期刊文献+
共找到189篇文章
< 1 2 10 >
每页显示 20 50 100
Investigation of gravity influence on EOR and CO_(2) geological storage based on pore-scale simulation
1
作者 Yong-Mao Hao Gui-Cheng Wu +6 位作者 Zong-Fa Li Zhong-Hui Wu Yong-Quan Sun Ran Liu Xing-Xing Li Bo-Xin Pang Nan Li 《Petroleum Science》 SCIE EI CAS CSCD 2024年第2期987-1001,共15页
Gravity assistance is a critical factor influencing CO_(2)-Oil mixing and miscible flow during EOR and CO_(2)geological storage.Based on the Navier-Stokes equation,component mass conservation equation,and fluid proper... Gravity assistance is a critical factor influencing CO_(2)-Oil mixing and miscible flow during EOR and CO_(2)geological storage.Based on the Navier-Stokes equation,component mass conservation equation,and fluid property-composition relationship,a mathematical model for pore-scale CO_(2) injection in oilsaturated porous media was developed in this study.The model can reflect the effects of gravity assistance,component diffusion,fluid density variation,and velocity change on EOR and CO_(2) storage.For nonhomogeneous porous media,the gravity influence and large density difference help to minimize the velocity difference between the main flow path and the surrounding area,thus improving the oil recovery and CO_(2) storage.Large CO_(2) injection angles and oil-CO_(2) density differences can increase the oil recovery by 22.6% and 4.2%,respectively,and increase CO_(2) storage by 37.9% and 4.7%,respectively.Component diffusion facilitates the transportation of the oil components from the low-velocity region to the main flow path,thereby reducing the oil/CO_(2) concentration difference within the porous media.Component diffusion can increase oil recovery and CO_(2) storage by 5.7% and 6.9%,respectively.In addition,combined with the component diffusion,a low CO_(2) injection rate creates a more uniform spatial distribution of the oil/CO_(2) component,resulting in increases of 9.5% oil recovery and 15.7% CO_(2) storage,respectively.This study provides theoretical support for improving the geological CO_(2) storage and EOR processes. 展开更多
关键词 GRAVITY Flow simulation co_(2)-oil mixing Enhanced oil recovery(EOR) geological storage
下载PDF
Application of Feature, Event, and Process Methods to Leakage Scenario Development for Offshore CO_(2) Geological Storage
2
作者 Qiang Liu Yanzun Li +2 位作者 Meng Jing Qi Li Guizhen Liu 《哈尔滨工程大学学报(英文版)》 CSCD 2024年第3期608-616,共9页
Offshore carbon dioxide(CO_(2)) geological storage(OCGS) represents a significant strategy for addressing climate change by curtailing greenhouse gas emissions. Nonetheless, the risk of CO_(2) leakage poses a substant... Offshore carbon dioxide(CO_(2)) geological storage(OCGS) represents a significant strategy for addressing climate change by curtailing greenhouse gas emissions. Nonetheless, the risk of CO_(2) leakage poses a substantial concern associated with this technology. This study introduces an innovative approach for establishing OCGS leakage scenarios, involving four pivotal stages, namely, interactive matrix establishment, risk matrix evaluation, cause–effect analysis, and scenario development, which has been implemented in the Pearl River Estuary Basin in China. The initial phase encompassed the establishment of an interaction matrix for OCGS systems based on features, events, and processes. Subsequent risk matrix evaluation and cause–effect analysis identified key system components, specifically CO_(2) injection and faults/features. Building upon this analysis, two leakage risk scenarios were successfully developed, accompanied by the corresponding mitigation measures. In addition, this study introduces the application of scenario development to risk assessment, including scenario numerical simulation and quantitative assessment. Overall, this research positively contributes to the sustainable development and safe operation of OCGS projects and holds potential for further refinement and broader application to diverse geographical environments and project requirements. This comprehensive study provides valuable insights into the establishment of OCGS leakage scenarios and demonstrates their practical application to risk assessment, laying the foundation for promoting the sustainable development and safe operation of ocean CO_(2) geological storage projects while proposing possibilities for future improvements and broader applications to different contexts. 展开更多
关键词 Offshore co_(2)geological storage Features events and processes Scenario development Interaction matrix Risk matrix assessment
下载PDF
An Integrated Framework for Geothermal Energy Storage with CO_(2)Sequestration and Utilization 被引量:2
3
作者 Yueliang Liu Ting Hu +7 位作者 Zhenhua Rui Zheng Zhang Kai Du Tao Yang Birol Dindoruk Erling Halfdan Stenby Farshid Torabi Andrey Afanasyev 《Engineering》 SCIE EI CAS CSCD 2023年第11期121-130,共10页
Subsurface geothermal energy storage has greater potential than other energy storage strategies in terms of capacity scale and time duration.Carbon dioxide(CO_(2))is regarded as a potential medium for energy storage d... Subsurface geothermal energy storage has greater potential than other energy storage strategies in terms of capacity scale and time duration.Carbon dioxide(CO_(2))is regarded as a potential medium for energy storage due to its superior thermal properties.Moreover,the use of CO_(2)plumes for geothermal energy storage mitigates the greenhouse effect by storing CO_(2)in geological bodies.In this work,an integrated framework is proposed for synergistic geothermal energy storage and CO_(2)sequestration and utilization.Within this framework,CO_(2)is first injected into geothermal layers for energy accumulation.The resultant high-energy CO_(2)is then introduced into a target oil reservoir for CO_(2)utilization and geothermal energy storage.As a result,CO_(2)is sequestrated in the geological oil reservoir body.The results show that,as high-energy CO_(2)is injected,the average temperature of the whole target reservoir is greatly increased.With the assistance of geothermal energy,the geological utilization efficiency of CO_(2)is higher,resulting in a 10.1%increase in oil displacement efficiency.According to a storage-potential assessment of the simulated CO_(2)site,110 years after the CO_(2)injection,the utilization efficiency of the geological body will be as high as 91.2%,and the final injection quantity of the CO_(2)in the site will be as high as 9.529×10^(8)t.After 1000 years sequestration,the supercritical phase dominates in CO_(2)sequestration,followed by the liquid phase and then the mineralized phase.In addition,CO_(2)sequestration accounting for dissolution trapping increases significantly due to the presence of residual oil.More importantly,CO_(2)exhibits excellent performance in storing geothermal energy on a large scale;for example,the total energy stored in the studied geological body can provide the yearly energy supply for over 3.5×10^(7) normal households.Application of this integrated approach holds great significance for large-scale geothermal energy storage and the achievement of carbon neutrality. 展开更多
关键词 Geothermal energy storage co_(2)sequestration Carbon neutrality LARGE-SCALE co_(2)utilization
下载PDF
Effects of CH_(4)/CO_(2) multi-component gas on components and properties of tight oil during CO_(2) utilization and storage: Physical experiment and composition numerical simulation
4
作者 Zhi-Hao Jia Ren-Yi Cao +5 位作者 Bin-Yu Wang Lin-Song Cheng Jin-Chong Zhou Bao-Biao Pu Fu-Guo Yin Ming Ma 《Petroleum Science》 SCIE EI CAS CSCD 2023年第6期3478-3487,共10页
An essential technology of carbon capture, utilization and storage-enhanced oil recovery (CCUS-EOR) for tight oil reservoirs is CO_(2) huff-puff followed by associated produced gas reinjection. In this paper, the effe... An essential technology of carbon capture, utilization and storage-enhanced oil recovery (CCUS-EOR) for tight oil reservoirs is CO_(2) huff-puff followed by associated produced gas reinjection. In this paper, the effects of multi-component gas on the properties and components of tight oil are studied. First, the core displacement experiments using the CH_(4)/CO_(2) multi-component gas are conducted to determine the oil displacement efficiency under different CO_(2) and CH_(4) ratios. Then, a viscometer and a liquid density balance are used to investigate the change characteristics of oil viscosity and density after multi-component gas displacement with different CO_(2) and CH_(4) ratios. In addition, a laboratory scale numerical model is established to validate the experimental results. Finally, a composition model of multi-stage fractured horizontal well in tight oil reservoir considering nano-confinement effects is established to investigate the effects of multi-component gas on the components of produced dead oil and formation crude oil. The experimental results show that the oil displacement efficiency of multi-component gas displacement is greater than that of single-component gas displacement. The CH_(4) decreases the viscosity and density of light oil, while CO_(2) decreases the viscosity but increases the density. And the numerical simulation results show that CO_(2) extracts more heavy components from the liquid phase into the vapor phase, while CH_(4) extracts more light components from the liquid phase into the vapor phase during cyclic gas injection. The multi-component gas can extract both the light components and the heavy components from oil, and the balanced production of each component can be achieved by using multi-component gas huff-puff. 展开更多
关键词 Multi-component gas Properties and components core displacement experiment Nano-confinement numerical simulation co_(2)utilization and storage
下载PDF
A review of interaction mechanisms and microscopic simulation methods for CO_(2)-water-rock system
5
作者 ZHANG Liehui ZHANG Tao +6 位作者 ZHAO Yulong HU Haoran WEN Shaomu WU Jianfa CAO Cheng WANG Yongchao FAN Yunting 《Petroleum Exploration and Development》 SCIE 2024年第1期223-238,共16页
This work systematically reviews the complex mechanisms of CO_(2)-water-rock interactions,microscopic simulations of reactive transport(dissolution,precipitation and precipitate migration)in porous media,and microscop... This work systematically reviews the complex mechanisms of CO_(2)-water-rock interactions,microscopic simulations of reactive transport(dissolution,precipitation and precipitate migration)in porous media,and microscopic simulations of CO_(2)-water-rock system.The work points out the key issues in current research and provides suggestions for future research.After injection of CO_(2) into underground reservoirs,not only conventional pressure-driven flow and mass transfer processes occur,but also special physicochemical phenomena like dissolution,precipitation,and precipitate migration.The coupling of these processes causes complex changes in permeability and porosity parameters of the porous media.Pore-scale microscopic flow simulations can provide detailed information within the three-dimensional pore and throat space and explicitly observe changes in the fluid-solid interfaces of porous media during reactions.At present,the research has limitations in the decoupling of complex mechanisms,characterization of differential multi-mineral reactions,precipitation generation mechanisms and characterization(crystal nucleation and mineral detachment),simulation methods for precipitation-fluid interaction,and coupling mechanisms of multiple physicochemical processes.In future studies,it is essential to innovate experimental methods to decouple“dissolution-precipitation-precipitate migration”processes,improve the accuracy of experimental testing of minerals geochemical reaction-related parameters,build reliable characterization of various precipitation types,establish precipitation-fluid interaction simulation methods,coordinate the boundary conditions of different physicochemical processes,and,finally,achieve coupled flow simulation of“dissolution-precipitation-precipitate migration”within CO_(2)-water-rock systems. 展开更多
关键词 co_(2)-water-rock DISSOLUTION PRECIPITATION precipitate migration microscopic simulation co_(2)capture utilization and storage carbon neutrality decouple
下载PDF
CO_(2)storage with enhanced gas recovery(CSEGR):A review of experimental and numerical studies 被引量:10
6
作者 Shu-Yang Liu Bo Ren +5 位作者 Hang-Yu Li Yong-Zhi Yang Zhi-Qiang Wang Bin Wang Jian-Chun Xu Ramesh Agarwal 《Petroleum Science》 SCIE CAS CSCD 2022年第2期594-607,共14页
CO_(2)emission mitigation is one of the most critical research frontiers.As a promising option of carbon capture,utilization and storage(CCUS),CO_(2)storage with enhanced gas recovery(CSEGR)can reduce CO_(2)emission b... CO_(2)emission mitigation is one of the most critical research frontiers.As a promising option of carbon capture,utilization and storage(CCUS),CO_(2)storage with enhanced gas recovery(CSEGR)can reduce CO_(2)emission by sequestrating it into gas reservoirs and simultaneously enhance natural gas production.Over the past decades,the displacement behaviour of CO_(2)—natural gas has been extensively studied and demonstrated to play a key role on both CO_(2)geologic storage and gas recovery performance.This work thoroughly and critically reviews the experimental and numerical simulation studies of CO_(2)displacing natural gas,along with both CSEGR research and demonstration projects at various scales.The physical property difference between CO_(2)and natural gas,especially density and viscosity,lays the foundation of CSEGR.Previous experiments on displacement behaviour and dispersion characteristics of CO_(2)/natural gas revealed the fundamental mixing characteristics in porous media,which is one key factor of gas recovery efficiency and warrants further study.Preliminary numerical simulations demonstrated that it is technically and economically feasible to apply CSEGR in depleted gas reservoirs.However,CO_(2)preferential flow pathways are easy to form(due to reservoir heterogeneity)and thus adversely compromise CSEGR performance.This preferential flow can be slowed down by connate or injected water.Additionally,the optimization of CO_(2)injection strategies is essential for improving gas recovery and CO_(2)storage,which needs further study.The successful K12—B pilot project provides insightful field-scale knowledge and experience,which paves a good foundation for commercial application.More experiments,simulations,research and demonstration projects are needed to facilitate the maturation of the CSEGR technology. 展开更多
关键词 Carbon capture utilization and storage(CCUS) Enhanced gas recovery co_(2)geologic storage Miscible displacement DISPERSION
下载PDF
Potential assessment of CO_(2)geological storage based on injection scenario simulation:A case study in eastern Junggar Basin 被引量:3
7
作者 Xin Ma Dong-guang Wen +6 位作者 Guo-dong Yang Xu-feng Li Yu-jie Diao Hai-hai Dong Wei Cao Shu-guo Yin Yan-mei Zhang 《Journal of Groundwater Science and Engineering》 2021年第4期279-291,共13页
Carbon Capture and Storage(CCS)is one of the effective means to deal with global warming,and saline aquifer storage is considered to be the most promising storage method.Junggar Basin,located in the northern part of X... Carbon Capture and Storage(CCS)is one of the effective means to deal with global warming,and saline aquifer storage is considered to be the most promising storage method.Junggar Basin,located in the northern part of Xinjiang and with a large distribution area of saline aquifer,is an effective carbon storage site.Based on well logging data and 2D seismic data,a 3D heterogeneous geological model of the Cretaceous Donggou Formation reservoir near D7 well was constructed,and dynamic simulations under two scenarios of single-well injection and multi-well injection were carried out to explore the storage potential and CO2 storage mechanism of deep saline aquifer with real geological conditions in this study.The results show that within 100 km^(2)of the saline aquifer of Donggou Formation in the vicinity of D7 well,the theoretical static CO_(2)storage is 71.967×106 tons(P50)①,and the maximum dynamic CO_(2)storage is 145.295×106 tons(Case2).The heterogeneity of saline aquifer has a great influence on the spatial distribution of CO_(2)in the reservoir.The multi-well injection scenario is conducive to the efficient utilization of reservoir space and safer for storage.Based on the results from theoretical static calculation and the dynamic simulation,the effective coefficient of CO_(2)storage in deep saline aquifer in the eastern part of Xinjiang is recommended to be 4.9%.This study can be applied to the engineering practice of CO_(2)sequestration in the deep saline aquifer in Xinjiang. 展开更多
关键词 co_(2)geological storage Deep saline aquifer Potential assessment Injection scenarios Numerical simulation Junggar Basin
下载PDF
海洋CO_(2)地质封存研究进展与发展趋势 被引量:3
8
作者 赵金洲 郑建超 +2 位作者 任岚 林然 周博 《大庆石油地质与开发》 CAS 北大核心 2024年第1期1-13,共13页
CO_(2)捕集、利用和封存是中国实现“双碳”目标的核心技术,也是全球研究的热点。CO_(2)地质封存是其中的关键环节,特别是海洋CO_(2)地质封存是今后的重点发展方向。以国内外海洋CO_(2)地质封存的发展历程为基础,结合典型CO_(2)海洋封... CO_(2)捕集、利用和封存是中国实现“双碳”目标的核心技术,也是全球研究的热点。CO_(2)地质封存是其中的关键环节,特别是海洋CO_(2)地质封存是今后的重点发展方向。以国内外海洋CO_(2)地质封存的发展历程为基础,结合典型CO_(2)海洋封存示范项目案例,系统梳理了国内外海洋CO_(2)地质封存理论研究进展,分析了CO_(2)在井筒流动、相变与传热、CO_(2)流体运移与储层物性参数展布规律、海洋地质封存机制及封存潜力、地质封存盖层完整性及安全性评估等方面的研究现状。认识到中国目前对海底地质结构中CO_(2)注入过程的多相态转化、溶解、捕获传质特征及动力学特性认识尚浅,对海洋封存机制及不同封存机制之间的相互作用机理尚不明确,未来应开展海洋CO_(2)动态地质封存空间重构机制研究,解决地质封存相态转化及流体动态迁移机理等关键科学问题,揭示海洋CO_(2)地质封存机制的相互作用机理,形成适用于中国海洋地质封存CO_(2)高效注入和增效封存方法。 展开更多
关键词 co_(2)地质封存 海洋 co_(2)捕集、利用与封存(CCUS) 双碳 碳中和
下载PDF
纳米SiO_(2)强化CO_(2)地质封存页岩盖层封堵能力机制试验 被引量:1
9
作者 李颖 李茂茂 +4 位作者 李海涛 周军平 LEONHARD Ganzer 罗红文 康夫馨 《中国石油大学学报(自然科学版)》 EI CAS CSCD 北大核心 2024年第2期92-98,共7页
页岩为CO_(2)盐水层地质封存常见盖层岩石类型,强化盖层封堵能力有利于提高CO_(2)地质埋存量和安全性。为探究随CO_(2)混注纳米SiO_(2)(SNPs)强化盖层封堵能力的有效性和可行性,对CO_(2)地质封存页岩盖层样品开展原地条件下的超临界CO_... 页岩为CO_(2)盐水层地质封存常见盖层岩石类型,强化盖层封堵能力有利于提高CO_(2)地质埋存量和安全性。为探究随CO_(2)混注纳米SiO_(2)(SNPs)强化盖层封堵能力的有效性和可行性,对CO_(2)地质封存页岩盖层样品开展原地条件下的超临界CO_(2)酸蚀反应试验,基础组为页岩样品-地层水、对照组为页岩样品-地层水+超临界CO_(2)、优化组为页岩样品-地层水+SNPs+超临界CO_(2),并采用核磁共振测试、场发射扫描电镜可视化观测、X射线衍射测试和岩石力学试验,探究CO_(2)酸蚀反应前后的页岩孔隙结构、表面形貌、矿物成分及力学性质特征。结果表明:优化组的大孔孔隙分量及孔隙度和渗透率增大幅度低于对照组;与对照组相比,优化组黏土矿物与碳酸盐岩矿物相对含量损失少,表明随CO_(2)混注SNPs可使岩样内部酸蚀作用减弱;SNPs在岩石端面吸附聚集或进入岩心孔喉,可使优化组页岩样品力学性能损伤程度降低;随CO_(2)混注SNPs有利于强化CO_(2)盐水层地质封存盖层封堵能力。 展开更多
关键词 co_(2)地质封存 纳米二氧化硅 超临界co_(2) 盖层封堵能力
下载PDF
CO_(2)原位矿化选址关键参数及其封存潜力评估研究进展 被引量:2
10
作者 张敏 叶航 +6 位作者 包琦 刘琦 荆铁亚 袁浩伟 赵文韬 王晓龙 鲜成钢 《化工进展》 EI CAS CSCD 北大核心 2024年第3期1492-1505,F0004,共15页
温室气体特别是二氧化碳的大量排放,是导致全球变暖的主要原因之一。根据国际能源署的报道,碳捕集利用和封存(CCUS)技术是缓解全球气候变化的重要措施之一,约占累计碳减排量的15%。原位矿化封存技术基于快速CO_(2)矿化机制,以镁铁质岩... 温室气体特别是二氧化碳的大量排放,是导致全球变暖的主要原因之一。根据国际能源署的报道,碳捕集利用和封存(CCUS)技术是缓解全球气候变化的重要措施之一,约占累计碳减排量的15%。原位矿化封存技术基于快速CO_(2)矿化机制,以镁铁质岩石和超镁铁质岩石(玄武岩、橄榄岩等)地层为碳封存位点,利用CO_(2)与富含Ca、Mg元素矿物的矿化反应,转变为稳定的碳酸盐,从而达到永久且高效封存CO_(2)的目的。冰岛和美国的中试项目已经证明了该技术的可行性,但中国尚未进行相关示范项目。本文介绍了原位矿化封存技术的机理、CO_(2)封存潜力的评估手段及其面临的风险与挑战,讨论了已开展的案例项目及其技术细节,梳理了实施该技术所必需的选址关键参数(包括源-汇距离、矿物类型、注入性、封闭性等),并基于目前研究对其前景进行展望,以期提高我国对原位矿化技术的认识和重视,为推动该领域进一步发展提供理论指导。 展开更多
关键词 co_(2)原位矿化 co_(2)地质封存 玄武岩 选址参数 封存潜力
下载PDF
CO_(2)−荷载耦合作用下煤体细观统计损伤本构模型及验证
11
作者 王磊 陈礼鹏 +4 位作者 谢广祥 范浩 李少波 邹鹏 张宇 《煤炭学报》 EI CAS CSCD 北大核心 2024年第6期2630-2642,共13页
CO_(2)吸附会对煤体产生损伤劣化作用进而降低其稳定性,对CO_(2)封存的长期安全性提出挑战,明确CO_(2)劣化作用并建立本构模型至关重要。采用损伤力学理论和统计理论推导出能够综合反映CO_(2)吸附和荷载耦合作用下煤体总损伤变量的计算... CO_(2)吸附会对煤体产生损伤劣化作用进而降低其稳定性,对CO_(2)封存的长期安全性提出挑战,明确CO_(2)劣化作用并建立本构模型至关重要。采用损伤力学理论和统计理论推导出能够综合反映CO_(2)吸附和荷载耦合作用下煤体总损伤变量的计算公式,并重点考虑了压密段的影响,分段建立了CO_(2)作用下煤体的细观统计损伤本构方程,明确了模型各参数的确定方法。最后通过CT扫描实验系统、MTS 816实验系统确定了本构模型参数,并采用自主研制的气−固耦合实验系统对不同CO_(2)压力下煤体进行了单轴压缩实验,验证了模型的合理性。研究结果表明:①基于CT扫描获取的裂隙率和运用Weibull分布理论分别定义了吸附和受载作用下的损伤变量,结合损伤理论进一步得到二者耦合作用下的总损伤变量,并建立了细观统计损伤本构模型;②基于CT扫描技术的裂隙三维重构真实反映了CO_(2)作用前后裂隙扩展特征,CO_(2)压力越高,裂隙扩展越充分,煤样三维裂隙参数和损伤变量越大,所形成的空间裂隙网络越复杂;③CO_(2)对煤体力学性质劣化作用显著,煤体的抗压强度与弹性模量随CO_(2)压力增加分别降低了49.78%和22.63%,CO_(2)对煤体的溶胀效应、塑化效应和气楔效应的综合作用导致了力学参数的降低;④建立的CO_(2)作用下煤体细观统计损伤模型理论曲线与单轴实验曲线具有较高的吻合度,说明损伤本构模型能够较好地反映出CO_(2)对煤体力学特性的损伤劣化作用,体现了损伤本构模型及模型参数确定方法的合理性与适用性。 展开更多
关键词 co_(2)地质封存 本构模型 损伤变量 力学特性 裂隙演化
下载PDF
不同超临界CO_(2)浸蚀时间后冲击煤体能量演化与破坏特征
12
作者 王磊 杨震宇 +4 位作者 陈礼鹏 王勇 张帅 王安铖 李伟利 《岩土力学》 EI CAS CSCD 北大核心 2024年第8期2251-2262,共12页
在未采煤层封存CO_(2)时,注入的CO_(2)受高温高压影响会处于超临界态,影响煤层稳定性。为研究超临界CO_(2)浸蚀后煤体受扰动影响引起的能量耗散与破坏特征,基于自主研发的高压气体吸附/解吸试验系统对煤体开展不同超临界CO_(2)浸蚀时间(... 在未采煤层封存CO_(2)时,注入的CO_(2)受高温高压影响会处于超临界态,影响煤层稳定性。为研究超临界CO_(2)浸蚀后煤体受扰动影响引起的能量耗散与破坏特征,基于自主研发的高压气体吸附/解吸试验系统对煤体开展不同超临界CO_(2)浸蚀时间(0、2、4、6 d)的吸附试验,利用分离式霍普金森压杆试验系统对超临界CO_(2)作用后的煤体开展冲击压缩试验,并结合高速摄像仪拍摄了冲击过程,分析了冲击煤体的能量耗散规律,阐明了煤体的破坏裂纹演化与破碎分形特征。研究结果表明:相同冲击荷载下,不同超临界CO_(2)浸蚀时间后煤样的应力-应变曲线变化趋势类似,可划分为弹性能量耗散、塑性能量耗散和峰后能量耗散3个阶段。随超临界CO_(2)浸蚀时间增长,煤样吸能能力减弱,冲击煤样表面裂纹数量增多,裂纹网络及扩展方向逐渐复杂,煤样破碎更加剧烈,破碎粒径减小,破碎形态更加复杂,最后确定了不同浸蚀时间后煤样破碎分形维数与耗能密度的线性相关关系。研究结果对于开展注CO_(2)强化深部煤层气开采工程探索具有一定的理论意义。 展开更多
关键词 co_(2)地质封存 超临界co_(2) 冲击荷载 能量耗散 破碎分形
下载PDF
超临界CO_(2)作用下无烟煤孔隙结构演化时间效应规律
13
作者 葛兆龙 张翔宇 +3 位作者 刘浩 侯昱东 符文宇 贾云中 《天然气工业》 EI CAS CSCD 北大核心 2024年第7期97-108,共12页
CO_(2)地质封存技术是实现减排和废弃矿井资源再利用的有效技术之一,但煤层孔隙结构在CO_(2)注入后的变化具有时间效应,其演化规律将直接影响CO_(2)地质封存潜力。为了探索作用时间增加后煤层孔隙结构变化的真实情况,提高CO_(2)地质封... CO_(2)地质封存技术是实现减排和废弃矿井资源再利用的有效技术之一,但煤层孔隙结构在CO_(2)注入后的变化具有时间效应,其演化规律将直接影响CO_(2)地质封存潜力。为了探索作用时间增加后煤层孔隙结构变化的真实情况,提高CO_(2)地质封存量计算精度,通过对重庆市南桐矿区无烟煤进行超临界CO_(2)吸附实验、低温氮气吸附实验、X射线衍射测试、核磁共振测试、扫描电镜测试等实验,研究了不同超临界CO_(2)作用时间对该区域内煤样孔隙结构的演化规律。研究结果表明:①超临界CO_(2)作用后煤样孔隙度的变化主要发生在7 d内,处理7 d后煤样孔隙度增加了3.20%,7~14 d内煤样孔隙度仅增加了0.05%;②随作用时间增加,煤样孔隙的比表面积增加但变化量逐渐减小,7 d内日均增长19.74%~24.50%,7~14 d内日均增长2.37%~4.60%,其变化规律近似呈对数函数关系;③超临界CO_(2)与煤产生的化学反应引起矿物质的溶解,增大了煤体的表面粗糙度,表征煤样粗糙度的分形维数随着作用时间的增加持续增大;④超临界CO_(2)作用后能有效改变煤样的孔隙度及表面形貌,为CO_(2)吸附提供了更多吸附点位,超临界CO_(2)对孔隙结构的改造效果在7 d内比较明显。结论认为,超临界CO_(2)作用下无烟煤孔隙结构的变化随作用时间增加最终会趋于稳定,研究结果可为无烟煤储层CO_(2)地质封存潜力评价提供理论指导。 展开更多
关键词 无烟煤 超临界co_(2) 孔隙结构 作用时间 co_(2)地质封存 核磁共振 分形维数
下载PDF
基于高干度泡沫实验的非均质咸水层CO_(2)封存能力分析
14
作者 李松岩 马芮 党法强 《天然气工业》 EI CAS CSCD 北大核心 2024年第4期46-55,共10页
CO_(2)咸水层封存是实现“碳中和”目标的一项重要技术手段。高干度泡沫不仅能更好地控制CO_(2)流度而且还能适应地层的非均质性,明显提高了咸水层的空间利用效率。为探究高干度CO_(2)泡沫在非均质咸水层中的调剖效果与CO_(2)封存能力,... CO_(2)咸水层封存是实现“碳中和”目标的一项重要技术手段。高干度泡沫不仅能更好地控制CO_(2)流度而且还能适应地层的非均质性,明显提高了咸水层的空间利用效率。为探究高干度CO_(2)泡沫在非均质咸水层中的调剖效果与CO_(2)封存能力,利用自行设计的高温高压驱替实验装置,进行了不同渗透率级差的并联岩心CO_(2)泡沫驱室内实验研究,分析了驱替过程中岩心的气液产出情况与CO_(2)饱和度的变化规律,指出了不同渗透率级差非均质岩心模型的碳封存效果与机理。研究结果表明:①与CO_(2)气驱相比高干度泡沫驱用于CO_(2)咸水层埋存具有更大优势,当岩心渗透率级差介于2.6~10.8时,泡沫均能有效封堵高渗透岩心,使阻力因子维持在36左右,增大了驱替压差与低渗透岩心的产气、产液速度;②岩心中气相饱和度与渗透率存在一定关系,当岩心的渗透率小于2450 mD时,最高气相饱和度随渗透率增加而增大,当渗透率超过2450 mD时,岩心最高气相饱和度在80%左右;③采用高干度泡沫驱可以有效扩大岩心中CO_(2)封存量,渗透率级差为4时,泡沫驱的CO_(2)封存体积较气驱增长219%,当渗透率级差扩大至10.8,CO_(2)封存量能始终维持在较高水平。结论认为,咸水层条件下CO_(2)泡沫驱替实验探究了CO_(2)封存能力变化,提供了非均质储层提高碳封存效率的实验认识,可为非均质咸水层中CO_(2)的地质封存技术优化提供参考和借鉴。 展开更多
关键词 碳中和 co_(2)地质封存 高干度泡沫 咸水层 非均质地层 封存效率
下载PDF
CO_(2)地质封存与利用环境下水泥单矿C_(2)S的腐蚀速率
15
作者 王熹颖 《钻井液与完井液》 CAS 北大核心 2024年第5期646-653,共8页
在CO_(2)地质封存和利用过程中,固井水泥容易与井下的酸性介质CO_(2)发生碳酸化反应,腐蚀固井水泥石造成水泥石力学性能大幅度衰退。针对水泥石单矿C_(2)S在CO_(2)地质封存和利用环境中腐蚀反应速率不清晰的问题,通过SEM、XRD以及TG的... 在CO_(2)地质封存和利用过程中,固井水泥容易与井下的酸性介质CO_(2)发生碳酸化反应,腐蚀固井水泥石造成水泥石力学性能大幅度衰退。针对水泥石单矿C_(2)S在CO_(2)地质封存和利用环境中腐蚀反应速率不清晰的问题,通过SEM、XRD以及TG的测试方法,定量分析C_(2)S腐蚀产物的变化规律。根据腐蚀产物CaCO_(3)的摩尔生成率和非稳态扩散渗透模型拟合得到腐蚀反应产物CaCO_(3)的生成系数α。SEM实验结果表明,腐蚀反应后C_(2)S水泥单矿颗粒的表面均有较大改变,生成了部分腐蚀产物CaCO_(3);XRD结果表明,单矿C_(2)S腐蚀产物CaCO_(3)的晶型主要有方解石和文石;TG测试结果表明,C_(2)S水泥单矿随着腐蚀龄期的增加,腐蚀产物的量均明显增加。拟合结果表明,C_(2)S腐蚀产物生成速率随着温度的升高而增大,90℃下CaCO_(3)腐蚀产物的生成速率系数α最大为54.90。 展开更多
关键词 C_(2)S co_(2)封存与利用 物相定量分析 co_(2)腐蚀反应速率
下载PDF
不同地质体中CO_(2)封存研究进展 被引量:6
16
作者 包琦 叶航 +1 位作者 刘琦 张敏 《低碳化学与化工》 CAS 北大核心 2024年第3期87-96,共10页
碳捕集、利用与封存(CCUS)技术是降低二氧化碳(CO_(2))排放、缓解气候变化问题的重要措施。作为CCUS技术的重要组成部分,CO_(2)地质封存是我国能源工业领域实现碳中和目标的“兜底”技术。常见的CO_(2)封存地质体包括深部咸水层、枯竭... 碳捕集、利用与封存(CCUS)技术是降低二氧化碳(CO_(2))排放、缓解气候变化问题的重要措施。作为CCUS技术的重要组成部分,CO_(2)地质封存是我国能源工业领域实现碳中和目标的“兜底”技术。常见的CO_(2)封存地质体包括深部咸水层、枯竭油气藏、深部不可采煤层和玄武岩等,不同地质体中CO_(2)的封存过程及其机理存在差异。综述了不同地质体中的CO_(2)封存机理、国际国内CO_(2)封存的主要工程实例以及不同地质体中CO_(2)封存潜力的计算方法,并对CO_(2)地质封存的前景进行了展望。 展开更多
关键词 co_(2)地质封存 co_(2)封存机理 地质封存项目 封存潜力计算
下载PDF
CO_(2)捕集、利用和封存在能源行业的应用:全球案例分析和启示 被引量:3
17
作者 薛振乾 谢祥 +3 位作者 马浩铭 孙喆 张凯 陈掌星 《大庆石油地质与开发》 CAS 北大核心 2024年第1期14-21,共8页
为了实现中国21世纪中叶达到碳中和,大规模应用CO_(2)捕获、利用和封存(CCUS)技术可以减少能源行业的温室气体排放。通过对国内外CCUS技术、项目的调研,得出了关于未来CCUS部署的3个见解,这些见解有助于能源行业实现转型。首先,碳源浓... 为了实现中国21世纪中叶达到碳中和,大规模应用CO_(2)捕获、利用和封存(CCUS)技术可以减少能源行业的温室气体排放。通过对国内外CCUS技术、项目的调研,得出了关于未来CCUS部署的3个见解,这些见解有助于能源行业实现转型。首先,碳源浓度较低导致碳捕集效率低,从而导致碳捕集的经济成本较高的问题是目前CCUS项目无法商业化的主要因素,在发展当前的碳捕集技术,提高捕集效率和降低捕集成本的同时也应大力研究空气捕集技术,尤其是在工艺设计和新型吸附材料研发方面,争取实现弯道超车;其次,CO_(2)在油气藏和咸水层的封存与利用应当作为CCUS技术研究的重点,逐步实现大规模推广,并在技术升级和体系完善的基础上推广CO_(2)增强地热、煤层气等其他耦合技术;最后,应当在当前国际上较成熟的碳政策的基础上研究适合中国的激励政策,建立有效的法律法规。论文总结了当前CCUS的关键挑战,并为未来的CCUS研究方向提供了指导方向。 展开更多
关键词 CCUS 碳中和 碳捕集 co_(2)利用 co_(2)地质封存 co_(2)提高油气采收率
下载PDF
双井周期注CO_(2)联合降压法开采天然气水合物分析 被引量:1
18
作者 张逸群 杜红星 +1 位作者 王海柱 李根生 《天然气工业》 EI CAS CSCD 北大核心 2024年第3期199-213,共15页
相较于单纯地封存CO_(2),CO_(2)置换法开采天然气水合物(以下简称水合物)能够满足水合物资源开采和碳封存的双重需求。为确保安全高效开发水合物的同时提高CO_(2)封存率,按照双井周期注入CO_(2)联合降压法开采水合物的思路,以中国南海... 相较于单纯地封存CO_(2),CO_(2)置换法开采天然气水合物(以下简称水合物)能够满足水合物资源开采和碳封存的双重需求。为确保安全高效开发水合物的同时提高CO_(2)封存率,按照双井周期注入CO_(2)联合降压法开采水合物的思路,以中国南海典型水合物藏为研究对象,建立了矿藏尺度水合物注采热—流—固—化四场耦合数值模型,并开展了连续、间歇、循环3类注入开采方案和单井降压开采方案的对比分析,然后模拟分析注CO_(2)辅助水合物降压开采的增产效果,最后对比了不同注入方案的CO_(2)回收和封存情况,探索了水合物法碳封存的可行性。研究结果表明:(1)邻井CO_(2)的注入有助于降低产水量并缓解降压开采引起的地质沉降;(2)间歇注入较循环注入可促进储层中CO_(2)水合物生成,扩大注入井附近的高温区域,有利于生产井附近水合物的分解;(3)连续注入方式有利于分解气体的产出,但双井注采模式降低了甲烷水合物分解程度;(4)双井注采的CO_(2)注入分为快速注入阶段、反转阶段和缓慢注入阶段,其中双井间歇注入方案的CO_(2)注入效率最高。结论认为,双井间歇注入CO_(2)复合降压法能够在安全、高效开采水合物的同时具有相对可观的碳封存效果,是一种实现水合物商业化开采和助力双碳目标实现的潜在方法,研究成果对于天然气水合物开发及CO_(2)地质封存具有理论指导意义。 展开更多
关键词 天然气水合物 降压开采 co_(2) 双井循环注入 产能模拟 碳封存 水合物分解 地质沉降
下载PDF
盐水层地质参数对CO_(2)封存效果的评价 被引量:1
19
作者 张琳琳 赖枫鹏 +1 位作者 董银涛 戴玉婷 《煤炭学报》 EI CAS CSCD 北大核心 2024年第9期3932-3943,共12页
在二氧化碳捕集、利用与封存技术中,盐水层封存CO_(2)由于具有分布面积广和封存潜力大等多重优势,逐渐成为应对全球气候变暖、实现2050年世界净零目标、减少CO_(2)排放的有效方法。为提高盐水层中CO_(2)的封存效果,以国内外现有的相关... 在二氧化碳捕集、利用与封存技术中,盐水层封存CO_(2)由于具有分布面积广和封存潜力大等多重优势,逐渐成为应对全球气候变暖、实现2050年世界净零目标、减少CO_(2)排放的有效方法。为提高盐水层中CO_(2)的封存效果,以国内外现有的相关地质封存项目数据为基础,采用Petrasim软件中的TOUGHREACT/ECO_(2)N模块,选取CO_(2)溶解质量和气态CO_(2)饱和度为评价指标,通过数值模拟方法,从盐溶液体系和储层物性参数2个方面,揭示地层盐水盐度、地层盐水组分、地层压力、地层温度和渗透率5个地质参数对盐水层CO_(2)封存的影响机制,并定量评价CO_(2)封存效果。结果表明:①各地质参数主要通过改变CO_(2)、地层盐水的密度和黏度、CO_(2)溶解度以及CO_(2)–盐水–岩石的化学反应等,进而控制地层流体的溶解度、流动性和传质性;②CO_(2)的溶解度和地层盐水密度分别随盐度的增加而降低、增大,但前者受其影响程度更大,从而盐度对CO_(2)的溶解表现出抑制作用,因此低盐度的盐水层更有助于增加CO_(2)封存量及提高埋存安全性;③根据苏林分类法得到的4种盐溶液组分中,CaCl_(2)水型对应的CO_(2)溶解质量略低于其他3种水型,但整体上不同盐溶液组分对CO_(2)封存效果影响不大;④在CO_(2)溶解度和气液两相黏度比的共同作用下,CO_(2)溶解质量随压力和温度的增大而减少,气态CO_(2)饱和度变化相反;渗透率对气体流动性和运移距离起直接控制作用,因此地层压力和温度越低,渗透率越大的盐水层越有利于CO_(2)封存。 展开更多
关键词 盐水储层 co_(2)地质封存 地质参数 co_(2)溶解质量 气态co_(2)饱和度
下载PDF
CO_(2)增强页岩气开采及地质埋存的三维数值模拟 被引量:1
20
作者 赵鹏 朱海燕 张丰收 《天然气工业》 EI CAS CSCD 北大核心 2024年第4期104-114,共11页
将CO_(2)注入页岩储层中,既可以提高气藏天然气采收率,又可以达到CO_(2)地质埋存的目的,是实现减少碳排放的有效途径之一。页岩储层非均质性强,将CO_(2)注入页岩储层后,储层纵向非均质性对于CO_(2)增强CH_(4)开采效果的影响机理研究还... 将CO_(2)注入页岩储层中,既可以提高气藏天然气采收率,又可以达到CO_(2)地质埋存的目的,是实现减少碳排放的有效途径之一。页岩储层非均质性强,将CO_(2)注入页岩储层后,储层纵向非均质性对于CO_(2)增强CH_(4)开采效果的影响机理研究还存在不足。为此以四川盆地上奥陶统五峰组—下志留统龙马溪组页岩储层为对象,以考虑CO_(2)和CH_(4)竞争吸附的热—流—固多场耦合数值模拟方法为基础,建立了页岩非均质储层CO_(2)增强CH_(4)开采及地质埋存一体化三维数值模型,最后通过CO_(2)驱替CH_(4)室内实验结果验证该数值模拟方法的可靠性。研究结果表明:①当注入井所在层位保持不变时,随着开采井埋深增加,各小层内CH_(4)剩余量呈增加趋势,CO_(2)埋存量表现出逐渐减小的趋势;②当开采井所在层位保持不变时,各小层内CH_(4)的剩余量随注入井埋深的增加而减小,各小层内CO_(2)的埋存量随注采井纵向间距的增加而提高;③增加注采井纵向距离能够提高CH_(4)增产量和CO_(2)埋存量。结论认为,页岩对CO_(2)和CH_(4)有较强的竞争吸附特性,相关过程是一个复杂的热—流—固耦合过程,该基础理论模拟研究对注CO_(2)置换CH_(4)提高页岩气采收率并实现碳封存具有现实意义,且研究认识对今后相关技术的现场应用提供了理论支撑。 展开更多
关键词 co_(2)增强页岩气开采 co_(2)地质埋存 储层非均质性 热—流—固多场耦合三维模型
下载PDF
上一页 1 2 10 下一页 到第
使用帮助 返回顶部