New Analytical Approach to Operational Assessment of Fractured Well Productivity with Variable Permeability

E. Yudin, G. Piotrovskiy, M. V. Petrova, A. Roshchektaev, N. Shtrobel
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Abstract

Requirements of targeted optimization are imposed on the hydraulic fracturing operations carried out in the conditions of borderline economic efficiency of fields taking into account geological and technological features. Consequently, the development of new analytical tools foranalyzing and planning the productivity of fractured wells, taking into account the structuralfeatures of the productive reservoir and inhomogeneous distribution of the fracture conductivity, is becoming highly relevant. The paper proposes a new approach of assessing the vertical hydraulic fracture productivityin a rectangular reservoir in a pseudo-steady state, based on reservoir resistivity concept described in the papers of Meyer et al. However, there is a free parameter in the case of modeling the productivity of a hydraulic fracture by the concept. The parameter describes the distribution of the inflow along the plane of the fracture. This paper presents a systematic approach to determining of the parameter. The resulting model allows to conduct an assessment of the influence of various complications in the fracture on the productivity index. During the research a method of determining the free parameter was developed,it was based on the obtained dependence of the inflow distribution on the coordinate along the fracture of finite conductivity. The methodology allowed to refine existent analytical solution of the Meyer et al. model, which, in turn, allowed to assess the influence of different fracture damages in the hydraulic fracture on the productivity index of the well. The work includes the cases of the presence of fracture damages at the beginning and at the end of the fracture. A hydraulic fracture model was built for each of the types of damages, it was based on the developed method, and also the solution of dimensionless productivity ratio was received. The results of the obtained solution were confirmed by comparison with the numerical solutions of commercial simulators and analytical models available in the literature. The advantage of the methodology is the resulting formulas for well productivity are relatively simple, even for exotic cases ofvariable conductivity fractures. The approaches and algorithms described in the paper assume the calculation of the productivity of a hydraulic fracture with variable conductivity and the presence of other complicatingfactors.The methodology of the paper can be used for analysis and diagnosis problems with formation hydraulic fracturing. The efficiency of the calculations allows using the presented methodology to solve inverse problems of determining the efficiency of the hydraulic fracturing operation.
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变渗透率压裂井产能评价的新分析方法
结合地质和工艺特点,对油田边际经济效益条件下的水力压裂作业提出了针对性优化的要求。因此,开发新的分析工具来分析和规划压裂井的产能,考虑到生产油藏的结构特征和裂缝导流性的不均匀分布,变得非常重要。基于Meyer等人提出的储层电阻率概念,提出了一种评估拟稳态矩形储层垂向水力裂缝产能的新方法。然而,在用该概念模拟水力裂缝产能的情况下,存在一个自由参数。该参数描述了流入沿裂缝平面的分布。本文提出了一种系统的参数确定方法。由此建立的模型可以评估裂缝中各种并发症对产能指数的影响。在研究过程中,提出了一种确定自由参数的方法,该方法基于得到的沿有限导流率裂缝的流入分布与坐标的依赖关系。该方法可以完善Meyer等人模型的现有解析解,进而可以评估水力压裂中不同裂缝损伤对油井产能指标的影响。这项工作包括在裂缝开始和结束时存在裂缝损伤的情况。在此基础上,建立了不同损伤类型的水力裂缝模型,并得到了无量纲产能比的解。通过与商业仿真器的数值解和文献中已有的解析模型的比较,证实了所得解的正确性。该方法的优点是,即使是对于可变导流裂缝的特殊情况,计算井产能的公式也相对简单。本文所描述的方法和算法假设了具有可变导流能力的水力裂缝的产能计算和其他复杂因素的存在。本文的方法可用于地层水力压裂问题的分析和诊断。计算的效率允许使用所提出的方法来解决确定水力压裂作业效率的反问题。
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