作者:罗超;贾爱林;魏铁军;郭建林;何东博;闫海军; 时间:2016-01-01 点击数:
罗超;贾爱林;魏铁军;郭建林;何东博;闫海军;
1:中国石油勘探开发研究院
摘要(Abstract):
以鄂尔多斯盆地子洲地区山2段咸水层为例,综合测井、岩心分析和薄片观察等资料,考虑CO_2埋存有效性和埋存稳定性,对试验区CO_2地质埋存可行性及埋存潜力进行评价;分析子洲地区山2—盒8段沉积相类型及时空演化规律,明确CO_2埋存地质体的储层岩石学、微观孔隙空间及储层物性分布特征,评价试验区盖层分布特征、断裂发育规律;结合试验区矿化度、水化学成分分析结果,认定试验区山2—盒8段具备注入CO_2并进行地质埋存的有利储盖条件。Z28-43典型井区的地质模型计算结果表明,试验区CO_2有效埋存量为2.48×10~6 t,为试验区后续的CO_2埋存研究奠定地质基础。
关键词(KeyWords):地质模型;有效性;稳定性;CO2埋存;咸水层;子洲地区;鄂尔多斯盆地
Abstract:
Keywords:
基金项目(Foundation):国家重点基础研究发展计划(973计划)项目(2011CB707303);; 国家科技重大专项(2011ZX05015)
作者(Author):罗超;贾爱林;魏铁军;郭建林;何东博;闫海军;
Email:
参考文献(References):
[1]刘延锋,李小春,方志明,等.中国天然气田CO2储存容量初步评估[J].岩土力学,2006,27(12):2277-2281.Liu Yanfeng,Li Xiaochun,Fang Zhiming,et al.Preliminary estimation of CO2storage capacity in gas fields in China[J].Rock and Soil Mechanics,2006,27(12):2277-2281.
[2]杨永智,沈平平,宋新民,等.盐水层温室气体地质埋存机理及潜力计算方法评价[J].吉林大学学报:地球科学版,2009,39(4):744-748.Yang Yongzhi,Shen Pingping,Song Xinmin,et al.Greenhouse gas geo-sequestration mechanism and capacity evaluation in aquifer[J].Geological Journal of Jilin University:Earth Science Edition,2009,39(4):744-748.
[3]Senior B,Chen W Y,Gibbins J,et al.Carbon capture and storage in China-mainfindings from China-UK near zero emissions coal(NZEC)initiative[J].Energy Procedia,2011,4:5956-6021.
[4]Civan F,Rai C S,Sondergeld C H.Shale-gas permeability and diffusivity inferred by improved formulation of relevant retention and transport mechanisms[J].Transp Porous Media,2011,86:925-944.
[5]Kang S M,Fathi E,Ambrose R J,et al.Carbon dioxide storage capacity of organic-rich shales[J].SPE,2011,16:842-855.
[6]孙扬,杜志敏,孙雷,等.CO2的埋存与提高天然气采收率的相行为[J].天然气工业,2012,32(5):39-42.Sun Yang,Du Zhimin,Sun Lei,et al.Phase behavior of CO2sequestration and the enhanced natural gas recovery[J].Natural Gas Industry,2012,32(5):39-42.
[7]Chadwick A,Arts R,Bernstone C,et al.Best practice for the storage of CO2in saline aquifers-observations and guidelines from the SACS and CO2store projects[M].Nottingham:British Geological Survey,2007.
[8]Wappel D,Gronald G,Kalb R,et al.Ionic liquids for post-combustion CO2absorption[J].Int J Greenhouse Gas Control,2010,4(3):486-494.
[9]Ghaderi S M,Keith D W,Lavoie R,et al.Evolution of hydrogen sulfide in sour saline aquifers during carbon dioxide sequestration[J].International Journal of Greenhouse Gas Control,2011,5:347-355.
[10]许志刚,陈代钊,曾荣树,等.我国吉林油田大情字井区块CO2地下埋存试验区地质埋存格架[J].地质学报,2009,83(6):875-878.Xu Zhigang,Chen Daizhao,Zeng Rongshu,et al.Geological storage framework of CO2Subsurface burial trial area of Daqingzijing block in the Jilin oilfield[J].Acta Geologica Sinica,2009,83(6):875-878.
[11]Muhammad Syukri,Li Hua,Xin Hua,et al.A review of carbon dioxide capture and utilization by membrane integrated microalgal cultivation processes[J].Renewable and Sustainable Energy Reviews,2011,15:4002-4014.
[12]Kuramochi Takeshi,Ramírez Andrea,Turkenburg Wim,et al.Comparative assessment of CO2capture technologies for carbon-intensive industrial processes[J].Progress in Energy and Combustion Science,2012,38:87-112.
[13]Mikkelsen M,Jrgensen M,Krebs F C.The teraton challenge:A review of fixation and transformation of carbon dioxide[J].Energy Environ Sci,2010,3(1):43-81.
[14]De Lary L,Loschetter A,Bouca O,et al.Assessing health impacts of CO2leakage from a geological storage site into buildings:Role of attenuation in the unsaturated zone and building foundation[J].Inter J Greenh Gas Control,2012,9:322-33.
[15]任韶然,张莉,张亮.CO2地质埋存:国外示范工程及其对中国的启示[J].中国石油大学学报:自然科学版,2010,34(1):93-98.Ren Shaoran,Zhang Li,Zhang Liang.Geological storage of CO2:Overseas demonstration projects and its implications to China[J].Journal of China University of Petroleum:Edition of Natural Science,2010,34(1):93-98.
[16]Gunter W D,Perkins E H,Mccann T J.Aquifer disposal of CO2-rich gases reaction design for added capacity[J].Energy Conversion and Management,1993,34(9-11):941-948.
[17]许志刚,陈代钊,曾荣树,等.CO2地下地质埋存原理和条件[J].西南石油大学学报:自然科学版,2009,31(1):91-97.Xu Zhigang,Chen Daizhao,Zeng Rongshu,et al.The theory and conditions of geological storage of CO2[J].Journal of Southwest Petroleum University:Science&Technology Edition,2009,31(1):091-097.
[18]杨华,付金华,刘新社,等.鄂尔多斯盆地上古生界致密气成藏条件与勘探开发[J].石油勘探与开发,2012,39(3):295-303.Yang Hua,Fu Jinhua,Liu Xinshe,et al.Accumulation conditions and exploration and development of tight gas in the upper Paleozoic of the Ordos basin[J].Petroleum Exploration and Development,2012,39(3):295-303.
[19]李熙喆,张满郎,谢武仁,等.鄂尔多斯盆地上古生界层序格架内的成岩作用[J].沉积学报,2007,25(6):923-933.Li Xizhe,Zhang Manlang,Xie Wuren,et al.The diagenesis in sequence stratigraphic framework of the upper Paleozoic,Ordos basin[J].Acta Sedimentologica Sinica,2007,25(6):923-933.
[20]安文宏,杨文敬,石小虎,等.子洲气田中二叠世山23期沉积相再认识[J].西安石油大学学报:自然科学版,2014,29(5):20-27.An Wenhong,Yang Wenjing,Shi Xiaohu,et al.Recognition of sedimentary facies of the third submember of the second member of Middle Permian Shanxi formation(Shan 2-3)in Zizhou gas field[J].Journal of Xi'an Shiyou University:Natural Science Edition,2014,29(5):20-27.
[21]刑厚松,肖红平,孙粉锦,等.鄂尔多斯盆地中东部下二叠统山西组二段沉积相[J].石油实验地质,2008,30(4):345-351.Xing Housong,Xiao Hongping,Sun Fenjin,et al.Sedimentary facies of Member 2of Shanxi formation of lower Permian in the middle-eastern Ordos basin[J].Petroleum Geology&Experiment,2008,30(4):345-351.
[22]赵丹枫,赵靖舟,陈莹.鄂尔多斯盆地榆林—子洲地区山2气藏成藏特征[J].天然气地球科学,2013,24(2):320-328.Zhao Danfeng,Zhao Jingzhou,Chen Ying.An analysis on the characteristics of the Shan2formation gas pools in Yulin-Zizhou area of Ordos basin[J].Natural Gas Geoscience,2013,24(2):320-328.
[23]付金华,魏新善,石晓英.鄂尔多斯盆地榆林气田天然气成藏地质条件[J].天然气工业,2005,25(4):9-11.Fu Jinhua,Wei Xinshan,Shi Xiaoying.Gas reservoir formation geological conditions of Yulin gas field in Ordos basin[J].Natural Gas Industry,2005,25(4):9-11.
[24]金超,曾荣树,田兴有.松辽盆地南部保康体系上白垩统CO2埋存条件与潜力[J].地球科学:中国地质大学学报,2013,38(6):1229-1239.Jin Chao,Zeng Rongshu,Tian Xingyou.CO2storage conditions and capacity of upper Cretaceous series in Baokang sedimentary system in the southwest of Songliao basin[J].Earth Science:Journal of China University of Geosciences,2013,38(6):1229-1239.
[25]郑菲,施小清,吴吉春,等.苏北盆地盐城组咸水层CO2地质封存泄漏风险的全局敏感性分析[J].高校地质学报,2012,18(2):232-238.Zheng Fei,Shi Xiaoqing,Wu Jichun,et al.Global sensitivity analysis of leakage risk for CO2geological sequestration in the Saline aquifer of Yancheng formation in Subei basin[J].Geological Journal of China Universities,2012,18(2):232-238.
[26]谈玉明,任来义,张洪安,等.深层气泥岩盖层封闭能力的综合评价——以东濮凹陷杜桥白地区沙河街组三段泥岩盖层为例[J].石油与天然气地质,2003,24(2):191-195.Tan Yuming,Ren Laiyi,Zhang Hongan,et al.Comprehensive evaluation of sealing capacity of claystone in deep gas reservoir:An example of Es3claystone caprock in Duqiaobai area in Dongpu depression[J].Oil&Gas Geology,2003,24(2):191-195.
[27]王晓梅.鄂尔多斯盆地上古生界流体赋存特征及成藏机制[D].西安:西北大学,2013.Wang Xiaomei.Occurrence characteristics and accumulation mechanism of the fluids in upper Paleozoic natural gas reservoirs,the Ordos basin[D].Xi'an:Northwest University,2013.
[28]王晓梅,赵靖舟,刘新社,等.苏里格气田西区致密砂岩储层地层水分布特征[J].石油与天然气地质,2012,33(5):802-810.Wang Xiaomei,Zhao Jingzhou,Liu Xinshe,et al.Distribution of formation water in tight sandstone reservoirs of western Sulige gas field,Ordos basin[J].Oil&Gas Geology,2012,33(5):802-810.
[29]张洋,成建梅,徐付桥,等.陆相沉积盆地咸水层CO2埋存场地选址若干问题探讨[J].安全与环境工程,2013,20(5):46-52.Zhang Yang,Cheng Jianmei,Xu Fuqiao,et al.Discussion on several issues about site selection for CO2geological storage in Saline aquifers of continental sedimentary basins[J].Safety and Environmental Engineering,2013,20(5):46-52.
[30]郑菲,施小清,吴吉春,等.深部咸水层CO2地质封存数值模拟参数的全局敏感性分析——以苏北盆地盐城组为例[J].吉林大学学报:地球科学版,2014,44(1):310-318.Zheng Fei,Shi Xiaoqing,Wu Jichun,et al.Global parametric sensitivity analysis of numerical simulation for CO2geological sequestration in saline aquifers:A case study of Yancheng formation in Subei basin[J].Journal of Jilin University:Earth Science Edition,2014,44(1):310-318.
[31]李义连,房琦,柯怡兵,等.高盐度卤水对CO2地质封存的影响:以江汉盆地潜江凹陷为例[J].地球科学:中国地质大学学报,2012,37(2):283-288.Li Yilian,Fang Qi,Ke Yibing,et al.Effect of high salinity on CO2geological storage:A case study of Qianjiang depression in Jianghan basin[J].Earth Science:Journal of China University of Geosciences,2012,37(2):283-288.
[32]胡丽莎,常春,于青春.鄂尔多斯盆地山西组地下咸水CO2溶解能力[J].地球科学:中国地质大学学报,2012,37(2):301-306.Hu Lisha,Chang Chun,Yu Qingchun.CO2solubility in Shanxi formation water of Ordos basin[J].Earth Science:Journal of China University of Geosciences,2012,37(2):301-306.
[33]李海燕,高阳,王万福,等.南堡凹陷CO2在咸水层中的矿化封存机理[J].东北石油大学学报,2014,38(3):94-102.Li Haiyan,Gao Yang,Wang Wanfu,et al.Experimental study on mineralization storage mechanism of CO2in saline acquifers of Nanpu depression[J].Journal of Northeast Petroleum University,2014,38(3):94-102.
[34]窦伟坦,刘新社,王涛.鄂尔多斯盆地苏里格气田地层水成因及气水分布规律[J].石油学报,2010,31(5):767-773.Dou Weitan,Liu Xinshe,Wang Tao.The origin of formation water and the regularity of gas and water distribution for the Sulige gas field,Ordos basin[J].Acta Petrolei Sinica,2010,31(5):767-773.
[35]杨胜来,魏俊之.油层物理学[M].北京:石油工业出版社,2010.Yang Shenglai,Wei Junzhi.Reservoir physics[M].Beijing:Petroleum Industry Press,2010.
[36]王运所,许化政,王传刚,等.鄂尔多斯盆地上古生界地层水分布与矿化度特征[J].石油学报,2010,31(5):748-753.Wang Yunsuo,Xu Huazheng,Wang Chuangang.Characteristics of the salinity and distribution of the Neopaleozoic formation water in Ordos basin[J].Acta Petrolei Sinica,2010,31(5):748-753.
[37]沈平平,廖新维,刘庆杰.二氧化碳在油藏中埋存量计算方法[J].石油勘探与开发,2009,36(2):216-220.Shen Pingping,Liao Xinwei,Liu Qingjie.Methodology for estimation of CO2storage capacity in reservoirs[J].Petroleum Exploration and Development,2009,36(2):216-220.
[38]张亮,任韶然,王瑞和,等.南海西部盐水层CO2埋存潜力评估[J].岩土力学,2010,31(4):1238-1242.Zhang Liang,Ren Shaoran,Wang Ruihe,et al.Estimation of CO2storage capacity in saline acquifers in west of South China Sea[J].Rock and Soil Mechanics,2010,31(4):1238-1242.
[39]姜凤光,胡永乐.二氧化碳驱地下流体相态特征研究[J].特种油气藏,2014,21(6):90-92.Jiang Fengguang,Hu Yongle.Study on phase features of subsurface fluids during CO2flooding[J].Special Oil and Gas Reservoir,2014,21(6):90-92.
[40]刑宝荣.辫状河储层地质知识库构建方法——以大庆长垣油田喇萨区块葡一组储层为例[J].东北石油大学学报,2014,38(6):46-54.Xing Baorong.Establishment of the braided river reservoir geology bank and its application:Daqing Changyuan oilfield La-Sa piece of PuⅠas an example[J].Journal of Northeast Petroleum University,2014,38(6):46-54.
[41]张强,许少华,于文涛,等.粒子群算法在克里金三维地质建模中的应用[J].大庆石油学院学报,2011,35(1):85-90.Zhang Qiang,Xu Shaohua,Yu Wentao,et al.Application of particle swarm optimization of Kriging three-dimensional geological modeling[J].Journal of Daqing Petroleum Institute,2011,35(1):85-90.
[42]张继芬,田芳,吴宫.扇三角洲沉积模式及储层地质模型——以辽河断陷锦91块于楼油层为例[J].大庆石油学院学报,1998,22(1):11-13.Zhang Jifen,Tian Fang,Wu Gong.Depositional model and reservoir geological model of fan delta:A case study on Yulou oil-bearing sets,Jin 91block,Liaohe fault basin[J].Journal of Daqing Petroleum Institute,1998,22(1):11-13.
[43]邓万友.相控参数场随机建模方法及其应用[J].大庆石油学院学报,2007,31(6):28-32.DengWanyou.Thefacies-controllingparameterfieldstochasticsimulationmethodanditsapplication[J].Journal of Daqing Petroleum Institute,2007,31(6):28-32.
[44]Bachu S.Comparison between methodologies recommended for estimation of CO2storage capacity in geological media by the CSLF task force on CO2storage capacity estimation and the USDOE capacity and fairways subgroup of the regional carbon sequestration partnerships program[C].Technical Group(TG)Carbon Sequestration Leadership Forum(CSLF),U.S.,2008:1-21.
[45]吾尔娜,吴昌志,季峻峰,等.松辽盆地徐家围子断陷玄武岩气藏储层的CO2封存潜力研究[J].高校地质学报,2012,18(2):239-247.Wu Erna,Wu Changzhi,Ji Junfeng,et al.Potential capacity and feasibility of CO2sequestration in petroleum reservoirs of Basaltic rocks:Example from Basaltic Hydrocarbon reservoir in the Xujiaweizi fault depression the Songliao basin,East China[J].Geological Journal of China Universities,2012,18(2):239-247.
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