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Primary depletion reservoir simulator for real and dry gas.

机译:用于实际和干燥气体的主要消耗储层模拟器。

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摘要

A real unsteady-state gas simulator has been developed using the new gas potential formulation presented by Chien. This simulator handles the non-linearity relationship of the PVT properties and pressure within a time step. It uses an iterative method to solve for the pressure. It can handle any reservoir shape and size.;The simulator was validated for infinite and bounded reservoirs having different shape, well location, and rate schemes.;It was shown that this simulator can be used as a disk-top personal computer tool for both gas reservoir simulation studies and gas well test analysis.;This research introduces for the first time the concept of updating the bounding hydraulic diffusivity parameter. It was found that the bounding hydraulic diffusivity parameter must be updated every time the system is bounded using the average reservoir pressure.;The model was optimized to run efficiently on disk-top personal computers. The log regression approximation which replaces the extensive computer time bounding rates calculations, was found to be valid only for ideal cases with regular boundaries and constant flow rates. A new empirical equation is presented to calculate the number of bounding calculations after which the bounding rate array size can be fixed. Also the Bisection iterative method was found to be the best method for the iterative procedure that solves for the potential. It reduces the computer time by 10% compared to the standard Successive Substitution iterative method. QR factorization method for solving the overdetermined matrix generated by the bounding equation was found to be the fastest, whereas Givens Rotations method was found to have the least memory requirement.
机译:使用Chien提出的新的气势公式开发了一个真正的非稳态气体模拟器。该仿真器在一个时间步内处理PVT属性和压力的非线性关系。它使用迭代方法来解决压力。它可以处理任何形状和大小的油藏。该模拟器已针对具有不同形状,井位和速率方案的无限和有界油藏进行了验证。表明该模拟器可以用作两种平台的磁盘式个人计算机工具。气藏模拟研究和气井测试分析。该研究首次介绍了更新边界水力扩散系数的概念。结果发现,每当使用平均油藏压力对系统进行边界约束时,必须更新边界水力扩散系数。该模型经过优化,可以在磁盘式个人计算机上高效运行。发现对数回归近似替代了广泛的计算机时间边界率计算,仅对具有规则边界和恒定流速的理想情况有效。提出了一个新的经验公式来计算边界计算的数量,此后可以确定边界速率数组的大小。此外,对分迭代方法也被认为是解决潜在问题的最佳迭代方法。与标准的“连续替换”迭代方法相比,它将计算机时间减少了10%。发现用QR分解法求解由边界方程生成的超定矩阵最快,而使用Givens旋转法则需要的内存最少。

著录项

  • 作者

    Al-Naim, Sami A. Aziz.;

  • 作者单位

    The University of Texas at Austin.;

  • 授予单位 The University of Texas at Austin.;
  • 学科 Engineering Petroleum.;Computer Science.
  • 学位 Ph.D.
  • 年度 1994
  • 页码 229 p.
  • 总页数 229
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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