Acta Petrolei Sinica ›› 2026, Vol. 47 ›› Issue (3): 611-623.DOI: 10.7623/syxb202603008
• OIL FIELD DEVELOPMENT • Previous Articles
Zhang Guangdong1, Mo Chaoping1, Li Yangang1, Shi Zhiliang2, Liu Hong3, Zhang Xu4
Received:2025-01-14
Revised:2025-12-16
Published:2026-04-09
张广东1, 莫超平1, 李颜刚1, 石志良2, 刘洪3, 张旭4
通讯作者:
张广东,男,1980年12月生,2014年获成都理工大学博士学位,现为西南石油大学石油与天然气工程学院高级实验师,主要从事油气田开发工作。Email:510012301@qq.com
作者简介:张广东,男,1980年12月生,2014年获成都理工大学博士学位,现为西南石油大学石油与天然气工程学院高级实验师,主要从事油气田开发工作。Email:510012301@qq.com
基金资助:CLC Number:
Zhang Guangdong, Mo Chaoping, Li Yangang, Shi Zhiliang, Liu Hong, Zhang Xu. Experimental progress on phase behavior changes and sulfur deposition mechanisms in high-sulfur gas reservoirs[J]. Acta Petrolei Sinica, 2026, 47(3): 611-623.
张广东, 莫超平, 李颜刚, 石志良, 刘洪, 张旭. 高含硫气藏相态变化及硫沉积机理实验进展[J]. 石油学报, 2026, 47(3): 611-623.
Add to citation manager EndNote|Ris|BibTeX
| [1] 贾承造. 中国石油工业上游前景与未来理论技术五大挑战[J].石油学报,2024,45(1):1-14. JIA Chengzao.Prospects and five future theoretical and technical challenges of the upstream petroleum industry in China[J].Acta Petrolei Sinica,2024,45(1):1-14. [2] 胡勇,惠栋,彭先,等.高含硫气藏开发关键技术新进展、挑战及攻关方向[J].天然气工业,2022,42(12):23-31. HU Yong,HUI Dong,PENG Xian,et al.Key development technologies for high-sulfur gas reservoirs:new progress,challenges and key research directions[J].Natural Gas Industry,2022,42(12):23-31. [3] 曾大乾,张庆生,李童,等.四川盆地普光高含硫气田长周期高产稳产关键技术[J].天然气工业,2023,43(1):65-75. ZENG Daqian,ZHANG Qingsheng,LI Tong,et al.Key technologies for long-period high and stable production of the Puguang high-sulfur gas field,Sichuan Basin[J].Natural Gas Industry,2023,43(1):65-75. [4] 曾大乾,王寿平,孔凡群,等.大湾复杂高含硫气田水平井开发关键技术[J].断块油气田,2017,24(6):793-799. Z ENG Daqian,WANG Shouping,KONG Fanqun,et al.Key technology of horizontal well development in complex high-sulphur Dawan gas field[J].Fault-Block Oil & Gas Field,2017,24(6):793-799. [5] 王安建,王春辉.国际动荡局势对我国能源资源安全的挑战与应对策略[J].中国科学院院刊,2023,38(1):72-80. WANG Anjian,WANG Chunhui.Challenges of international turmoil situation to China's energy resource security and coping strategies[J].Bu lletin of Chinese Academy of Sciences,2023,38(1):72-80. [6] 葛昶,余晓钟,刘梦薇,等.我国硫磺产业发展现状及未来趋势[J].现代化工,2023,43(12):7-10. GE Chang,YU Xiaozhong,LIU Mengwei,et al.Development status and future trend of China’s sulfur industry[J].Modern Chemical Industry,2023,43(12):7-10. [7] 李乐,胡远清,彭小桂,等.页岩气藏中硫化氢成因研究进展[J].石油学报,2024,45(2):461-476. LI Le,HU Yuanqing,PENG Xiaogui,et al.Research progress of hydrogen sulfide genesis in shale gas reservoirs[J].Acta Petrolei Sinica,2024,45(2):461-476. [8] SPATOLISANO E,PELLEGRINI L A,FINOCCHI A,et al.Selecting technologies for sour and ultra-sour gas treating[J].ChemBioEng Reviews,2023,10(5):801-816. [9] RAMACHANDRAN S.Chemical scavenging of hydrogen sulfide and mercaptans[M]//WANG Qiwei.Surface process,transportation,and storage.Cambridge:Gulf Professional Publishing,2023:1-35. [10] MANUEL J,DAMIEN M,CHRISTIAN B.Highly sour gas:the best options to process it[R].SPE 197966,2019. [11] TENGKU HASSAN T N A,SHARIFF A M,MOHD PAUZI M M,et al.Insights on cryogenic distillation technology for simultaneous CO2 and H2S removal for sour gas fields[J].Molecules,2022,27(4):1424. [12] JENSEN M D,AZZOLINA N D,SCHLASNER S M,et al.A screening-level life cycle greenhouse gas analysis of CO2 enhanced oil recovery with CO2 sourced from the Shute Creek natural gas-processing facility[J].International Journal of Greenhouse Gas Control,2018,78:236-243. [13] 张地洪,王丽,张义,等.罗家寨高含硫气藏相态实验研究[J].天然气工业,2005,25(S1):86-88. ZHANG Dihong,WANG Li,ZHANG Yi,et al.Phase behavior experiments of Luojiazhai gas reservoir with high sulfur content[J].Natural Gas Industry,2005,25(S1):86-88. [14] 宋兆杰,邓森,宋宜磊,等.大庆油田古龙页岩油-CO2高压相态及传质规律[J].石油学报,2024,45(2):390-402. SONG Zhaojie,DENG Sen,SONG Yilei,et al.High-pressure phase behavior and mass transfer law of Gulong shale oil and CO2 in Daqing oilfield[J].Acta Petrolei Sinica,2024,45(2):390-402. [15] ROBERTS B E.Flow impairment by deposited sulfur-a review of 50 years of research[J].The Journal of Natural Gas Engineering,2017,2(1):84-105. [16] KENNEDY H T,WIELAND D R.Equilibrium in the methane-carbon dioxide-hydrogen sulfide-sulfur system[J].Transactions of the AIME,1960,219(1):166-169. [17] ROOF J G.Solubility of sulfur in hydrogen sulfide and in carbon disulfide at elevated temperature and pressure[J].Society of Petroleum Engineers Journal,1971,11(3):272-276. [18] SWIFT S C,MANNING F S,THOMPSON R E.Sulfur-bearing capacity of hydrogen sulfide gas[J].Society of Petroleum Engineers Journal,1976,16(2):57-64. [19] BRUNNER E,WOLL W.Solubility of sulfur in hydrogen sulfide and sour gases[J].Society of Petroleum Engineers Journal,1980,20(5):377-384. [20] SUN C Y,CHEN G J.Experimental and modeling studies on sulfur solubility in sour gas[J].Fluid Phase Equilibria,2003,214(2):187-195. [21] DAVIS P M,LAU C S,HYNE J B.Data on the solubility of sulfur in sour gases[J].Alberta Sulphur Research Ltd.Quarterly Bulletin,1993(2):3-4. [22] 杨学锋,黄先平,钟兵,等.高含硫气体中元素硫溶解度实验测定及计算方法研究[J].天然气地球科学,2009,20(3):416-419. YANG Xuefeng,HUANG Xianping,ZHONG Bing,et al.Experimental test and calculation methods of elemental sulfur solubility in high sulfur content gas[J].Natural Gas Geoscience,2009,20(3):416-419. [23] ZHANG Rui,GU Shaohua,HUANG Liang,et al.Experimental study on the elemental sulfur solubility in sour gas mixtures[J].Frontiers in Earth Science,2021,9:767015. [24] RAHMAN S,GEORGHIOU P E,ALODHAYB A.Density functional theory (DFT) models for the desulfurization and extraction of sulfur compounds from fuel oils using ionic liquids[M]//IMTIAZ S A.Modelling of chemical process systems.Amsterdam:Elsevier,2023:53-90. [25] LEE T,DIRLAM P T,NJARDARSON J T,et al.Polymerizations with elemental sulfur:from petroleum refining to polymeric materials[J].Journal of the American Chemical Society,2022,144(1):5-22. [26] BELETSKAYA I P,ANANIKOV V P.Transition-metal-catalyzed C-S,C-Se,and C-Te bond formations via cross-coupling and atom-economic addition reactions.Achievements and challenges[J].Chemical Reviews,2022,122(21):16110-16293. [27] SERIN J P,JAY S,CÉZAC P,et al.Experimental studies of solubility of elemental sulphur in supercritical carbon dioxide[J].The Journal of Supercritical Fluids,2010,53(1/3):12-16. [28] CLOAREC E,SERIN J P,CÉZAC P,et al.Experimental studies of solubility of elemental sulfur in methane at 363.15 K for pressure ranging from (4 to 25) MPa[J].Journal of Chemical & Engineering Data,2012,57(4):1222-1225. [29] 谷明星,里群,邹向阳,等.固体硫在超临界/近临界酸性流体中的溶解度(Ⅰ)实验研究[J].化工学报,1993,44(3):315-320. GU Mingxing,LI Qun,ZOU Xiangyang,et al.Solubility of solid sulfur in super/near-critical H2S-containing sour fluid mixtures(I) experimental investigation[J].Journal of Chemical Industry and Engineering (China),1993,44(3):315-320. [30] 卞小强,杜志敏,郭肖,等.硫在高含H2S天然气中溶解度的实验测定[J].天然气工业,2010,30(12):57-58. BIAN Xiaoqiang,DU Zhimin,GUO Xiao,et al.Measurement of the solubility of sulfur in natural gas with a high H2S content[J].Natural Gas Industry,2010,30(12):57-58. [31] TAHIR S,QAZI U Y,NASEEM Z,et al.Deep eutectic solvents as alternative green solvents for the efficient desulfurization of liquid fuel:a comprehensive review[J].Fuel,2021,305:121502. [32] HOSSEINI A,KHOSHSIMA A,SABZI M,et al.Toward application of ionic liquids to desulfurization of fuels:a review[J].Energy & Fuels,2022,36(8):4119-4152. [33] 国家能源局.天然气单质硫含量测定方法:SY/T 7663—2022[S].北京:石油工业出版社,2023. National Energy Administration.Method for determination of elemental sulfur in natural gas:SY/T 7663-2022[S].Beijing:Petroleum Industry Press,2023. [34] 李丽.高含硫气藏井筒硫沉积相态及动态预测模型研究[D].成都:西南石油大学,2012. LI Li.Research on prediction models of phase state and dynamics for well bore sulfur deposition in gas reservoir with high sulfur content[D].Chengdu:Southwest Petroleum University,2012. [35] 李洪,李治平,赖枫鹏,等.高含硫气藏元素硫溶解度预测新模型[J].西安石油大学学报(自然科学版),2015,30(2):88-92. LI Hong,LI Zhiping,LAI Fengpeng,et al.A new model for predicting solubility of sulfur in high sulfur content gas reservoirs[J].Journal of Xi’an Shiyou University(Natural Science Edition),2015,30(2):88-92. [36] 孙博文.高含硫气藏硫溶解度理论模型研究[D].成都:西南石油大学,2018. SUN Bowen.Study on theoretical model of sulfur solubility in gas reservoir with high sulfur content[D].Chengdu:Southwest Petroleum University,2018. [37] WOOL W.The influence of sour gases upon the melting curve of sulfur[J].Erdoel-Erdgas-Zeitschrift,1983(9):297-300. [38] HENRY L,MEZOUAR M,GARBARINO G,et al.Liquid-liquid transition and critical point in sulfur[J].Nature,2020,584(7821):382-386. [39] MO Chaoping,ZHANG Guangdong,ZHANG Zhiwei,et al.A modified solid-liquid-gas phase equation of state[J].ACS Omega,2022,7(11):9322-9332. [40] DERJAGUIN B,LANDAU L.Theory of the stability of strongly charged lyophobic sols and of the adhesion of strongly charged particles in solutions of electrolytes[J].Acta Physicochimica URSS,1941,14:633-662. [41] HEIDEMANN R A,PHOENIX A V,KARAN K,et al.A chemical equilibrium equation of state model for elemental sulfur and sulfur-containing fluids[J].Industrial & Engineering Chemistry Research,2001,40(9):2160-2167. [42] 李周,罗卫华,赵慧言,等.硫吸附和地层水存在下的单质硫沉积规律研究[J].天然气地球科学,2015,26(12):2360-2364. LI Zhou,LUO Weihua,ZHAO Huiyan,et al.The laws of sulfur deposition considering presence of elemental sulfur adsorption and Formation water[J].Natural Gas Geoscience,2015,26(12):2360-2364. [43] 李周,罗卫华,吴昊,等.基于EDEM-Fluent耦合模拟高含硫气藏地层硫沉积[J].断块油气田,2016,23(2):213-215. LI Zhou,LUO Weihua,WU Hao,et al.Coupled simulation of sulfur deposition in sour gas reservoir formation based on EDEM-Fluent[J].Fault -Block Oil & Gas Field,2016,23(2):213-215. [44] 李倩,曾大乾,李童,等.高含硫气藏固硫沉积特征[J].断块油气田,2023,30(6):999-1006. LI Qian,ZENG Daqian,LI Tong,et al.The characteristics of solid sulfur deposition in high sulfur gas reservoir[J].Fault-Block Oil & Gas Field,2023,30(6):999-1006. [45] 张勇,杜志敏,王强,等.硫微粒在多孔介质中运移沉积模型[J].新疆石油地质,2009,30(5):606-608. ZHANG Yong,DU Zhimin,WANG Qiang,et al.The model for sulfur particle flow and deposition in porous medium[J].Xinjiang Petroleum Geology,2009,30(5):606-608. [46] 张砚.高含硫气藏水平井硫沉积模型及产能预测研究[D].成都:西南石油大学,2016. ZHANG Yan.Study on sulfur deposition model and productivity prediction for horizontal wells in high-sulfur gas reservoirs[D].Chengdu:Southwest Petroleum University,2016. [47] MAHMOUD M A A.Effect of elemental-sulfur deposition on the rock petrophysical properties in sour-gas reservoirs[J].SPE Journal,2014,19(4):703-715. [48] 郭肖,张砚,惠栋,等.高含硫气藏硫溶解度及硫沉积预测新模型[J].科学技术与工程,2016,16(6):48-52. GUO Xiao,ZHANG Yan,HUI Dong,et al.Study on new evaluation model for the solubility of element sulfur and deposition prediction in high sulfur gas reservoir[J].Science Technology and Engineering,2016,16(6):48-52. [49] 张睿,曾大乾,李童,等.元坝气田硫溶解度Chrastil预测模型[J].断块油气田,2022,29(4):441-445. ZHANG Rui,ZENG Daqian,LI Tong,et al.Chrastil prediction model of sulfur solubility in Yuanba gas field[J].Fault-Block Oil & Gas Field,2022,29(4):441-445. [50] 李童,马永生,曾大乾,等.高含硫气藏地层硫沉积研究进展及展望[J].断块油气田,2022,29(4):433-440. LI Tong,MA Yongsheng,ZENG Daqian,et al.Research progress and prospect of formation sulfur deposition in high sulfur gas reservoirs[J] .Fault-Block Oil & Gas Field,2022,29(4):433-440. [51] 莫超平,张广东,张志伟,等.高含硫气藏固态硫颗粒微观运移沉积机理[J].断块油气田,2021,28(5):667-670. MO Chaoping,ZHANG Guangdong,ZHANG Zhiwei,et al.Deposition mechanism of solid sulfur particles microscopic transport in high sulfur gas reservoirs[J].Fault-Block Oil & Gas Field,2021,28(5):667-670. [52] 李农,赵立强,惠栋,等.高含硫储层硫沉积微观特性[J].石油实验地质,2023,45(1):168-174. LI Nong,ZHAO Liqiang,HUI Dong,et al.Microscopic characteristics of sulfur depositions in high-sulfur-content reservoirs[J].Petroleum geology & Experiment,2023,45(1):168-174. [53] MO Chaoping,ZHANG Guangdong,TANG Yong,et al.Adsorption mechanism study of sour natural gas and sulfur in high-sulfur carbonate rock gas reservoirs[J].Gas Science and Engineering,2024,125:205290. [54] ZHANG Guangdong,MO Chaoping,TANG Yong,et al.Interfacial properties of CO2 and liquid sulfur in high-sulfur gas fields:molecular simulations on carbonate mineral surfaces[J].Separation and Purification Technology,2025,356:129835. [55] 顾少华,石志良,胡向阳,等.超深高含硫气藏气—液硫两相渗流实验[J].天然气工业,2018,38(10):70-75. GU Shaohua,SHI Zhiliang,HU Xiangyang,et al.An experimental study on gas-liquid sulfur two-phase flow in ultradeep high-sulfur gas reservoirs[J].Natural Gas Industry,2018,38(10):70-75. [56] 张广东,杨森,莫超平,等.一种高温高压气-水-液硫三相相渗测试装置及方法:202110717260.0[P].2023-06-09. ZHANG Guangdong,YANG Sen,MO Chaoping,et al. High-temperature and high-pressure gas-water-liquid sulfur three-phase infiltration testing device and method:202110717260.0[P]. 2023-06-09. [57] 何林稽.高含硫气藏气-液硫渗流规律研究[D].成都:西南石油大学,2017. HE Linji.Study on seepage regularity of gas-liquid sulfur in high sulfur content gas reservoir[D].Chengdu:Southwest Petroleum University,2017. [58] LIU Jianyi,JIANG Lu,LIU Miao,et al.Fractal prediction model of gas-liquid sulfur phase permeability curve with boundary layer considered[C]//Proceedings of the International Conference on Applied Energy 2020. Bangkok,Thailand,2020:1-10. [59] MO Chaoping,ZHANG Guangdong,LI Yangang.Molecular insights into sulfur adsorption and gas-phase regulation in confined carbonate slits[J].Journal of Molecular Liquids,2025,437:128406. [60] Z HANG Zhiwei,ZHANG Guangdong,MO Chaoping.Study on the microscopic adsorption of sulfur molecules onto calcite surface[J].Colloids and Surfaces A:Physicochemical and Engineering Aspects,2021,630:127630. [61] MO Chaoping,ZHANG Guangdong,TANG Yong,et al.Molecular simulation study of liquid sulfur adsorption and diffusion in calcite nanoscale slits under varying temperature and pressure conditions[J].Colloids and Surfaces A:Physicochemical and Engineering Aspects,2023,676:132193. [62] 许莹莹,胡志明,石雨昕,等.页岩气藏高压压裂液侵入机理与流固耦合模拟[J].石油学报,2025,46(6):1168-1179. XU Yingying,HU Zhiming,SHI Yuxin,et al.Mechanism of high-pressure fracturing fluid invasion and coupled fluid-solid simulation in shale gas reservoirs[J].Acta Petrolei Sinica,2025,46(6):1168-1179. [63] 李童,马永生,曾大乾,等.液硫沉积吸附影响下高含硫气藏储层精细定量表征[J].石油勘探与开发,2024,51(2):367-379. LI Tong,MA Yongsheng,ZENG Daqian,et al.Fine quantitative characterization of high-H2S gas reservoirs under the influence of liquid sulfur deposition and adsorption[J].Petroleum Exploration and Development,2024,51(2):367-379. [64] MO Chaoping,ZHANG Guangdong,LI Yangang,et al.Dissolution behavior of elemental sulfur under CO2 injection conditions and its application in sulfur deposition removal in high-sulfur gas reservoirs[J].Fuel,2026,404:136374. [65] DELSHAD M,POPE G A.Comparison of the three-phase oil relative permeability models[J].Transport in Porous Media,1989,4(1):59-83. [66] 林玉保,史晓波,唐克,等.STONE概率模型与油、气、水三相相对渗透率[J].石油勘探与开发,1993,20(2):86-91. LIN Yubao,SHI Xiaobo,TANG Ke,et al.Probabilistic stone model and oil-gas-water relative permeability[J].Petroleum Exploration and Development,1993,20(2):86-91. [67] BLUNT M J.An empirical model for three-phase relative permeability[J].SPE Journal,2000,5(4):435-445. [68] ALIZADEH A H,PIRI M.The effect of saturation history on three-phase relative permeability:an experimental study[J].Water Resources Research,2014,50(2):1636-1664. [69] JIANG F,TSUJI T.Estimation of three-phase relative permeability by simulating fluid dynamics directly on rock-microstructure images[J].Water Resources Research,2017,53(1):11-32. [70] CARRILLO F J,BOURG I C,SOULAINE C.Multiphase flow modeling in multiscale porous media:an open-source micro-continuum approach[J].Journal of Computational Physics:X,2020,8:100073. [71] KATIYAR A,AGRAWAL S,OUCHI H,et al.A general peridynamics model for multiphase transport of non-Newtonian compressible fluids in porous media[J].Journal of Computational Physics,2020,402:109075. [72] DE SANTIS A,COLOMBO M,HANSON B C,et al.A generalized multiphase modelling approach for multiscale flows[J].Journal of Computational Physics,2021,436:110321. [73] MOODIE N,AMPOMAH W,JIA Wei,et al.Relative permeability:a critical parameter in numerical simulations of multiphase flow in porous media[J].Energies,2021,14(9):2370. [74] FEO A,CELICO F.High-resolution shock-capturing numerical simulations of three-phase immiscible fluids from the unsaturated to the saturated zone[J].Scientific Reports,2021,11(1):5212. [75] FU Jingang,SU Yuliang,LI Lei,et al.Productivity model with mechanisms of multiple seepage in tight gas reservoir[J].Journal of Petroleum Science and Engineering,2022,209:109825. [76] MO Chaoping,ZHANG Guangdong,ZHANG Zhiwei,et al.Productivity calculation model for fractured horizontal wells considering phase variation[J].Journal of Petroleum Science and Engineering,2022,209:109811. [77] CARRILLO F J,SOULAINE C,BOURG I C.The impact of sub-resolution porosity on numerical simulations of multiphase flow[J].Advances in Water Resources,2022,161:104094. [78] JAFARI A,VAHAB M,BROUMAND P,et al.An eXtended finite element method implementation in COMSOL multiphysics:thermo-hydro-mechanical modeling of fluid flow in discontinuous porous media[J].Computers and Geotechnics,2023,159:105458. |
| [1] | Liu Yueliang, Liu Chen, Liu Xinlei. Research status and prospects of mechanisms and technologies for enhanced oil recovery by CO2 injection in tight oil reservoirs [J]. Acta Petrolei Sinica, 2026, 47(1): 198-216. |
| [2] | Shao Zhufu, Zhang Wenxin, Mao Cui, Luan Xiwu, Zhong Jianhua, John Howell, Liu Zexuan, Zhao Bing, Ran Weimin, Liu Jingjing. Sand injectites and its petroleum geological significances [J]. Acta Petrolei Sinica, 2021, 42(3): 378-398. |
| [3] | Yu Xiaocong, Yang Jin, Kan Changbin, Hu Changpeng, Wu Xudong, Xu Fabin, Zhang Chao, Li Lei, Huang Liang. Unidirectional control mechanism of annulus trapped pressure in deepwater shaft [J]. Acta Petrolei Sinica, 2018, 39(3): 335-340,364. |
| [4] | Han Shu, Li Gensheng, Huang Zhongwei, Tian Shouceng, Song Xianzhi, Yang Ruiyue. Experiments on cuttings transport efficiency in dual annulus with Slotted Liner Sheathing Coiled Tubing in jetting multi-branch well [J]. Acta Petrolei Sinica, 2016, 37(8): 1053-1060. |
| [5] | Jiang Youlu, Wang Xin, Yu Qianqian, Wang Yongshi, Liu Hua, Jing Chen. Pressure field characteristics of petroliferous depressions and its relationship with hydrocarbon enrichment in Bohai Bay Basin [J]. Acta Petrolei Sinica, 2016, 37(11): 1361-1369. |
| [6] | Ren Shaoran, Li Dexiang, Zhang Liang, Huang Haidong. Leakage pathways and risk analysis of carbon dioxide in geological storage [J]. ACTA PETROLEI SINICA, 2014, 35(3): 591-601. |
| [7] | WANG Yifeng, WANG Dongliang, MA Chenghua, LI Jian, LI Zhisheng, CHEN Jianfa, WANG Xiaobo. Mechanism of hydrocarbon expulsion from source rocks at high-over maturation stage [J]. Editorial office of ACTA PETROLEI SINICA, 2013, 34(增刊一): 51-56. |
| [8] | FU Dekui GUO Xiao DU Zhimin ZHANG Yong FU Yu DENG Shenghui LIU Linqing. Mathematical model for formation damage of fractured gas reservoir with high-content H2S [J]. Editorial office of ACTA PETROLEI SINICA, 2010, 31(3): 463-466. |
| [9] | SHEN Pingping, HUANG Lei. Flow mechanisms of multi-phase multi-component CO2-crude oil system in porous media [J]. ACTA PETROLEI SINICA, 2009, 30(2): 247-251. |
| [10] | WANG Rui-fei, SUN Wei, YUE Xiang-an, ZHANG Rong-jun. Experimental research on attenuation coefficient model of low-frequency wave in oil layer [J]. Editorial office of ACTA PETROLEI SINICA, 2005, 26(6): 90-92. |
| [11] | XIANG Ting-sheng, FENG Qing-xian, N.T. Nazina, SHE Yue-hui, NI Fang-tian, ZHOU Jun-chu. Mechanism of indigenous microbial enhancement of oil recovery and pilot test [J]. Editorial office of ACTA PETROLEI SINICA, 2004, 25(6): 63-67. |
| [12] | ZHANG Liu, ZHOU Yong-sheng. Evaluation criteria for development degree of micro cracks in oil and gas reservoir [J]. Editorial office of ACTA PETROLEI SINICA, 2004, 25(4): 33-37. |
| [13] | GUO Da-li. Experimental research and application of fracture-controlled fracturing technology [J]. Editorial office of ACTA PETROLEI SINICA, 2002, 23(3): 91-94. |
| [14] | FU Xiao-tai. MECHANISM OF NATURAL GAS DISSOLVING IN BRINES AND THE DISSOLVING EQUATION [J]. Editorial office of ACTA PETROLEI SINICA, 2000, 21(3): 89-94. |
| Viewed | ||||||
|
Full text |
|
|||||
|
Abstract |
|
|||||
Copyright © 2021 Editorial Office of ACTA PETROLEI SINICA
Address:No. 6 Liupukang Street, Xicheng District, Beijing, P.R.China, 100724
Tel: 86-010-62067128, 86-010-62067137, 86-010-62067139
Fax: 86-10-62067130
Email: syxb@cnpc.com.cn
Support byBeijing Magtech Co.ltd, E-mail:support@magtech.com.cn