首页|热作用条件下烟道气与轻质原油混相规律

热作用条件下烟道气与轻质原油混相规律

扫码查看
通过细长管混相驱替实验开展高温高压条件下烟道气与不同类型轻质原油的热混相规律研究.在高温高压条件下烟道气可以与轻质原油实现混相驱替;相同温度条件下,烟道气驱油效率与压力呈近线性关系;相同压力条件下,随温度增加驱油效率先平缓增加,然后急速增加,驱油效率快速达到90%以上,实现混相驱,驱油效率急速增加过程与稀油轻质组分随温度增加发生蒸馏相变有着密切关系;相同压力条件下,原油越轻,烟道气与原油的最小混相温度越低,越容易实现混相,注空气热混相驱替开发效果越好;高温高压条件下轻质原油与烟道气的混相更多体现的是超临界状态的高温相变特征,与常规高压条件下CO2的接触抽提混相存在较大差异.
Miscibility of light oil and flue gas under thermal action
The miscibility of flue gas and different types of light oils is investigated through slender-tube miscible displacement experiment at high temperature and high pressure.Under the conditions of high temperature and high pressure,the miscible displacement of flue gas and light oil is possible.At the same temperature,there is a linear relationship between oil displacement efficiency and pressure.At the same pressure,the oil displacement efficiency increases gently and then rapidly to more than 90%to achieve miscible displacement with the increase of temperature.The rapid increase of oil displacement efficiency is closely related to the process that the light components of oil transit in phase state due to distillation with the rise of temperature.Moreover,at the same pressure,the lighter the oil,the lower the minimum miscibility temperature between flue gas and oil,which allows easier miscibility and ultimately better performance of thermal miscible flooding by air injection.The miscibility between flue gas and light oil at high temperature and high pressure is more typically characterized by phase transition at high temperature in supercritical state,and it is different from the contact extraction miscibility of CO2 under conventional high pressure conditions.

light oilflue gas floodingthermal miscible floodingmiscible lawdistillation phase transitionminimum miscible pressureminimum miscible temperature

席长丰、王伯军、赵芳、花道德、齐宗耀、刘彤、赵泽麒、唐君实、周游、王红庄

展开 >

提高石油采收率全国重点实验室,北京 100083

中国石油勘探开发研究院,北京 100083

中国地质大学(北京),北京 100083

轻质原油 烟道气驱 热混相驱 混相规律 蒸馏相变 最小混相压力 最小混相温度

中国石油天然气股份有限公司科技项目

2023ZG18

2024

石油勘探与开发
中国石油天然气股份有限公司勘探开发研究院 中国石油集团科学技术研究院

石油勘探与开发

CSTPCD北大核心
影响因子:4.977
ISSN:1000-0747
年,卷(期):2024.51(1)
  • 1
  • 20