...
首页> 外文期刊>Journal of circuits, systems and computers >Development and Application of a Coupling Method for Well Pattern and Production Optimization in Unconventional Reservoirs
【24h】

Development and Application of a Coupling Method for Well Pattern and Production Optimization in Unconventional Reservoirs

机译:非传统水库井图案和生产优化耦合方法的开发与应用

获取原文
获取原文并翻译 | 示例
           

摘要

Numerous optimization variables cause the optimization of large-scale field development challenging, which can be overcome by constraining wells to be within patterns and optimizing the parameters relevant to the pattern type and geometry. In this study, a new method incorporating well pattern optimization and production optimization for unconventional reservoirs is presented. By defining a quantitative well pattern description approach, we develop the geometric transformation parameters to quantify well pattern operations (e.g., rotation, shear, especially translation) to change the geometric shape of well patterns including five-spot, inverse seven-spot and inverse nine-spot well pattern. In contrast, a variety of optimization algorithms can be applied to accomplish the optimization of well pattern problems but the computational cost is large for many algorithms. Therefore, we also propose a general upscaling stochastic approximation algorithm (GUSA), which is an improved approximate perturbation gradient algorithm, to realize the combination of well pattern optimization and production optimization simultaneously. It is proved that both the gradient formulation of SPSA algorithm and EnOpt algorithm are the special form of the general approximate perturbation gradient. Afterwards, the synthetic cases (homogeneous and heterogeneous models) and actual unconventional field cases are discussed based on the three mentioned well pattern types. The detailed optimization results show that the presented coupling method can achieve the optimization by transforming well pattern geometry, reducing the total number of wells and adjusting the field injection rate, which is proved to be effective. In sum, this coupling method provides an efficient optimization procedure combing the well pattern optimization and production optimization for practical field development.
机译:许多优化变量导致优化大规模场开发具有挑战性,这可以通过限制井在模式内并优化与模式类型和几何形状相关的参数来克服。在这项研究中,提出了一种新方法,包括井图案优化和生产优化的非传统水库。通过定义定量井图案描述方法,我们开发几何变换参数,以量化井图案操作(例如,旋转,剪切,尤其翻译)来改变井图案的几何形状,包括五点,逆七点和逆九个 - 点井模式。相反,可以应用各种优化算法来实现井图案问题的优化,但是许多算法的计算成本很大。因此,我们还提出了一种通用升级随机近似算法(GUSA),其是一种改进的近似扰动梯度算法,实现了同时井图案优化和生产优化的组合。证明SPSA算法和Enopt算法的梯度制定都是通用近似扰动梯度的特殊形式。之后,基于三种井图案类型讨论了合成病例(均匀和异质模型)和实际非常规现场情况。详细优化结果表明,所示的耦合方法可以通过转换井图案几何形状来实现优化,从而减少井的总数并调节现场注射速率,这被证明是有效的。总之,该耦合方法提供了一种有效的优化程序,梳理实际田间开发的井图案优化和生产优化。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号