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Demonstration of a small‐scale power generator using supercritical CO_(2) 被引量:1
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作者 Ligeng Li Hua Tian +7 位作者 Xin Lin Xianyu Zeng Yurong Wang Weilin Zhuge Lingfeng Shi Xuan Wang Xingyu Liang Gequn Shu 《Carbon Energy》 SCIE EI CAS CSCD 2024年第4期269-290,共22页
The supercritical CO_(2)(sCO_(2))power cycle could improve efficiencies for a wide range of thermal power plants.The sCO_(2)turbine generator plays an important role in the sCO_(2)power cycle by directly converting th... The supercritical CO_(2)(sCO_(2))power cycle could improve efficiencies for a wide range of thermal power plants.The sCO_(2)turbine generator plays an important role in the sCO_(2)power cycle by directly converting thermal energy into mechanical work and electric power.The operation of the generator encounters challenges,including high temperature,high pressure,high rotational speed,and other engineering problems,such as leakage.Experimental studies of sCO_(2)turbines are insufficient because of the significant difficulties in turbine manufacturing and system construction.Unlike most experimental investigations that primarily focus on 100 kW‐or MW‐scale power generation systems,we consider,for the first time,a small‐scale power generator using sCO_(2).A partial admission axial turbine was designed and manufactured with a rated rotational speed of 40,000 rpm,and a CO_(2)transcritical power cycle test loop was constructed to validate the performance of our manufactured generator.A resistant gas was proposed in the constructed turbine expander to solve the leakage issue.Both dynamic and steady performances were investigated.The results indicated that a peak electric power of 11.55 kW was achieved at 29,369 rpm.The maximum total efficiency of the turbo‐generator was 58.98%,which was affected by both the turbine rotational speed and pressure ratio,according to the proposed performance map. 展开更多
关键词 GENERATOR performance map power generation supercritical co_(2) TURBINE
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Multi-objective optimization and evaluation of supercritical CO_(2) Brayton cycle for nuclear power generation 被引量:1
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作者 Guo-Peng Yu Yong-Feng Cheng +1 位作者 Na Zhang Ping-Jian Ming 《Nuclear Science and Techniques》 SCIE EI CAS CSCD 2024年第2期183-209,共27页
The supercritical CO_(2) Brayton cycle is considered a promising energy conversion system for Generation IV reactors for its simple layout,compact structure,and high cycle efficiency.Mathematical models of four Brayto... The supercritical CO_(2) Brayton cycle is considered a promising energy conversion system for Generation IV reactors for its simple layout,compact structure,and high cycle efficiency.Mathematical models of four Brayton cycle layouts are developed in this study for different reactors to reduce the cost and increase the thermohydraulic performance of nuclear power generation to promote the commercialization of nuclear energy.Parametric analysis,multi-objective optimizations,and four decision-making methods are applied to obtain each Brayton scheme’s optimal thermohydraulic and economic indexes.Results show that for the same design thermal power scale of reactors,the higher the core’s exit temperature,the better the Brayton cycle’s thermo-economic performance.Among the four-cycle layouts,the recompression cycle(RC)has the best overall performance,followed by the simple recuperation cycle(SR)and the intercooling cycle(IC),and the worst is the reheating cycle(RH).However,RH has the lowest total cost of investment(C_(tot))of$1619.85 million,and IC has the lowest levelized cost of energy(LCOE)of 0.012$/(kWh).The nuclear Brayton cycle system’s overall performance has been improved due to optimization.The performance of the molten salt reactor combined with the intercooling cycle(MSR-IC)scheme has the greatest improvement,with the net output power(W_(net)),thermal efficiencyη_(t),and exergy efficiency(η_(e))improved by 8.58%,8.58%,and 11.21%,respectively.The performance of the lead-cooled fast reactor combined with the simple recuperation cycle scheme was optimized to increase C_(tot) by 27.78%.In comparison,the internal rate of return(IRR)increased by only 7.8%,which is not friendly to investors with limited funds.For the nuclear Brayton cycle,the molten salt reactor combined with the recompression cycle scheme should receive priority,and the gas-cooled fast reactor combined with the reheating cycle scheme should be considered carefully. 展开更多
关键词 supercritical co_(2)Brayton cycle Nuclear power generation Thermo-economic analysis Multi-objective optimization Decision-making methods
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Proppant transport in rough fracture networks using supercritical CO_(2)
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作者 Yong Zheng Meng-Meng Zhou +6 位作者 Ergun Kuru Bin Wang Jun Ni Bing Yang Ke Hu Hai Huang Hai-Zhu Wang 《Petroleum Science》 SCIE EI CAS CSCD 2024年第3期1852-1864,共13页
Proppant transport within fractures is one of the most critical tasks in oil,gas and geothermal reservoir stimulation,as it largely determines the ultimate performance of the operating well.Proppant transport in rough... Proppant transport within fractures is one of the most critical tasks in oil,gas and geothermal reservoir stimulation,as it largely determines the ultimate performance of the operating well.Proppant transport in rough fracture networks is still a relatively new area of research and the associated transport mechanisms are still unclear.In this study,representative parameters of rough fracture surfaces formed by supercritical CO_(2) fracturing were used to generate a rough fracture network model based on a spectral synthesis method.Computational fluid dynamics(CFD)coupled with the discrete element method(DEM)was used to study proppant transport in this rough fracture network.To reveal the turning transport mechanism of proppants into branching fractures at the intersections of rough fracture networks,a comparison was made with the behavior within smooth fracture networks,and the effect of key pumping parameters on the proppant placement in a secondary fracture was analyzed.The results show that the transport behavior of proppant in rough fracture networks is very different from that of the one in the smooth fracture networks.The turning transport mechanisms of proppant into secondary fractures in rough fracture networks are gravity-driven sliding,high velocity fluid suspension,and fracture structure induction.Under the same injection conditions,supercritical CO_(2)with high flow Reynolds number still has a weaker ability to transport proppant into secondary fractures than water.Thickening of the supercritical CO_(2)needs to be increased beyond a certain value to have a significant effect on proppant carrying,and under the temperature and pressure conditions of this paper,it needs to be increased more than 20 times(about 0.94 m Pa s).Increasing the injection velocity and decreasing the proppant concentration facilitates the entry of proppant into the branching fractures,which in turn results in a larger stimulated reservoir volume.The results help to understand the proppant transport and placement process in rough fracture networks formed by reservoir stimulation,and provide a theoretical reference for the optimization of proppant pumping parameters in hydraulic fracturing. 展开更多
关键词 Reservoir stimulation CCUS Rough fracture network supercritical co_(2) Proppanttransport
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Effect of Allelochemicals of Chinese-fir root extracted by supercritical CO_2 extraction on Chinese fir 被引量:9
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作者 林思祖 曹光球 +1 位作者 杜玲 王爱萍 《Journal of Forestry Research》 SCIE CAS CSCD 2003年第2期122-126,共5页
Allelochemicals of Chinese-fir root was extracted by technology ofsupercritical CO_2 extraction under orthogonal experiment design, and it was used to analyzeallelopathic activity of Chinese-fir through bioassay of se... Allelochemicals of Chinese-fir root was extracted by technology ofsupercritical CO_2 extraction under orthogonal experiment design, and it was used to analyzeallelopathic activity of Chinese-fir through bioassay of seed germination. The results showed thatas to the available rate of allelochemicals, the pressure and temperature of extraction were themost important factors. The allelochemicals of Chinese-fir root extracted by pure CO_2 and ethanolmixed with CO_2 have different allelopathic activities to seed germination, and the allelochemicalsextracted by ethanol mixed with CO_2 had stronger inhibitory effects on seed germination than thatextracted by pure CO_2. 展开更多
关键词 chinese fir autointoxication supercritical co_2 extraction BIOASSAY SEEDGERMINATION
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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
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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
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适合致密油藏的超临界CO_(2)-气溶性表面活性剂复合吞吐技术 被引量:1
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作者 刘明 蓝加达 +2 位作者 潘兰 李彦婧 刘昊娟 《大庆石油地质与开发》 CAS 北大核心 2024年第1期68-76,共9页
为了进一步提高致密油储层超临界CO_(2)吞吐的开发效果,探索适合致密油藏的超临界CO_(2)-气溶性表面活性剂复合吞吐技术,通过原油黏度实验、油气界面张力实验、最小混相压力实验、原油膨胀系数实验以及超临界CO_(2)-气溶性表面活性剂复... 为了进一步提高致密油储层超临界CO_(2)吞吐的开发效果,探索适合致密油藏的超临界CO_(2)-气溶性表面活性剂复合吞吐技术,通过原油黏度实验、油气界面张力实验、最小混相压力实验、原油膨胀系数实验以及超临界CO_(2)-气溶性表面活性剂复合吞吐模拟实验,评价了不同类型气溶性表面活性剂的性能及其对吞吐采收率的影响。结果表明:气溶性表面活性剂GRS⁃1的综合性能更加突出,随着气溶性表面活性剂质量分数的不断增大,原油黏度、油气界面张力和最小混相压力均呈现出逐渐降低的趋势,而原油体积膨胀系数则逐渐增大,并且岩心的吞吐采收率和入口端压力也呈现出逐渐增大的趋势;随着混合流体注入量的增加以及闷井时间的延长,岩心吞吐采收率和入口端压力均逐渐增大,并且岩心的渗透率越大,吞吐采收率就越高;超临界CO_(2)-气溶性表面活性剂复合吞吐的最佳实验参数为气溶性表面活性剂GRS⁃1的质量分数0.6%、混合流体注入量0.5 PV、闷井时间3 h、吞吐轮次3次。该复合吞吐技术能够显著提高致密油藏的采收率,对高效开发致密油藏具有指导意义。 展开更多
关键词 致密油藏 超临界co_(2) 气溶性表面活性剂 复合吞吐 提高采收率
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SCCO_(2)作用下不同含水性煤孔裂隙结构变化机制 被引量:1
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作者 张小东 靳沙沙 +2 位作者 张瑜 张硕 韩磊 《煤炭学报》 EI CAS CSCD 北大核心 2024年第7期3143-3153,共11页
深部煤层封存CO_(2)增产CH_(4)产出过程中,处于超临界状态的CO_(2)(SCCO_(2))与煤中矿物质发生反应,改变煤的孔隙性,进而影响煤层封存CO_(2)的效果和甲烷增产效果。为发现SCCO_(2)–H_(2)O–煤岩作用对煤中孔隙的影响特征,以焦煤为研究... 深部煤层封存CO_(2)增产CH_(4)产出过程中,处于超临界状态的CO_(2)(SCCO_(2))与煤中矿物质发生反应,改变煤的孔隙性,进而影响煤层封存CO_(2)的效果和甲烷增产效果。为发现SCCO_(2)–H_(2)O–煤岩作用对煤中孔隙的影响特征,以焦煤为研究对象,开展了不同含水条件下的超临界CO_(2)改造煤实验,基于矿物组成和孔隙性测定结果,对比煤中主要矿物质和不同尺度的孔裂隙变化的差异,探讨了不同含水状态下SCCO_(2)流体对孔裂隙性的作用机制。研究表明:①SCCO_(2)作用后,煤体表面粗糙、疏松,且由于矿物溶蚀使得一些裂隙得到贯通,微裂隙连通性增强。②SCCO_(2)流体对煤具有“扩孔”作用,表现为微、小孔含量下降,中、大孔占比升高,也即微、小孔隙向大孔隙的转化,且孔隙连通性改善;进一步发现,萃余煤吸附孔的分形维数稍微增加,粗糙度增大,而渗流孔的分形维数显著降低,复杂性和非均质性降低。③SCCO_(2)对煤中碳酸盐类矿物的溶解性最好,其次是黏土矿物,且随着含水率增加,萃余煤中的碳酸盐矿物占比先增加后减小。SCCO_(2)使干燥基态、饱和水态煤样中碳酸盐矿物显著溶解,有效改善了孔隙结构,且对饱和水态煤样作用效果更好。空气干燥基态煤样经SCCO_(2)作用后,新生成的白云石矿物聚集在孔喉中造成堵孔效应,缩小原有大孔隙尺寸,是引起不同含水性煤孔隙差异性变化的主要原因。 展开更多
关键词 焦煤 孔裂隙结构 含水性 超临界状态的co_(2) co_(2)封存
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页岩油藏注CO_(2)驱孔隙动用特征研究 被引量:1
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作者 张志超 柏明星 杜思宇 《油气藏评价与开发》 CSCD 北大核心 2024年第1期42-47,共6页
CO_(2)在页岩油藏驱油时的孔隙动用特征是评价其应用于提高页岩油藏采收率效果的一项重要指标。因此,开展了超临界CO_(2)驱替页岩岩心室内实验,并以核磁共振(NMR)在线岩心扫描技术为手段对CO_(2)驱页岩油藏的孔隙动用特征和规律进行研... CO_(2)在页岩油藏驱油时的孔隙动用特征是评价其应用于提高页岩油藏采收率效果的一项重要指标。因此,开展了超临界CO_(2)驱替页岩岩心室内实验,并以核磁共振(NMR)在线岩心扫描技术为手段对CO_(2)驱页岩油藏的孔隙动用特征和规律进行研究。结果表明,超临界CO_(2)非混相驱油主要动用页岩中孔隙半径在0.1~3.0µm范围内的油,而此过程中小于0.008µm孔隙半径内的油量反而增加,分析原因主要是CO_(2)在页岩层中通过压差和扩散作用将大孔隙内页岩油带入小孔隙中并发生吸附滞留,在驱替时间5 h后,CO_(2)驱替页岩油采收率达到35.7%,驱油效果较好。 展开更多
关键词 超临界co_(2) 页岩油 核磁共振 孔隙动用特征 采收率
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Fundamental study and utilization on supercritical CO_(2) fracturing developing unconventional resources:Current status,challenge and future perspectives 被引量:8
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作者 Bing Yang Hai-Zhu Wang +5 位作者 Gen-Sheng Li Bin Wang Liang Chang Gang-Hua Tian Cheng-Ming Zhao Yong Zheng 《Petroleum Science》 SCIE CAS CSCD 2022年第6期2757-2780,共24页
Under the fact that considerable explo ration and production of unconventional re sources and wo rsening global climate,reducing carbon emission and rationally utilizing carbon resources have been drawn increasing att... Under the fact that considerable explo ration and production of unconventional re sources and wo rsening global climate,reducing carbon emission and rationally utilizing carbon resources have been drawn increasing attention.Supercritical CO_(2)(SC-CO_(2)) has been proposed as anhydrous fracturing fluid to develop unconventional reservoirs,since its advantages of reducing water consumption,reservoir contamination etc.Well understanding of SC-CO_(2)fracturing mechanism and key influencing factors will exert significant impact on the application of this technology in the field.In this paper,the fundamental studies on SC-CO_(2)fracturing from the aspects of laboratory experiment and simulation are reviewed.The fracturing experimental setups,fracture monitoring and characterizing methods,unconventional formation categories,numerical simulation approaches,fracturing mechanism and field application etc.,are analyzed.The fundamental study results indicate that compared with conventional hydraulic fracturing,SC-CO_(2)fracturing can reduce fracture initiation pressure and easily induce complex fracture networks with multiple branches.The field test further verifies the application prospect and the possibility of carbon storage.However,due to the limitation of reservoir complexity and attributes of SC-CO_(2),massive challenges will be encountered in SC-CO_(2)fracturing.According to the current research status,the limitations in basic research and field application are summarized,and the future development direction of this technology and relevant suggestions are proposed. 展开更多
关键词 Unconventional resources supercritical co_(2)fracturing Experiment and numerical simulation Fracture initiation and propagation
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Characteristics and mechanisms of supercritical CO_(2) flooding under different factors in low-permeability reservoirs 被引量:6
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作者 Zheng Chen Yu-Liang Su +2 位作者 Lei Li Fan-Kun Meng Xiao-Mei Zhou 《Petroleum Science》 SCIE CAS CSCD 2022年第3期1174-1184,共11页
In recent years,supercritical CO_(2)flooding has become an effective method for developing lowpermeability reservoirs.In supercritical CO_(2)flooding different factors influence the mechanism of its displacement proce... In recent years,supercritical CO_(2)flooding has become an effective method for developing lowpermeability reservoirs.In supercritical CO_(2)flooding different factors influence the mechanism of its displacement process for oil recovery.Asynchronous injection-production modes can use supercritical CO_(2)to enhance oil recovery but may also worsen the injection capacity.Cores with high permeability have higher oil recovery rates and better injection capacity,however,gas channeling occurs.Supercritical CO_(2)flooding has a higher oil recovery at high pressure levels,which delays the occurrence of gas channeling.Conversely,gas injection has lower displacement efficiency but better injection capacity at the high water cut stage.This study analyzes the displacement characteristics of supercritical CO_(2)flooding with a series of experiments under different injection and production parameters.Experimental results show that the gas breakthrough stage has the fastest oil production and the supercritical CO_(2)injection capacity variation tendency is closely related to the gas-oil ratio.Further experiments show that higher injection rates represent significant ultimate oil recovery and injection index,providing a good reference for developing low-permeability reservoirs. 展开更多
关键词 Low-permeability reservoir supercritical co_(2)flooding Influence mechanism Enhanced oil recovery Injection capacity
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超临界CO_(2)管道止裂韧性预测模型研究 被引量:1
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作者 曹宇光 甄莹 +2 位作者 刘媛媛 张振永 白芳 《石油机械》 北大核心 2024年第7期28-35,共8页
碳中和目标下,超临界态CO_(2)管道输送已成为碳捕集利用与封存(CCUS)技术发展的必然趋势。然而,目前超临界CO_(2)管道止裂控制体系尚未构建,管材止裂韧性难以预测,成为限制其广泛应用的瓶颈问题之一。针对该问题,通过归纳国内外相关文... 碳中和目标下,超临界态CO_(2)管道输送已成为碳捕集利用与封存(CCUS)技术发展的必然趋势。然而,目前超临界CO_(2)管道止裂控制体系尚未构建,管材止裂韧性难以预测,成为限制其广泛应用的瓶颈问题之一。针对该问题,通过归纳国内外相关文献及规范标准,对超临界CO_(2)管道止裂控制研究进展及最新标准体系进行了简要综述;在系统收集已开展CO_(2)管道全尺寸爆破试验信息及数据的基础上,对现有止裂韧性预测模型适用性进行了讨论,由此确定了CO_(2)管道止裂韧性预测模型修正形式,并对不同模型适用范围及预测结果进行了讨论。研究结果表明,建立的修正模型解决了传统止裂预测模型过于激进的问题,同时降低了DNV推荐方法的保守性。建议将修正模型与DNN预测方法相结合,以使管材韧性值处于止裂区域;同时开展高效准确的CO_(2)管道裂纹动态扩展数值模拟。所得结果可为我国CO_(2)管道止裂设计提供指导。 展开更多
关键词 超临界co_(2) 管道输送 延性断裂 双曲线模型 断裂 韧性 夏比冲击功 止裂控制
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煤中超临界CO_(2)解吸滞后机理及其对地质封存启示
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作者 刘操 闫江伟 +4 位作者 赵春辉 钟福平 贾天让 刘小磊 张航 《煤炭学报》 EI CAS CSCD 北大核心 2024年第7期3154-3166,共13页
将CO_(2)注入不可采煤层地质封存既是降低温室气体效应最理想选择之一,也是煤炭工业降低CO_(2)排放、实现低碳化可持续发展的必由之路,然而,煤层CO_(2)地质封存悬而未决的关键问题是:“注入煤层中的CO_(2)到底能否长期停留而安全封存?... 将CO_(2)注入不可采煤层地质封存既是降低温室气体效应最理想选择之一,也是煤炭工业降低CO_(2)排放、实现低碳化可持续发展的必由之路,然而,煤层CO_(2)地质封存悬而未决的关键问题是:“注入煤层中的CO_(2)到底能否长期停留而安全封存?”。鉴于此,在弄清煤体CO_(2)解吸滞后规律的基础上,揭示超临界CO_(2)解吸滞后机理,建立煤层CO_(2)地质封存量化模型,探讨利用解吸滞后实现煤层CO_(2)长期安全封存。研究表明:煤中超临界态CO_(2)解吸滞后程度大于亚临界态CO_(2),在超临界阶段,吸附与解吸等温线形成近似“平行线”的稳定滞后特征;解吸滞后的本质原因是煤中微纳米级亲水性孔隙形成弯液面、产生强大毛细压力、渗吸液态水、截断并固定超临界CO_(2)流体、最终形成了CO_(2)残余封存,例如,煤中直径40~10 nm圆柱形无机孔隙可产生7.30~29.12 MPa毛细压力,足以封堵超临界态CO_(2);以九里山煤样解吸等温线数据为例,采用基于煤层CO_(2)解吸滞后的地质封存量化模型,评估出900~1500 m深部二1煤层封存总量稳定在35~37 m^(3)/t,其中,吸附封存约占80%,残余封存约占15%,而结构封存仅占5%;解吸滞后启示应尽可能采取措施提高煤层残余封存CO_(2)比例,原因是毛细堵塞的残余封存CO_(2)较围岩密封的游离和吸附CO_(2)更安全且没有泄露风险,煤层灰分、水分、孔隙尺寸和形貌等物性参数是影响残余封存效率的主要因素。 展开更多
关键词 co_(2)地质封存 超临界co_(2) 解吸滞后 残余封存 毛细压力 地质封存量化模型
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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
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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
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Surface characteristics analysis of fractures induced by supercritical CO_(2)and water through three-dimensional scanning and scanning electron micrography 被引量:7
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作者 Hao Chen Yi Hu +4 位作者 Jiawei Liu Feng Liu Zheng Liu Yong Kang Xiaochuan Wang 《Journal of Rock Mechanics and Geotechnical Engineering》 SCIE CSCD 2021年第5期1047-1058,共12页
Morphology of hydraulic fracture surface has significant effects on oil and gas flow,proppant migration and fracture closure,which plays an important role in oil and gas fracturing stimulation.In this paper,we analyze... Morphology of hydraulic fracture surface has significant effects on oil and gas flow,proppant migration and fracture closure,which plays an important role in oil and gas fracturing stimulation.In this paper,we analyzed the fracture surface characteristics induced by supercritical carbon dioxide(SC-CO_(2))and water in open-hole and perforation completion conditions under triaxial stresses.A simple calculation method was proposed to quantitatively analyze the fracture surface area and roughness in macro-level based on three-dimensional(3D)scanning data.In micro-level,scanning electron micrograph(SEM)was used to analyze the features of fracture surface.The results showed that the surface area of the induced fracture increases with perforation angle for both SC-CO_(2)and water fracturing,and the surface area of SC-CO_(2)-induced fracture is 6.49%e58.57%larger than that of water-induced fracture.The fractal dimension and surface roughness of water-induced fractures increase with the increase in perforation angle,while those of SC-CO_(2)-induced fractures decrease with the increasing perforation angle.A considerable number of microcracks and particle peeling pits can be observed on SC-CO_(2)-induced fracture surface while there are more flat particle surfaces in water-induced fracture surface through SEM images,indicating that fractures tend to propagate along the boundary of the particle for SC-CO_(2)fracturing while water-induced fractures prefer to cut through particles.These findings are of great significance for analyzing fracture mechanism and evaluating fracturing stimulation performance. 展开更多
关键词 supercritical carbon dioxide(sc-co_(2))fracturing Quantitative characterization of surface features Surface roughness and fractal dimension Three-dimensional(3D)scanning Scanning electron micrograph(SEM)
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超临界CO_(2)作用下无烟煤孔隙结构演化时间效应规律
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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
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Effect of proppant pumping schedule on the proppant placement for supercritical CO_(2) fracturing 被引量:2
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作者 Yong Zheng Hai-Zhu Wang +4 位作者 Ying-Jie Li Gang-Hua Tian Bing Yang Cheng-Ming Zhao Ming-Sheng Liu 《Petroleum Science》 SCIE CAS CSCD 2022年第2期629-638,共10页
Supercritical CO_(2)fracturing is a potential waterless fracturing technique which shows great merits in eliminating reservoir damage,improving shale gas recovery and storing CO_(2)underground.Deep insight into the pr... Supercritical CO_(2)fracturing is a potential waterless fracturing technique which shows great merits in eliminating reservoir damage,improving shale gas recovery and storing CO_(2)underground.Deep insight into the proppant-transport behavior of CO_(2)is required to better apply this technique in the engineering field.In the present paper,we adopted a coupled Computational Fluid Dynamics and Discrete Element Method(CFD-DEM)approach to simulate the proppant transport in a fracking fracture with multiple perforation tunnels.Previous experiments were first simulated to benchmark the CFD-EDM approach,and then various pumping schedules and injection parameters(injection location,multi-concentration injection order,multi-density injection order and injection temperature)were investigated to determine the placement characteristics of proppant.Results indicate that the swirling vortex below the injection tunnels dominates the proppant diffusion in the fracture.The velocity of fluid flow across the proppant bank surface in multi-concentration injection shows a positive correlation with the proppant concentration.Injecting high-density proppant first can promote the transportation of low-density proppant injected later in the fracture to a certain extent.Decreasing the initial injection temperature of supercritical CO_(2)slurry helps enhance the particle-driving effect of fluid and improve the performance of supercritical CO_(2)in carrying proppant. 展开更多
关键词 supercritical co_(2)fracturing Proppant placement CFD-DEM Unconventional natural gas co_(2)utilization
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超临界CO_(2)脉动压裂-渗流耦合试验系统研制与应用
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作者 刘佳佳 张云龙 +2 位作者 聂子硕 高志扬 许文松 《煤田地质与勘探》 EI CAS CSCD 北大核心 2024年第6期12-20,共9页
【目的】为了有效强化煤层气抽采效果,将脉动压裂与超临界CO_(2)压裂相结合,提出了利用超临界CO_(2)脉动压裂煤(岩)的新思路。【方法】自主研发了超临界CO_(2)脉动压裂-渗流耦合真三轴试验系统,介绍了该试验系统的主要结构、特点和功能... 【目的】为了有效强化煤层气抽采效果,将脉动压裂与超临界CO_(2)压裂相结合,提出了利用超临界CO_(2)脉动压裂煤(岩)的新思路。【方法】自主研发了超临界CO_(2)脉动压裂-渗流耦合真三轴试验系统,介绍了该试验系统的主要结构、特点和功能,然后开展了室内真三轴条件下超临界CO_(2)脉动压裂-渗流试验及超临界CO_(2)脉动压裂-声发射监测试验。该系统结合独立伺服系统与中央数字系统控制三向应力,采用双泵型恒速恒压泵脉动给压,具有高精度、全过程、真三轴、承载高温、高压及高应力的特点。【结果和结论】试验结果表明:超临界CO_(2)脉动压裂-渗流耦合真三轴试验系统可以实现良好的脉动压裂功能。超临界CO_(2)脉动压裂后,煤体渗透率较压裂前呈增大趋势,增大了2~9倍,且煤体渗透率皆呈现良好的指数变化规律。在声发射-超临界CO_(2)脉动压裂时期,煤体产生了新的裂隙通道,该通道由压裂孔中心直接贯穿至煤样表面,且可观测到超临界CO_(2)流体直接从煤中喷出,故超临界CO_(2)脉动压裂具有一定的扩展和连通裂隙的作用,能够有效提高煤层气的抽采效果。研究成果为强化深部低渗煤层增透技术提供了一定的试验支撑。 展开更多
关键词 超临界co_(2) 脉动压裂 真三轴 渗流特性 声发射
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MICROPOROUS PVDF-HFP-BASED POLYMER MEMBRANES FORMED FROM SUPERCRITICAL CO_2 INDUCED PHASE SEPARATION 被引量:2
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作者 Cao, Jian-hua Zhu, Bao-ku +2 位作者 Zuo, Dan-ying Xu, You-yi Li, Ji-ding 《Chinese Journal of Polymer Science》 SCIE CAS CSCD 2008年第1期13-21,共9页
Microporous poly(vinylidene fluoride-co-hexafluoropropylene)(PVDF-HFP)membranes following supercritical CO_2 induced phase separation process were prepared using four solvents.The solid electrolytes of PVDF-HFP were f... Microporous poly(vinylidene fluoride-co-hexafluoropropylene)(PVDF-HFP)membranes following supercritical CO_2 induced phase separation process were prepared using four solvents.The solid electrolytes of PVDF-HFP were formed by microporous PVDF-HFP membranes filled and swollen by a liquid electrolyte.The effect of the solvents on the morphology and structure,electrolyte absorptions and lithium ionic conductivity of the activated membranes were investigated.It was approved that all the membrane had the similar... 展开更多
关键词 Poly(vinylidene fluoride-co-hexafluoropropylene) Microporous membrane coNDUCTIVITY supercritical co_2
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超临界CO_(2)对致密碳酸盐岩力学特性影响
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作者 苟波 王琨 +2 位作者 李骁 詹立 刘超 《西南石油大学学报(自然科学版)》 CAS CSCD 北大核心 2024年第2期65-76,共12页
采用超临界CO_(2)破致密碳酸盐岩具有破裂压力低,易形成复杂缝特点,但其作用的力学机理尚未清晰。选用马家沟组致密白云岩样,采用高温高压超临界CO_(2)饱和流体法,研究了岩样在超临界CO_(2)+地层水的流体中浸泡不同时间后的物性、声波... 采用超临界CO_(2)破致密碳酸盐岩具有破裂压力低,易形成复杂缝特点,但其作用的力学机理尚未清晰。选用马家沟组致密白云岩样,采用高温高压超临界CO_(2)饱和流体法,研究了岩样在超临界CO_(2)+地层水的流体中浸泡不同时间后的物性、声波响应、岩石力学特性和破裂形态特征。结果表明,随着浸泡时间增加,化学溶蚀作用引起溶蚀孔径增大,岩样孔隙度、渗透率增加,而声波速度、动态和静态岩石力学参数均下降;当浸泡时间大于1.0 d后,岩样物性参数增大和力学强度降低明显;随着浸泡时间增加,岩样破裂形态由单一低角度剪切缝向高角度剪切缝、共轭缝和剪切、张型复合缝等复杂形态发展;压裂短时间内(小于1.0 d)超临界CO_(2)+地层水形成的弱酸对岩石力学强度劣化程度有限。 展开更多
关键词 致密碳酸盐岩 超临界co_(2) 前置酸压 力学强度 破裂形态
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不同流向上小流道加热管内超临界CO_(2)的压降特性
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作者 王磊 曹雄金 +2 位作者 罗凯 王艳 费华 《化工进展》 EI CAS CSCD 北大核心 2024年第2期830-843,共14页
针对不同流动方向上超临界CO_(2)流体在小流道加热管径为0.75mm内的压降特性进行了实验研究。结果表明,不同流动(水平流动、垂直向上流动以及垂直向下流动)方向上,实验总压降、摩擦压降以及加速度压降均随着系统压力的升高而逐渐减小,... 针对不同流动方向上超临界CO_(2)流体在小流道加热管径为0.75mm内的压降特性进行了实验研究。结果表明,不同流动(水平流动、垂直向上流动以及垂直向下流动)方向上,实验总压降、摩擦压降以及加速度压降均随着系统压力的升高而逐渐减小,而随着质量流量的增大、加热功率以及进口温度的升高而增大。然而,在垂直流动方向上重力压降随着系统压力的升高以及质量流量的增大而逐渐增大,但随着加热功率以及进口温度的升高而逐渐减小。当系统压力、质量流量、加热功率以及进口温度保持恒定时,不同流动方向上超临界CO_(2)流体的摩擦压降均在实验总压降中所占有的比例最大,而重力压降在实验总压降中所占有的比例最小。通过两种测试管径的压降数据比较可知,超临界CO_(2)流体在不同流动方向上实验总压降的变化趋势始终保持一致,并且小管径的实验总压降远大于大管径的实验总压降,从而说明测试管径的尺寸大小对实验总压降的变化有着显著影响。 展开更多
关键词 超临界co_(2) 不同流动方向 总压降 摩擦压降 加速度压降 重力压降
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