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Optimizing oil and gas field management through a fractal reservoir study model

机译:通过分形油藏研究模型优化油气田管理

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摘要

Integration among geophysics, geology, reservoir engineering, geochemists, geomechanics and management is truly essential, but needs some specific approaches and methodologies for developing and calibrating a study model capable of dealing with all and each of these aspects. The ability for a multitask project team to easily search, modify, visualize and/or analyze a multidisciplinary study results in a quick, responsive and easily comprehendible manner is still a problem of the petroleum industry. In this work, various modeling workflows were examined so as to highlight unavoidable interdependencies between these multidisciplinary specialists in the process of oil and/or gas reservoir studies. The traditional multidisciplinary working methods which were hitherto available are examined and some lapses identified. An optimized integrated study approach was further proposed. The optimized integrated approach is expected to have tremendous advantages in terms of improving the quality as well as flexibility of oil and gas reservoir studies, a working time reduction, and is expected to serve as a single final approach that can be adapted or used to tackle reservoir study problems.
机译:地球物理学,地质学,油藏工程学,地球化学家,地质力学和管理之间的整合确实是必不可少的,但是需要一些特定的方法和方法来开发和校准能够处理所有这些方面的研究模型。多任务项目团队以快速,响应迅速且易于理解的方式轻松地搜索,修改,可视化和/或分析多学科研究结果的能力仍然是石油工业的问题。在这项工作中,检查了各种建模工作流程,以突出显示这些多学科专家在油气藏研究过程中不可避免的相互依存关系。研究了迄今为止可用的传统的多学科工作方法,并发现了一些失误。进一步提出了一种优化的综合研究方法。经过优化的集成方法有望在改善油气储层研究的质量和灵活性,减少工作时间方面具有巨大优势,并且有望作为一种最终的方法,可以加以修改或用于解决储层研究问题。

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