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Well test analysis for heterogeneous reservoirs.

机译:非均质油藏的试井分析。

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摘要

This work presents procedures for analyzing well-test pressure data obtained from a well located in a heterogeneous reservoir where the permeability is an arbitrary function of the distance from the well.; Two procedures to solve the inverse problem of generating permeability distribution directly from well-test pressure data are presented. In the first method, the permeability function is obtained by using a simple, recursive algorithm derived to numerically solve an integral equation of the first kind that represents the wellbore pressure derivative solution. The other procedure is based on considering the "instantaneous permeability", obtained from well-test data, as a volumetrically-weighted harmonic average of the permeability distribution between the wellbore and a radius of investigation. Both procedures can be applied to either transient drawdown data or buildup data corrected for producing-time effects.; A method to obtain the reservoir pressure profile at the instant of shut-in directly from buildup data is presented. It is shown that, under certain conditions, the pressure profile, which is initially computed up to the last radius of investigation, can be reasonably extended up to the reservoir external radius and then used to estimate the average reservoir pressure. In addition, if the pressure profile is established under either a steady-state or pseudosteady state flow condition, one can estimate the productivity index and the equivalent homogeneous permeability.; We present exact solutions for the reservoir pressure response during either steady-state or pseudosteady state flow. Using these solutions, we derived analytical equations for the average reservoir pressure, the stabilized inflow performance and the equivalent homogeneous permeability which characterizes the long-time (boundary-dominated flow) performance. The exact equation for the flow rate during boundary- dominated flow for constant pressure production is also presented.; It is shown that, when our inversion procedures are applied to well-test data obtained from a heterogeneous reservoir, where permeability and/or porosity vary with position, we obtain an equivalent radial permeability distribution with porosity constant. Both reservoir descriptions, when used as input to our simulator, yield essentially identical pressure and pressure derivative responses. This illustrates the nonuniqueness of the inverse problem.
机译:这项工作提出了用于分析从位于非均质油藏中的油井中获得的油井测试压力数据的程序,在该油藏中,渗透率是距油井距离的任意函数。提出了两种解决直接从试井压力数据生成渗透率分布反问题的方法。在第一种方法中,渗透率函数是通过使用一种简单的递归算法获得的,该算法是通过对数字形式的代表井眼压力导数解的第一类积分方程进行数值求解而得出的。另一个过程是基于将从试井数据中获得的“瞬时渗透率”作为井眼与研究半径之间的渗透率分布的体积加权谐波平均值。两种方法都可以应用于瞬态降落数据或为产生时间效应校正的积聚数据。提出了一种直接从增产数据获得关井瞬间油藏压力剖面的方法。结果表明,在一定条件下,最初计算到研究的最后一个半径的压力曲线可以合理地扩展到油藏外半径,然后用于估算平均油藏压力。另外,如果压力曲线是在稳态或准稳态流动条件下建立的,则可以估算生产率指数和等效均质渗透率。我们为稳态或拟稳态流动过程中的储层压力响应提供了精确的解决方案。使用这些解决方案,我们得出了平均油藏压力,稳定的流入性能和等效的均匀渗透率的解析方程,这些方程表征了长期(边界支配流动)性能。还给出了恒压生产中边界支配流动期间流量的精确方程。结果表明,当我们将反演程序应用于从非均质油藏获得的试井数据时,其中渗透率和/或孔隙度随位置而变化,我们获得了具有孔隙度常数的等效径向渗透率分布。当用作我们的模拟器的输入时,这两种储层描述都产生基本相同的压力和压力导数响应。这说明了反问题的非唯一性。

著录项

  • 作者

    Feitosa, Gilvan Soares.;

  • 作者单位

    The University of Tulsa.;

  • 授予单位 The University of Tulsa.;
  • 学科 Engineering Petroleum.
  • 学位 Ph.D.
  • 年度 1993
  • 页码 231 p.
  • 总页数 231
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 石油、天然气工业;
  • 关键词

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