致密油藏自动3d建模生成器:将复杂变为轻松的应用程序

Kittipong Limchuchua, S. Sarisittitham, Pichaya Ruthairung, J. Whangkitjamorn, Nuddanet Sikharin, Nitshakhan Jitpipatpong, P. Kritsadativud
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引用次数: 0

摘要

由于致密储层已成为维持生产的重要能源资源,PTTEP最近对一些致密储层进行了评估。对于开发计划优化和资源估算,3d建模是最有效的工具。然而,复杂的工作流程通常会阻碍经验不足的用户进行油藏模拟。本研究旨在构建一个能够处理致密储层的自动三维建模生成器。这将允许非仿真专家为进一步的仿真研究构建任何3D模型。为简便起见,本研究选择黑油模拟模型。一般的多层致密储层模型由直角网格和局部网格细化(LGR)组成,以捕获水力裂缝附近的流动状态。用户界面选项卡包含网格设计、岩石和流体性质、初始条件、完井和生产计划的输入电子表格。然后生成带有黑油模拟器关键字的脚本文件。最后引入了对所有输入数据进行调整的功能,以确保在完成脚本文件到仿真软件之前的用户友好界面,而不会与仿真关键字产生任何复杂性。通过创建的致密油藏自动3d建模生成器,可以处理所有复杂的工作流程(黑油模拟器关键字和结构)。致密储层的三维建模不再需要高经验的用户。此外,在模拟和编程方面都不需要很高的专业知识。该生成器提供了友好的用户界面,具有全自动多层模型构建功能。它还可以处理任何类型的流体系统(油/气/水和饱和/不饱和油藏),以及任何特定层中存在的水力裂缝。在井和生产控制方面,它提供了常用的选项,例如控制BHP,控制THP,控制流量。该发生器已在几个PTTEP项目中使用,证明了该应用的成功。目前,对于致密储层的高水平现场评价,任何没有经验的用户都可以构建3D模型供其使用,而无需向模拟团队寻求支持。对于这一优势,在模型构建上节省了大量的人力。因此,用户可以有更多的时间专注于工程分析,如对相关参数的敏感性研究或生产预测和优化,最终为项目评估带来最佳价值。虽然商业软件可能是可用的,但它们需要成本和学习。此外,该软件可能不完全适合特定的目标。随着这个预处理器建模工具的内部开发,该接口被证明是易于使用和适合的目的,没有额外的成本。进一步的改进将很容易实现。将熟悉的用户界面与油藏模拟器耦合的概念不仅可以扩展到PTTEP,还可以扩展到其他任何地方。
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Tight Reservoir Automatic 3D-Modelling Generator: Turning Complicated into Effortless Application
Because tight reservoir has become important energy resources in sustaining production, PTTEP has recently evaluated a number of these reservoirs. For development plan optimization and resources estimation, 3D-modelling is the most efficient tool. However, the complicated workflow usually impedes inexperienced users to work with reservoir simulation. This study aims to construct an automatic 3D-modelling generator which could handle the tight reservoir. This would allow non-simulation expert to construct any 3D models for further simulation study. In this study, black oil simulation model is selected for simplicity. A generic multi-layer tight reservoir model is consisted of cartesian grids with the local grid refinement (LGR) at a well location to capture flow regime near a hydraulic fracture. The user interface tabs contain input spreadsheet for grid design, rock and fluid properties, initial conditions, well completion, and production schedule. Then, the script files with black oil simulator keywords will be generated. The capability to adjust all the input data is finally introduced to ensure user-friendly interface before finalizing the script files to simulation software without any complication with the simulation keywords. With the created Tight Reservoir Automatic 3D-Modelling Generator, all complicated workflows (the black oil simulator keywords and structure) are handled. The 3D modelling for tight reservoir does not require highly experienced user anymore. Also, neither high expertise in simulation nor programming is required. The generator provides user friendly interface with full capability of automatic multi-layer model construction. It also can handle any kind of fluid system (oil/gas/water and saturated/undersaturated reservoir), and the presence of a hydraulic fracture in any specific layers. In terms of the well and production control, it provides the option frequently used e.g., control BHP, control THP, control flow rate. This generator has been used in several PTTEP projects which have proven the success of the application. Currently, for the high-level field evaluation of the tight reservoir, any inexperienced user could construct the 3D model for their usage without having to request support from the simulation team. Regarding this advantage, there has been measurable manpower saving for model construction. Therefore, user could have more time to focus on engineering analysis such as sensitivity study on relevant parameters or production forecast and optimization which ultimately bring the best value for the project evaluation. Although commercial software may be available, they require costs and learning. Also, that software may not fully fit with specific objective. With in-house development of this pre-processer modeling tool, the interface is proven to be ease of use and fit-for-purpose with no additional cost. Further improvement would easily be performed. The concept of coupling the familiar user interface with reservoir simulator could be extended to other opportunity not only in PTTEP, but also anywhere else.
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