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Flow Simulation Using Local Grid Refinements to Model Laminated Reservoirs

机译:使用本地网格改进模拟层压储层的流量仿真

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摘要

Super-giant carbonate fields, such as Ghawar, in Saudi Arabia, andLula, at the Brazilian pre-salt, show highly heterogeneous behavior that is linked to high permeability intervals in thin layers. This article applies Local Grid Refinements (LGR) integrated with upscaling procedures to improve the representation of highly laminated reservoirs inflow simulation by preserving the static properties and dynamic trends from geological model. This work was developed in five main steps: (1) define a conventional coarse grid, (2) define LGR in the conventional coarse grid according to super-k and well locations, (3) apply an upscaling procedure for all scenarios, (4) define LGR directly in the simulation model, without integrate geological trends in LGR and (5) compare the dynamic response for all cases. To check results and compare upscaling matches, was used the benchmark model UNJSIM-II-R, a refined model based on a combination of Brazilian Pre-salt and Ghawar field information. The main results show that the upscaling of geological models for coarse grid with LGR in highly permeable thin layers provides a close dynamic representation of geological characterization compared to conventional coarse grid and LGR only near-wells. Pseudo-relative permeability curves should be considered for (a) conventional coarse grid or (b) LGR scenarios under dual-medium flow simulations as the upscaling of discrete fracture networks and dual-medium flow models presents several limitations. The conventional approach of LGR directly in simulation model, presents worse results than LGR integrated with upscaling procedures as the extrapolation of dynamic properties to the coarse block mismatch the dynamic behavior from geological characterization. This work suggests further improvements for results for upscaling procedures that mask the flow behavior in highly laminated reservoirs.
机译:在巴西阿拉伯,在巴西阿拉伯,巴西阿拉伯的​​超巨型碳酸盐田(如Ghawar)显示出高度异质的行为,这些行为与薄层的高渗透间隔相关。本文应用集成的本地网格改进(LGR)与Upsocing程序集成,以通过保护地质模型的静态特性和动态趋势来改善高度层压储层流入模拟的表示。这项工作是在五个主要步骤中开发的:(1)定义传统的粗网格,(2)根据Super-K和井位置的传统粗网格定义LGR,(3)为所有场景应用Upscaling程序(4 )直接在模拟模型中定义LGR,而无需整合LGR和(5)的地质趋势,比较所有情况的动态响应。要检查结果并比较Upscaling Matches,基于Brazilian预盐和Ghawar现场信息的组合使用基准模型Unjsim-II-R。主要结果表明,与高度渗透性薄层的LGR具有LGR的粗网格的地质模型的上升提供了与常规粗网和LGR仅附近的井的地质表征的紧密动态表示。应考虑伪相对渗透性曲线(a)传统的粗网格或(b)LGR情景下的双中等流动模拟,因为离散裂缝网络和双中等流模型的升高具有若干限制。 LGR直接在仿真模型中的传统方法,比LGR集成了更差的结果,与Upsocing Processulate作为动态性质的外推与粗块失配的动态特征。这项工作表明,对掩盖高度层压储层中的流动行为的提升程序的结果进一步改进。

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  • 来源
    《Oil & gas science and technology》 |2018年第1期|共15页
  • 作者单位

    CEPETRO/FEM-University of Campinas (UNICAMP) Postal Code 6052 13083-970 Campinas Sao Paulo-Brasil;

    CEPETRO/FEM-University of Campinas (UNICAMP) Postal Code 6052 13083-970 Campinas Sao Paulo-Brasil;

    CEPETRO/FEM-University of Campinas (UNICAMP) Postal Code 6052 13083-970 Campinas Sao Paulo-Brasil;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学工业;
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