A Two-Phase Flowback Type Curve with Fracture Damage Effects for Hydraulically Fractured Reservoirs

SPE Journal Pub Date : 2024-07-01 DOI:10.2118/215034-pa
Fengyuan Zhang, Yang Pan, Chuncheng Liu, Chia-Hsin Yang, Hamid Emami‐Meybodi, Zhenhua Rui
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Abstract

Type curves are a powerful tool in characterizing hydraulic fracture (HF) and reservoir properties based on flowback and production data. We propose a type-curve method to evaluate HF characteristics and their dynamics for multifractured horizontal wells (MFHWs) in hydrocarbon reservoirs using flowback production data. The type curve incorporates the HF damage effect of choked-fracture skin factor in the two-phase flow in HF and matrix domains. The type-curve method can be applied to inversely estimate choked-fracture skin factor, s, HF pore volume (PV), Vfi, and HF initial permeability, kfi, by analyzing two-phase flowback production data. By introducing the new dimensionless parameters, the nonuniqueness problem of the type-curve analysis for two-phase flow is significantly reduced by incorporating the complexity of fracture dynamics into one set of curves. The accuracy of the type curve is examined against the results obtained from numerical simulations of shale gas and oil reservoirs. The validation results demonstrate a good match of analytical type curves and numerical data plots and confirm the accuracy of the proposed method in estimating the static and dynamic fracture properties. The results show that the relative errors in Vfi, kfi, and s estimations are all <10% for the simulated cases that are presented in this work. The flexibility and robustness of the proposed method are illustrated using the field example from a shale oil MFHW. The accuracy and applicability of the proposed type curve are also validated by comparing the calculated fracture properties from the field example using straightline analysis with Vfi and kfi of 705.3 Mcf and 245.2 md, type-curve analysis method (without skin effect) with Vfi and kfi of 751.9 Mcf and 249.8 md, and the type-curve method (with the choked fracture skin considered) with Vfi and kfi of 708.7 Mcf and 252.9 md, which showed that the results of each case are very close to one another. The interpreted results from the flowback analysis of the field example offer quantitative insight into HF properties and dynamics.
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含水力压裂储层压裂破坏效应的两阶段回流类型曲线
基于回流和生产数据,类型曲线是表征水力压裂(HF)和储层特性的有力工具。我们提出了一种类型曲线方法,利用回流生产数据评估油气藏中多压裂水平井(MFHW)的高频特性及其动态。该类型曲线包含了高频和基质域两相流动中窒息压裂集肤因子的高频破坏效应。通过分析两相回流生产数据,可以应用类型曲线法反向估算窒息裂缝集肤系数(s)、高频孔隙体积(PV)(Vfi)和高频初始渗透率(kfi)。通过引入新的无量纲参数,将裂缝动力学的复杂性纳入一组曲线中,大大减少了两相流类型曲线分析的非唯一性问题。根据页岩气藏和油藏的数值模拟结果,对类型曲线的准确性进行了检验。验证结果表明,分析型曲线与数值数据图匹配良好,证实了所提方法在估算静态和动态裂缝属性方面的准确性。结果表明,在本研究中提出的模拟案例中,Vfi、kfi 和 s 估算的相对误差均小于 10%。通过页岩油 MFHW 的现场实例,说明了所提方法的灵活性和稳健性。通过比较现场实例中使用直线分析法计算出的 Vfi 和 kfi 分别为 705.3 Mcf 和 245.2 md 的压裂属性,也验证了所提出的类型曲线的准确性和适用性。2 md、Vfi 和 kfi 分别为 751.9 Mcf 和 249.8 md 的类型曲线分析法(无表皮效应),以及 Vfi 和 kfi 分别为 708.7 Mcf 和 252.9 md 的类型曲线法(考虑了窒息断裂表皮效应),结果表明每种情况下的结果都非常接近。油田实例回流分析的解释结果提供了对高频特性和动态的定量洞察。
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