲击的复杂几何裂缝的流动形式包括井筒储存、表皮效应、裂缝双线性流动、“流体供给”、伪边界主导流动、非连通裂缝冲击和伪径向流动。在超滤冲击流态,压力导数曲线呈第二个“v”型,超滤提高了基质渗透率,一旦流体到达超滤,压力损耗会减小。这些流动形式为识别具有裂缝冲击的复杂裂缝网络提供了很好的指导。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Semi-Analytical Model for Complex Fracture Geometries with Fracture Hits
In this study, we develop a new model for the complex fracture geometries with fracture hits using an efficient semi-analytical model. The semi-analytical model has the capability to simulate shale well performance by considering complex non-planar hydraulic fractures and fracture hits. By combining nodal analysis and Laplace transforms, the pressure transient solution of the diffusivity equation is obtained. The semi-analytical model is verified against the numerical models. Then, we apply the model to analyze pressure testing data of a parent well and a child well. Results show that the flow regimes of complex fracture geometries with fracture hits include wellbore storage, skin effect, fracture bilinear flow, "fluid feed", pseudo-boundary dominated flow, unconnected fracture (UF) impact, and pseudo radial flow. During the flow regime of UF impact, the pressure derivative curves exist a second "V-shape", as the UF improve the matrix permeability and the pressure depletion will be reduce once the flow reaches the UF. Those flow regimes provide good guidelines for identification of complex fracture networks with fracture hits.
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