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Simulating CO_2 Sequestration in a Depleted Gas Reservoir

机译:模拟枯竭气藏中的CO_2固存

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摘要

CO_2 in atmosphere levels can be reduced by sequestering it directly to the underground. High amounts of CO_2 can be safely stored in underground media for very long time periods. Storage in depleted gas reservoirs provides an option for sequestering CO_2. CO_2 sequestration in Kuzey Marmara field has been considered in this study as an alternative to the gas storage projects. The reservoir still contains producible natural gas. Four scenarios were prepared by considering this fact with variations in the regional field properties and implemented into a previously built simulation model. Reservoir porosity and permeability maps were prepared and merged with Kuzey Marmara production information to create an input file for a computer modeling group-full equation of state compositional reservoir simulator (CMG-GEM) simulator, and a three-dimensional model of the reservoir was created. After analyzing the results from the scenarios it is realized that CO_2 injection can be applied to increase natural gas recovery of Kuzey Marmara field but sequestering high rate CO_2 emissions is found to be inappropriate.
机译:可以通过将其直接封存到地下来减少大气中的CO_2。大量的CO_2可以安全地长期存储在地下介质中。储存在贫气气藏中提供了封存CO_2的选项。这项研究已考虑将库兹伊马尔马拉油田的CO_2封存作为储气库的替代方案。储层中仍含有可生产的天然气。考虑到这一事实,准备了四种方案,各地区的田野属性各不相同,并已实施到先前构建的仿真模型中。编制储层孔隙度和渗透率图,并将其与Kuzey Marmara生产信息合并,以为计算机建模组全状态方程组成储层模拟器(CMG-GEM)模拟器创建输入文件,并创建储层的三维模型。在对方案的结果进行分析之后,我们认识到可以将CO_2注入用于提高Kuzey Marmara气田的天然气采收率,但隔离高速率的CO_2排放是不适当的。

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