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Laboratory determination of oil draining CO2 hysteresis effects during multiple floods of a conventional clastic oil reservoir

机译:常规碎屑油藏多次洪水中排水二氧化碳滞后效应的实验室测定

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摘要

Determination of hysteresis in relative permeability data is useful in obtaining more reliable predictions of water alternating gas (WAG) enhanced oil recovery performance and accompanying associated storage of CO2. A laboratory-based evaluation of CO2 draining oil has been conducted on reservoir rocks from a conventional clastic oil reservoir undergoing tertiary CO2 enhanced recovery. Experimentation was conducted at reservoir conditions of 16 MPa (2300 psi) and 43 degrees C (110 degrees F). Through this study, a better understanding of the oil production and associated storage of CO2 in a conventional clastic oil reservoir has been obtained. Data generated provide an example of a site-specific field project that is currently undergoing a tertiary CO2-based EOR project demonstrating that associated CO2 storage will occur. Through multiple cycles of CO2 injection, this study has shown the effectiveness of first contact CO2 as it relates to the mobilization of oil from injector to producer. Additionally, in this conventional clastic reservoir, CO2 trapping appears to have taken place during the initial imbibition cycle, as oil production and differential pressures remain consistent during subsequent tests.
机译:相对渗透性数据中的滞后的测定可用于获得更可靠的水交交配气体(WAG)增强的采油性能和CO 2的相关储存的更可靠预测。从经历第三二氧化碳增强恢复的常规碎屑油库的储层岩石上进行了基于实验室的CO2排水油的评价。实验在16MPa(2300psi)和43摄氏度(110度)的储层条件下进行。通过这项研究,已经获得了更好地理解在传统的碎屑油库中的石油生产和CO2的相关储存。生成的数据提供了当前正在进行的基于二氧化碳的EOR项目的站点特定字段项目的示例,示范将发生相关的CO2存储。通过多循环的二氧化碳注射,本研究表明了第一接触CO2的有效性,因为它涉及从注射器到生产者的油。另外,在这种传统的碎屑储层中,在初始吸收循环期间似乎已经发生了CO2捕获,因为油生产和差压在随后的测试期间保持一致。

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