[1] 吴斌,周龙刚,潘新志,等.新疆三塘湖盆地低煤阶煤层气成因探讨[J].特种油气藏,2020,27(1):47-54. WU Bin,ZHOU Longgang,PAN Xinzhi,et al.Discussion on genesis low coal rank coalbed methane in Santanghu Basin of Xinjiang Province[J].Special oil & gas reservoirs,2020,27(1):47-54. [2] 杨秀春,宋柏荣,陈国辉,等.大宁—吉县区块深层煤岩多尺度孔缝结构特征[J].特种油气藏,2022,29(5):94-100. YANG Xiuchun,SONG Bairong,CHEN Guohui,et al.Characteristics of multi-scale pore-fracture structure of deep coal rocks in the Daning-Jixian Block[J].Special oil & gas reservoirs,2022,29(5):94-100. [3] 邓恩德,易同生,颜智华,等.海陆过渡相页岩气聚集条件及勘探潜力研究——以黔北地区金沙参1井龙潭组为例[J].中国矿业大学学报,2020,49(6):1166-1181. DENG Ende,YI Tongsheng,YAN Zhihua,et al.Accumulation condition and shale gas potential of the marine-terrestrial transitional facies:a case study of Jinshacan 1 Well of Longtan Formation in northern Guizhou[J].Journal of China University of Mining & Technology,2020,49(6):1166-1181. [4] LI Wei,LIU Hongfu,SONG Xiaoxia.Multifractal analysis of Hg pore size distributions of tectonically deformed coals[J].International Journal of Coal Geology,2015,144/145:138-152. [5] 邵龙义,李佳旭,王帅,等.海拉尔盆地褐煤液氮吸附孔的孔隙结构及分形特征[J].天然气工业,2020,40(5):15-25. SHAO Longyi,LI Jiaxu,WANG Shuai,et al.Pore structures and fractal characteristics of liquid nitrogen adsorption pores in lignite in the Hailar Basin[J].Natural gas industry,2020,40(5):15-25. [6] 王军.煤体表面分形对瓦斯吸附影响[J].煤矿开采,2017,22(3):9-11. WANG Jun.Influence of gas absorption by coal body surface fractal[J].Coal Mining Technology,2017,22(3):9-11. [7] 易同生,张井,李新民.六盘水煤田盘关向斜煤层气开发地质评价[J].天然气工业,2007,27(5):29-31,148. YI Tongsheng,ZHANG Jing,LI Xinmin.Development geology assessment on coalbed methane in Panguan syncline of Liupanshui Coal Field[J].Natural gas industry,2007,27(5):29-31,148. [8] LU Guanwen,WEI Chongtao,WANG Jilin,et al.Influence of pore structure and surface free energy on the contents of adsorbed and free methane in tectonically deformed coal[J].Fuel,2021,285:119087. [9] 陈学敏.黔西盘关向斜构造特征及其力学分析[J].中国煤炭地质,2008,20(4):11-16. CHEN Xuemin.Western Guizhou Panguan syncline structural features and its mechanic analysis [J].Coal Geology of China,2008,20(4):11-16. [10] 王海军,刘善德,马良,等.盘关向斜火烧铺井田重烃含量异常的控制因素[J].煤炭学报,2022,47(9):3421-3441. WANG Haijun,LIU Shande,MA Liang,et al.Controlling factors of abnormal heavy hydrocarbon content in Huoshaopu Mine Field of Panguan Syncline[J].Journal of China Coal Society,2022,47(9):3421-3441. [11] 国家市场监督管理总局.显微煤岩类型分类:GB/T 15589—2013[S].北京:中国标准出版社,2013:1. State Administration for Market Regulation.Classification of microlithotype:GB/T 15589-2013[S].Beijing:Standards Press of China,2013:1. [12] 国家质量技术监督局.中国煤层煤分类:GB/T 17607—1998[S].北京:中国标准出版社,1998:1-3. The State Bureau of Quality and Technical Supervision.Chinese classification of in seam coals: GB/T 17607-1998[S].Beijing:Standards Press of China,1998:1-3. [13] 国家市场监督管理总局,国家标准化管理委员会.岩石毛管压力曲线的测定:GB/T 29171—2023[S].北京:中国标准出版社,2023:1-7. State Administration for Market Regulation,Standardization Administration of the People′s Republic of China.Rock capillary pressure measurement:GB/T 29171-2023[S].Beijing:Standards Press of China,2023:1-7. [14] 石油地质勘探专业标准化委员会.岩石比表面积和孔径分布测定静态氮吸附容量法:SY/T 6154—2019[S].北京:国家能源局,2019:4-7. Petroleum Geological Exploration Standardization Technical Committee.Determination of specific surface and pore size distribution of rocks—Static adsorption capacity method:SY/T 6154-2019[S].Beijing:National Energy Administration,2019:4-7. [15] 国家市场监督管理总局,国家标准化管理委员会.煤的高压等温吸附试验方法(容量法):GB/T 19560—2008[S].北京:中国标准出版社,2008:3-5. State Administration for Market Regulation,Standardization Administration of the People′s Republic of China.Experimental method of high-pressure isothermal adsorption to coal:GB/T 19560-2008[S].Beijing:Standards Press of China,2008:3-5. [16] 陈煜朋,姜文忠,秦玉金,等.煤的孔隙分布特征研究理论与方法综述[J].煤矿安全,2021,52(3):190-196. CHEN Yupeng,JIANG Wenzhong,QIN Yujin,et al.Review on research theory and methods of pore distribution characteristics of coal[J].Safety in Coal Mines,2021,52 (3):190-196. [17] 朱炎铭,王阳,陈尚斌,等.页岩储层孔隙结构多尺度定性-定量综合表征:以上扬子海相龙马溪组为例[J].地学前缘,2016,23(1):154-163. ZHU Yanming,WANG Yang,CHEN Shangbin,et al.Qualitative-quantitative multiscale characterization of pore structures in shale reservoirs:a case study of Longmaxi Formation in the Upper Yangtze Area[J].Earth Science Frontiers,2016,23(1):154-163. [18] 白立勋,高之业,魏维航,等.川南地区龙马溪组中深层与深层页岩孔隙结构对比研究[J].特种油气藏,2023,30(4):54-62. BAI Lixun,GAO Zhiye,WEI Weihang,et al.A comparative study of the pore structure of deep-medium shale in the Longmaxi Formation of the southern Sichuan Basin[J].Special Oil & Gas Reservoirs,2023,30(4):54-62. [19] 何余生,李忠,奚红霞,等.气固吸附等温线的研究进展[J].离子交换与吸附,2004,20(4):376-384. HE Yusheng,LI Zhong,XI Hongxia,et al.Research progress of gas-solid adsorption isotherms[J].Ion Exchange and Adsorption,2004,20(4):376-384. [20] 邓恩德,颜智华,姜秉仁,等.黔西地区上二叠统龙潭组海陆交互相页岩气储层特征[J].石油实验地质,2020,42(3):467-476. DENG Ende,YAN Zhihua,JIANG Bingren,et al.Characteristics of marine-continental alternating shale gas reservoirs in the Upper Permian Longtan Formation in western Guizhou[J].Petroleum Experimental Geology,2020,42(3):467-476. [21] 高迪,刘建国.沁水盆地东南部高阶煤孔隙分形特征及意义[J].河南理工大学学报(自然科学版),2017,36(2):7-15. GAO Di,LIU Jianguo.Pore fractal characteristics and significance of high-rank coal in southern Qinshui Basin[J].Journal of Henan Polytechnic University(Natural Science),2017,36(2):7-15. [22] 李振,邵龙义,侯海海,等.高煤阶煤孔隙结构及分形特征[J].现代地质,2017,31(3):595-605. LI Zhen,SHAO Longyi,HOU Haihai,et al.Pore structures and fractal characteristics of high rank coals[J].Geoscience,2017,31(3):595-605. [23] 邓恩德,姜秉仁,高为,等.黔西地区龙潭组煤系泥页岩孔隙结构及分形特征研究[J].煤炭科学技术,2020,48(8):184-190. DENG Ende,JIANG Bingren,GAO Wei,et al.Study on pore structure and fractal characteristics of shale from coal measures of Longtan Formation in western Guizhou[J].Coal Science and Technology,2020,48(8):184-190. [24] 刘金霖,李怀滨,张雪冰,等.鸡西盆地煤储层孔隙特征及主控因素[J].石油实验地质,2018,40(5):691-698. LIU Jinlin,LI Huaibin,ZHANG Xuebing,et al.Pore characteristics and controlling factors of coal reservoirs from Jixi Basin[J].Petroleum Geology & Experiment,2018,40(5):691-698. [25] 唐朝苗.山西省介休区块中阶煤煤储层孔隙特征及分形表征研究[J].中国煤炭地质,2020,32(12):33-40. TANG Chaomiao.Study on medium ranked coal reservoir pore features and fractal characterization in Jiexiu Block,Shanxi Province[J].Coal Geology of China,2020,32(12):33-40. [26] 赵兴龙,汤达祯,许浩,等.煤变质作用对煤储层孔隙系统发育的影响[J].煤炭学报,2010,35(9):1506-1511. ZHAO Xinglong,TANG Dazhen,XU Hao,et al.Effect of coal metamorphic process on pore system of coal reservoirs[J].Journal of China Coal Society,2010,35(9):1506-1511. [27] 闵超,代博仁,石咏衡,等.基于聚类匹配的煤层气压裂效果主控因素识别[J].特种油气藏,2022,29(4):135-141. MIN Chao,DAI Boren,SHI Yongheng,et al.Identification of main controlling factors of coalbed methane fracturing effect based on cluster matching[J].Special Oil & Gas Reservoirs,2022,29(4):135-141. [28] 安士凯,桑树勋,李仰民,等.沁水盆地南部高煤级煤储层孔隙分形特征[J].中国煤炭地质,2011,23(2):17-21. AN Shikai,SANG Shuxun,LI Yangmin,et al.Study on pore fractal characteristics of high-rank coal reservoirs in southern Qinshui Basin[J].Coal Geology of China,2011,23(2):17-21. [29] 崔泽宏,苏朋辉,刘玲莉,等.澳大利亚苏拉特盆地Surat区块低煤阶煤层定量表征与区带划分优选[J].中国石油勘探,2022,27(2):108-118. CUI Zehong,SU Penghui,LIU Lingli,et al.Quantitative characterization, exploration zone classification and favorable area selection of low-rank coal seam gas in Surat Block in Surat Basin,Australia[J].China Petroleum Exploration, 2022,27(2):108-118. [30] 杨甜甜,张晓丽,何金先,等.滇东威信地区龙潭组煤系致密砂岩储层特征[J].断块油气田,2022,29(4):475-482. YANG Tiantian,ZHANG Xiaoli,HE Jinxian,et al.Characteristics of coal-bearing tight sandstone reservoir in Longtan Formation of Weixin Area, eastern Yunnan[J].Fault-Block Oil & Gas Field,2022,29(4):475-482. [31] DENG Ende,ZHANG Qian,JIN Zhijun,et al.Non-overmature equivalents confirmed a high initial hydrocarbon generation potential of the Permian Longtan Shale in the southern China[J].International Journal of Coal Geology,2022,259:104043. [32] 王琳琳,龙正江,朱冠宇.中阶构造煤等温吸附/解吸特征及机理[J].沉积学报,2022,40(1):60-72. WANG Linlin,LONG Zhengjiang,ZHU Guanyu.Isothermal adsorption/desorption characteristics,and mechanism of tectonically deformed medium-rank coals[J].Acta Sedimentologica Sinica,2022,40(1):60-72. [33] 任少魁,秦玉金,贾宗凯,等.不同煤阶煤孔隙结构分形表征及其对甲烷吸附特性的影响[J].煤矿安全,2023,54(5):175-181. REN Shaokui,QIN Yujin,JIA Zongkai,et al.Fractal characterization of pore structure of coal with different ranks and its effect on methane adsorption characteristics[J].Safety in Coal Mines,2023,54 (5):175-181. [34] 李彬,邱峰,张晓洲,等.二连盆地巴彦宝力格煤田伊敏组低煤阶煤层气成藏条件及有利区预测[J].大庆石油地质与开发,2023,42(4):20-29. LI Bin,QIU Feng,ZHANG Xiaozhou,et al.Accumulation conditions and favorable areas prediction of low-rank CBM in Yimin Formation of Bayanbaolige Coalfield in Erlian Basin[J].Petroleum Geology & Oilfield Development in Daqing,2023,42(4):20-29. [35] 邓泽,王红岩,姜振学,等.页岩和煤岩的孔隙结构差异及其天然气运移机理[J].天然气工业,2022,42(11):37-49. DENG Ze,WANG Hongyan,JIANG Zhenxue,et al.Pore structure differences between shale and coal and their gas migration mechanisms[J].Natural Gas Industry,2022,42(11):37-49. |