|本期目录/Table of Contents|

[1]耿晓伟,阎晶雪.注气条件对CO2置换驱替CH4影响的实验研究*[J].中国安全生产科学技术,2021,17(11):79-84.[doi:10.11731/j.issn.1673-193x.2021.11.012]
 GENG Xiaowei,YAN Jingxue.Experimental study on influence of gas injection conditions on CO2 replacement and displacement of CH4[J].JOURNAL OF SAFETY SCIENCE AND TECHNOLOGY,2021,17(11):79-84.[doi:10.11731/j.issn.1673-193x.2021.11.012]
点击复制

注气条件对CO2置换驱替CH4影响的实验研究*
分享到:

《中国安全生产科学技术》[ISSN:1673-193X/CN:11-5335/TB]

卷:
17
期数:
2021年11期
页码:
79-84
栏目:
职业安全卫生管理与技术
出版日期:
2021-11-30

文章信息/Info

Title:
Experimental study on influence of gas injection conditions on CO2 replacement and displacement of CH4
文章编号:
1673-193X(2021)-11-0079-06
作者:
耿晓伟阎晶雪
(1.辽宁工程技术大学 安全科学与工程学院,辽宁 阜新 123000;
2.辽宁工程技术大学 矿山热动力灾害与防治教育部重点实验室,辽宁 阜新 123000)
Author(s):
GENG Xiaowei YAN Jingxue
(1.School of Safety Science and Engineering,Liaoning Technical University,Fuxin Liaoning 123000,China;
2.Key Laboratory of Mine Thermal Power Disaster and Prevention,Ministry of Education,Liaoning Technical University,Fuxin Liaoning 123000,China)
关键词:
注气条件CO2CH4竞争吸附驱替置换
Keywords:
gas injection conditions CO2 CH4 competitive adsorption resplacement and displacement
分类号:
X936
DOI:
10.11731/j.issn.1673-193x.2021.11.012
文献标志码:
A
摘要:
为研究不同注气压力与注气温度对CO2置换驱替煤层CH4的影响规律,利用Materials Studio分子动力学模拟软件,通过煤体在2元组分混合气体间的竞争吸附量、竞争吸附热及能量分布等变化规律,从微观研究煤吸附CH4与CO2之间的机理,并利用物理实验平台,选用3种高变质程度煤进行注CO2置换驱替CH4实验。结果表明:同一种变质程度煤,随着注气压力或注气温度的增大,置换率呈增长趋势、驱替比呈下降趋势、CO2突破时间变短;相同注气压力与注气温度时煤的变质程度越高,置换效率越大、驱替比越小、CO2突破时间越长。并且注气压力对于CO2置换驱替CH4的效果要优于注气温度。
Abstract:
In order to study the influence of different gas injection pressures and gas injection temperatures on CO2 replacement and displacement of coal seam CH4,the Materials Studio molecular dynamics simulation software was used to study the mechanism between coal adsorption of CH4 and CO2 microscopically through the change laws of the competitive adsorption capacity,competitive adsorption heat and energy distribution of coal in the binary component mixed gas.The physical experiment platform was used to conduct the experiments of CO2 injection for the replacement and displacement of CH4 with selecting three kinds of high metamorphic coals.The results showed that for same kind of metamorphic coal,with the increase of gas injection pressure or temperature,the replacement rate increased,the displacement ratio decreased,and the CO2 breakthrough time became shorter.Under the same gas injection pressure and temperature,the higher the degree of coal metamorphism,the greater the replacement efficiency,the smaller the displacement ratio,and the longer the CO2 breakthrough time.The effect of gas injection pressure on CO2 replacement and displacement of CH4 was better than that of gas injection temperature.

参考文献/References:

[1]苏根深.煤炭深加工与综合利用的重要性分析[J].化工设计通讯,2020,46(6):25-30. SU Genshen.Analysis of the importance of coal deep processing and comprehensive utilization [J].Chemical Design Communications,2020,46(6):25-30.
[2]亓新瑞.层次分析法和模糊概率相结合判定煤与瓦斯突出危险性[D].太原:太原理工大学,2012.
[3]刘辉辉.煤体瓦斯渗流主控因素演化特性及其对瓦斯抽采控制机制[D].徐州:中国矿业大学,2020.
[4]REZNIK A A,SINGH P K,FOLEY W L.An analysis of the effect of CO2 injection on the recovery of in-situ methane from bituminous coal:an experimental simulation [J].Society of Petroleum Engineers Journal,1984,24(5):521-528..
[5]PARITI U M,HARPALANI S.Study of coal sorption isotherms using a multicomponet gas mixture [C]//Proceedings of the 1993 International Coalbed Mehtane Symposium.Tuscaloosa:The University of Alabama,1993:151-160.
[6]ZUBER M D.Production characteristics and reservoir analysis of coalbed methane reservoirs [J].International Journal of Coal Geology,1998,38(1):27-45.
[7]王晋,王延斌,范晶晶,等.注CO2置换煤层CH4试验研究[J].科技导报,2015,33(17):84-89. WANG Jin,WANG Yanbin,FAN Jingjing,et al.Experimental study on CO2 injection to replace coal seam CH4 [J].Science and Technology Review,2015,33(17):84-89
[8]梁卫国,张倍宁,黎力,等.注能(以CO2为例)改性驱替开采CH4理论与实验研究[J].煤炭学报,2018,43(10):2839-2847. LIANG Weiguo,ZHANG Beining,LI Li,et al.Energy injection (taking CO2 as an example) modified displacement mining CH4 theory and experimental research [J].Journal of China Coal Society,2018,43(10):2839-2847.
[9]王向浩,王延忠,张磊,等.高、低煤阶CO2与CH4竞争吸附解吸置换效果分析[J].非常规油气,2018,5(3):46-51. WANG Xianghao,WANG Yanzhong,ZHANG Lei,et al.High and low rank CO2 and CH4 competitive adsorption and desorption displacement effect analysis [J].Unconventional Oil and Gas,2018,5(3):46-51.
[10]牛玉平.高变质程度煤CO2置换驱替CH4实验研究[D].阜新:辽宁工程技术大学,2020.
[11]肖勇.流体汽液相平衡的分子模拟研究[D].重庆:重庆大学,2005.
[12]李延伟,姚金环,杨建文,等.Materials Studio软件在物质结构教学中的应用[J].中国现代教育装备,2018(7):31-32. LI Yanwei,YAO Jinhuan,YANG Jianwen,et al.Application of Materials Studio in the teaching of material structure [J].China Modern Educational Equipment,2018(7):31-32.
[13]全国煤炭标准化技术委员会.煤层煤样采取方法:GB/T 482—2008[S].北京:中国标准出版社,2008.
[14]全国煤炭标准化技术委员会.煤样的制备方法:GB/T 474—2008[S].北京:中国标准出版社,2008.
[15]吴宇.煤层中封存二氧化碳的双重孔隙力学效应研究[J].煤炭学报,2011,36(5):889-890. WU Yu.Study on dual pore mechanics effects of carbon dioxide storage in coal seams [J].Journal of China Coal Society,2011,36(5):889-890.
[16]XU J Z,ZHAI C,LIU S M,et al.Pore variation of three different metamorphic coals by multiple freezing-thawing cycles of liquid CO2 injection for coalbed methane recovery [J].Fule,2017,208:41-51.

相似文献/References:

[1]骆兴科,章光,刘明泽,等.CO2/水孔流作用下砂岩真三轴应变分形特征研究[J].中国安全生产科学技术,2017,13(9):47.[doi:10.11731/j.issn.1673-193x.2017.09.007]
 LUO Xingke,ZHANG Guang,LIU Mingze,et al.Study on true triaxial strain fractal characteristic of sandstone under effect of CO2/water pore fluid[J].JOURNAL OF SAFETY SCIENCE AND TECHNOLOGY,2017,13(11):47.[doi:10.11731/j.issn.1673-193x.2017.09.007]
[2]杨炳辉,江丙友,苏明清,等.初始扰动对CO2抑制瓦斯爆炸特性研究*[J].中国安全生产科学技术,2022,18(9):75.[doi:10.11731/j.issn.1673-193x.2022.09.011]
 YANG Binghui,JIANG Bingyou,SU Mingqing,et al.Study on characteristics of suppressing gas explosion by CO2 under initial disturbance[J].JOURNAL OF SAFETY SCIENCE AND TECHNOLOGY,2022,18(11):75.[doi:10.11731/j.issn.1673-193x.2022.09.011]
[3]郭万年,张静,李龙龙,等.不同通风条件下密闭空间CO2泄漏及排散过程模拟研究[J].中国安全生产科学技术,2022,18(12):209.[doi:10.11731/j.issn.1673-193x.2022.12.030]
 GUO Wannian,ZHANG Jing,LI Longlong,et al.Simulation study of CO2 leakage and dispersion process in enclosed space under different ventilation conditions[J].JOURNAL OF SAFETY SCIENCE AND TECHNOLOGY,2022,18(11):209.[doi:10.11731/j.issn.1673-193x.2022.12.030]

备注/Memo

备注/Memo:
收稿日期: 2020-10-17
* 基金项目: 国家自然科学基金项目(51404128)
作者简介: 耿晓伟,博士,副教授,主要研究方向为矿井灾害防治、安全管理与评价。
更新日期/Last Update: 2021-12-08