化工设计通讯2024,Vol.50Issue(7) :112-114.

超临界多元流体模拟实验研究

Research of Supercritical Multi Element Fluid Simulation Experimental

刘宗恩 赵希春 石性军 陈琳
化工设计通讯2024,Vol.50Issue(7) :112-114.

超临界多元流体模拟实验研究

Research of Supercritical Multi Element Fluid Simulation Experimental

刘宗恩 1赵希春 2石性军 1陈琳1
扫码查看

作者信息

  • 1. 中国石油大学(华东),山东青岛 266580
  • 2. 青岛石大华通科技有限公司,山东青岛 266400
  • 折叠

摘要

随着油气勘探开发的不断发展,井深逐步加大,压力、温度也逐步升高,伴随着蒸汽吞吐、蒸汽驱特别是火烧油层等技术的应用,开采层的温度、压力可能达到水的超临界点.由于超临界水有很多性质,如具有极强的氧化能力,可以溶解很多物质(比如油),能够缓慢地溶解腐蚀几乎所有金属,具有超级催化作用,这些性质对油藏的开发有着极大的影响.超临界多元流体模拟实验系统可以在室内条件下,通过模拟实际深井条件,进行超临界多元流体对原油采收的影响的探索;进行超临界多元流体对油、套管及地层的腐蚀影响的研究.

Abstract

With the continuous development of oil and gas exploration and development,the depth of wells gradually increases,and the pressure and temperature also gradually rise.With the application of technologies such as steam injection and steam flooding,especially the burning of oil layers,the temperature and pressure of the production layer may reach the supercritical point of water.Due to the many properties of supercritical water,such as its strong oxidation ability,the ability to dissolve many substances(such as oil),the ability to slowly dissolve and corrode almost all metals,and its super catalytic effect,these properties have a great impact on the development of oil reservoirs.The supercritical multi-component fluid simulation experimental system can explore the impact of supercritical multi-component fluid on crude oil recovery under indoor conditions by simulating actual deep well conditions;Conduct research on the corrosion effects of supercritical multicomponent fluids on oil,casing,and formation.

关键词

超临界多元流体/油田开发/原油采收/测试系统

Key words

supercritical multicomponent fluid/oilfield development/crude oil recovery/testing system

引用本文复制引用

基金项目

国家自然科学基金重点项目(U1762212)

出版年

2024
化工设计通讯
湖南化工医药设计院

化工设计通讯

影响因子:0.126
ISSN:1003-6490
段落导航相关论文