Reservoir Engineering

Condensate Water Output Mechanism and Production Prediction Method of HTHP Condensate Gas Reservoir in South China Sea

  • Xiong Yu ,
  • Xiong Feng ,
  • Feng Pengxin ,
  • Lei Tingting ,
  • Wang Linghong
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  • Southwest Petroleum University, Chengdu, Sichuan 610500, China

Received date: 2022-12-22

  Revised date: 2024-03-08

  Online published: 2024-07-26

Abstract

To address the issues of condensate water output rising in high temperature and high pressure (referred to as the HPHT)condensate gas reservoirs in the South China Sea,Dongfang Gas Field is taken as the research object.By using the method of formation water evaporation experiment,water/gas ratio tests were conducted in PVT cells and long cores under formation conditions,and the calculation method for condensate water output in HPHT condensate gas reservoirs was proposed to predict the output rate of condensate water in Dongfang Gas Field.The research indicates that the fluid in HPHT condensate gas reservoir is affected by the small pore size of the porous medium and the shifting of critical properties,the saturated vapor pressure of which is altered, resulting in a significant increase in the production of condensate water.The numerical simulation method considering the interphase mass transfer between water and gas can be accurately predicted the variation of the condensate water output in HPHT condensate gas reservoir. Daily water production of Dongfang Gas Field was simulated with the bottom hole flowing pressurelimit of 1.5 MPa and the prediction time of 5 a.The accuracy of history in water output was over 90%, the condensate water output can be clearly predicted by the method.This study is of guiding significance for formulating a reasonable development plan and improving the development effect in HTHP condensate gas reservoirs.

Cite this article

Xiong Yu , Xiong Feng , Feng Pengxin , Lei Tingting , Wang Linghong . Condensate Water Output Mechanism and Production Prediction Method of HTHP Condensate Gas Reservoir in South China Sea[J]. Special Oil & Gas Reservoirs, 2024 , 31(3) : 116 -122 . DOI: 10.3969/j.issn.1006-6535.2024.03.015

References

[1] 徐波,胡碧瑶,王宁.西湖凹陷气田凝析水含量实验研究及影响因素分析[J].重庆科技学院学报(自然科学版),2021,23(2):50-54.
XU Bo,HU Biyao,WANG Ning.Experimental study on condensate content and analysis of influencing factors in Xihu Depression[J].Journal of Chongqing University of Science and Technology(Natural Sciences Edition),2021,23(2):50-54.
[2] ZULUAGA E,CASTRILLON J A.Experiments on water vapourization in porous media[J].Journal of Canadian Petroleum Technology,2003,42(7):7-8.
[3] BETTE S,HEINEMANNR F.Compositional modeling of high-temperature gas-condensate reservoirs with water vaporization[C].Houston:Symposium on Reservoir simulation,1989:1-7.
[4] RUSHING J A,NEWSHAM K E,VANFRAASSEN K C,et al.The catalytic effects of nonhydrocarbon contaminants on equilibrium water vapor content for a dry gas at HP/HT reservoir conditions[C].Calgary:Gas Technology Symposium,2008:1-10.
[5] 邓传忠,李跃林,王玲,等.崖城13-1气田凝析水产出规律实验研究及预测方法[J].中国海上油气,2017,29(5):75-81.
DENG Chuanzhong,LI Yuelin,WANG Ling,et al.Experimental study and prediction method of condensate water productionregularity in YC13-1 Gas Field[J].China Offshore Oil and Gas,2017,29(5):75-81.
[6] XIONG Yu,FU Xitong,Mo Jun,et al.Study on solubility and solubilisation of drying agent in supercritical carbon dioxide for improving local permeability of tight gas reservoir[J].Molecular Physics,2020,118(1):1-12.
[7] 熊钰,莫军,李佩斯,等.致密储层金属离子碳化物筛选评价与配方研制[J].西南石油大学学报(自然科学版),2018,40(1):165-172.
XIONG Yu,MO Jun,LI Peisi,et al.Selection, evaluation, and formulation of drying agents for tight sand reservoirs[J].Journal of Southwest Petroleum University (Science & Technology Edition,2018,40(1):165-172.
[8] 王玲.含气态水凝析气藏气藏工程研究[D].成都:西南石油大学,2017.
WANG Ling.Study on gas reservoir engineering in condensate gas reservoir with water vaporization[D].Chengdu:Southwest Petroleum University,2017.
[9] 姚玉英.化工原理[M].天津:天津科学技术出版社,2011:67-69.
YAO Yuying.Chemical engineering principle[M].Tianjin:Tianjin Science & Technology Press,2011:67-69.
[10] ZARRAGOICOECHEA G J,KUZ V A.Critical shift of a confined fluid in a nanopore[J].Fluid Phase Equilibria,2004,220(1):7-9.
[11] 欧成华.储层孔隙介质多组分气体吸附理论模型研究[J].天然气工业,2003,23(3):82-84.
OU Chenghua.Model study of multi-component gas adsorption theory in reservoir porous media[J].Natural Gas Industry,2003,23(3):82-84.
[12] 王富琼,王秀宇,单学军,等.一种研究多孔介质中水气分散体系运移机制的仿真模拟新方法[J].油气地质与采收率,2023,30(5):130-138.
WANG Fuqiong,WANG Xiuyu,SHAN Xuejun,et al.A new simulation method to study transport mechanism of water-gas dispersion system in porous media[J].Petroleum Geology and Recovery Efficiency,2023,30(5):130-138.
[13] 李元生,李相方,藤赛男,等.考虑孔喉与流体分子相互作用及毛管力的相平衡计算[J].石油学报,2015,36(4):511-515.
LI Yuansheng,Li Xiangfang,TENG Sainan,et al.Phase equilibrium calculation considering the interaction between pore and molecules and the capillary pressure effect[J].Acta Petrolei Sinica,2015,36(4):511-515.
[14] 王志伟,李相方.凝析气相变微观孔隙模型实验研究[J].工程热物理学报,2006,27(2):251-254.
WANG Zhiwei,LI Xiangfang.Experiments on phase change of gas condensate in microcosmic porous model[J].Journal of Engineering Thermophysics,2006,27(2):251-254.
[15] ZARRAGOICOECHEA G J,KUZ V A.Van der waals equation of state for a fluid in a nanopore[J].Physical Review,2022,65(2):1-4.
[16] YANG Gang,FAN Zhaoqi,LI Xiaoli.Determination of confined fluid phase behavior using modified Peng-Robinson equation of state[C].Houston:Unconventional Resources Technology Conference,2018:3-5.
[17] 周晓梅,李蕾,苏玉亮,等.超临界CO2/H2O混合流体吞吐提高页岩油采收率实验研究[J].油气地质与采收率,2023,30(2):77-85.
ZHOU Xiaomei,LI Lei,SU Yuliang,et al.Experimental study on enhancing shale oil recovery by supercritical CO2/H2O mixture huff and puff[J].Petroleum Geology and Recovery Efficiency,2023,30(2):77-85.
[18] SONG Zhaojie,SONG Yilei,GUO Jia,et al.Adsorption induced critical shifts of confined fluids in shale nanopores[J].Chemical Engineering Journal,2020,385:75-78.
[19] 李允.油藏数值模拟[M].山东:石油大学出版社,1999:76-110.
LI Yun.Reservoir numerical simulation[M].Shandong:China University of Petroleum Press 1999:76-110.
[20] 潘毅,孙雷,罗丽琼,等.凝析气藏油气水三相PVT相态特征测试及分析[J].西南石油学院学报,2006,28(2):48-51.
PAN Yi,SUN Lei,LUO Liqiong,et al.Experiment and analysis of oil/gas/water multi-phase behavior of condensate gas reservoir[J].Journal of Southwest Petroleum Institute,2006,28(2):48-51.
[21] 仝志刚,李友川,何将启,等.渤海海域渤中凹陷渤中19-6大型凝析气田天然气来源探讨[J].石油实验地质,2022,44(2):324-330.
TONG Zhigang,LI Youchuan,HE Jiangqi,et al.Gas source of BZ19-6 condensate gas field in Bozhong Sag,Bohai Sea Area[J].Petroleum Geology & Experiment,2022,44(2):324-330.
[22] 倪军,展转盈,王成俊,等.纳米颗粒改善凝析气藏反凝析伤害实验[J].油气地质与采收率,2023,30(5):110-118.
NI Jun,ZHAN Zhuanying,WANG Chengjun,et al.Experimental study on improving anti-condensation damage of condensate gas reservoir by nanoparticles[J].Petroleum Geology and Recovery Efficiency,2023,30(5):110-118.
[23] 李鹏飞,王爱方,张成林,等.CO2改善页岩凝析气藏反凝析伤害效果评价[J].大庆石油地质与开发,2023,42(6):151-158.
LI Pengfei,WANG Aifang,ZHANG Chenglin,et al.Effect evaluation of CO2 injection on mitigat retrograde condensate dam-age of condensate gas in shale gas reservoir[J].Petroleum Geology & Oilfield Development in Daqing,2023,42(6):151-158.
[24] 崔晓朵,廖浩奇,陈德坡,等.丰深1低渗透凝析气藏反凝析污染特征及解除措施实验[J].油气地质与采收率,2023,30(6):160-166.
CUI Xiaoduo,LIAO Haoqi,CHEN Depo,et al.Experiments about retrograde condensate pollution characteristics and relief measures in Fengshen 1 condensate gas reservoir with low permeability[J].Petroleum Geology and Recovery Efficiency,2023,30(6):160-166.
[25] 王彬,杜建芬,刘奇,等.带油环凝析气藏注气吞吐采出流体特征[J].新疆石油地质,2022,43(1):48-51.
WANG Bin,DU Jianfen,LIU Qi,et al.Characteristics of produced fluid from condensate gas reservoirs with oil rings developed by gas-injection huff and puff[J].Xinjiang Petroleum Geology,2022,43(1):48-51.
[26] 张露,韩东,税蕾蕾,等.海上特殊凝析气藏流体相态及混相特征[J].大庆石油地质与开发,2023,42(1):150-158.
ZHANG Lu,HAN Dong,SHUI Leilei,et al.Fluid phase and miscibility characteristics of offshore special condensate gas reservoirs[J].Petroleum Geology & Oilfield Development in Daqing,2023,42(1):150-158.
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