Численно-аналитическая модель для интерпретации результатов индикаторных исследований нефтяных пластов: решение прямой задачи при наличии каналов низкого фильтрационного сопротивления

Константин Михайлович Федоров, Александр Янович Гильманов, Александр Павлович Шевелёв, Алексей Александрович Изотов, Александр Вячеславович Кобяшев
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Abstract

The article considers the problem of interpretation of tracer tests in oil reservoirs, into which a specific chemical substance - tracer - is injected via an injection well for flow monitoring and tracer concentration measurements in surrounding production wells. The testing data provide evidence of the existence of low resistance channels in the reservoirs, along which the tracer moves at velocities several orders of magnitude higher than in the reservoir. The nature and properties of these channels are unknown, and a semi-analytical model involving two small parameters is proposed to solve this problem. This makes it possible to construct two non-conjugate solutions: universal numerical and analytical. Such an approach allows us to solve both direct and inverse problems. The present article is devoted to solving the direct problem. The problem of pressure distribution in a rectangular reservoir pattern is solved in dimensionless coordinates and is universal, i.e., it does not depend on the size of the area and the pressure drop. This solution is approximated by power functions and is further used to determine the mass transfer between channel and reservoir. The problem of tracer slug propagation through the channel obeys the law of conservation of tracer mass and Darcy's law. Its solution is found by the methods of characteristics under the condition of smallness of the parameter reflecting the ratio of reservoir permeability to channel permeability. The results of the semi-analytical solution are compared with the numerical solutions previously obtained by other authors. The fundamental difference between these solutions is the presence of numerical diffusion when using the finite-difference method of solution, which leads to the «dissipation» of the trace slug edges.
解释油藏指标研究结果的数值分析模型:解决存在低过滤阻力通道时的直接问题
文章探讨了油藏示踪剂测试的解释问题,通过注入井注入特定的化学物质--示踪剂,对周围生产井进行流量监测和示踪剂浓度测量。测试数据证明油藏中存在低阻力通道,示踪剂沿着这些通道移动的速度比油藏中的速度高几个数量级。这些通道的性质和属性尚不清楚,为解决这一问题,提出了一个涉及两个小参数的半分析模型。这样就有可能构建两个非共轭解:通用数值解和分析解。这种方法使我们能够同时解决直接问题和逆问题。本文致力于解决直接问题。矩形储层模式中的压力分布问题是在无量纲坐标下求解的,并且是通用的,即不依赖于面积和压降的大小。这种解法用幂函数近似,并进一步用于确定通道和储层之间的传质。示踪液滴在渠道中的传播问题遵守示踪质量守恒定律和达西定律。在反映储层渗透率与渠道渗透率之比的参数很小的条件下,用特征方法求解。半解析解法的结果与其他学者之前获得的数值解法进行了比较。这些解法的根本区别在于使用有限差分法求解时存在数值扩散,这导致了痕量弹头边缘的 "耗散"。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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