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Reservoir monitoring and performance using Simbest II Black Oil Simulator for Middle East reservoir case study

机译:使用Simbest II黑油模拟器对储层进行监测和性能,用于中东储层案例研究

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摘要

New techniques, capable of characterizing reservoirs in real time, are needed to utilize the dynamic nature of upstream oil operations and minimize the degree of uncertainty around existing reservoir models using high density of data continuously generated by smart technology. The primary objective of a reservoir study is to predict future performance of a reservoir and find the ways and means of increasing ultimate recovery. Simulation uses a lot more than just the design and use of a good reservoir model to analyze a process, be it an oil reservoir system or a network-switching problem. More realistically, simulation is a process where engineer integrates several factors to produce information and on the basis of that managers can make reliable decisions. At all points along the way engineer should be on the top of situation. Reservoir simulation technology is being constantly improved and enhanced. New models, able to simulate more and more complex recovery schemes, are proposed continuously. In this study waterflooding of five-spot pattern has been used to increase recovery and maintain pressure to sustain the required production rate.
机译:需要使用能够实时表征油藏的新技术,以利用上游技术的动态特性,并利用由智能技术连续生成的高密度数据,将现有油藏模型周围的不确定性程度降至最低。储层研究的主要目的是预测储层的未来性能,并找到提高最终采收率的方法。仿真不仅需要设计和使用良好的油藏模型来分析过程,还可以使用它进行大量过程分析,无论是油藏系统还是网络切换问题。更现实的是,模拟是一个过程,工程师在此过程中整合了多个因素来产生信息,并在此基础上管理人员可以做出可靠的决策。在此过程中,工程师应始终处于最重要的位置。油藏模拟技术正在不断改进和增强。不断提出能够模拟越来越复杂的恢复方案的新模型。在这项研究中,使用了五点式注水技术以提高采收率并保持压力以维持所需的生产率。

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