Lithologic Reservoirs ›› 2016, Vol. 28 ›› Issue (3): 121-126.doi: 10.3969/j.issn.1673-8926.2016.03.016

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Deduction and application of productivity formula for horizontal well with producing water in tightsandstone gas reservoir

Yuan Lin1, Wang Chaoming2, Li Xiaoping 3, Hu Xinjia 1, Zeng Li 1   

  1. 1. Northeastern Sichuan Gas Production PlantSinopec Southwest Oil and Gas Field CompanyLangzhong 637402SichuanChina2.No.10 Oil Production PlantPetroChina Changqing OilfieldCompanyQingyang 745600GansuChina3.State Key Laboratory of Oil and Gas Reservoir Geology and ExploitationSouthwest Petroleum UniversityChengdu 610500China
  • Online:2016-05-20 Published:2016-05-20

Abstract:

Tight sandstone gas is unconventional natural gas resources with great potential at present, but because of the gas reservoir with low porosity and low permeability and the effect of gas well producing water, the seepage of the fluid in the gas reservoir will no longer meet the traditional Darcy ’ s law. Based on the Joshi ’ s theory on productivity of horizontal well, considering the effect of gas well producing water, stress sensitivity, slip effect and high-speed non-Darcy flow of gas on productivity, this paper defined the generalized pseudo pressure of gas-water two phase, and used the seepage theory of gas-water two phase to deduce a new binomial productivity formula of horizontal well with gas-water two phase in tight sandstone gas reservoir. Case study and correlation shows that the absolute open flow calculated by new formula has a small relative error with that calculated by gas well-testing, just 6.60%, which indicates that the new formula will beof highaccuracy. Sensitivity analysis shows that as the increasing of volume ratio between water and gas and stress sensitivity index, the absolute open flow of horizontal well will decrease, while as the increasing of slip factor,the absolute open flow will become increasing as well.

Key words: salt-resistant polymer, common polymer, hydrodynamic diameter, pore structure

[1]王拓,朱如凯,白斌,等.非常规油气勘探、评价和开发新方法[J].岩性油气藏,2013,25(6):35-39.



Wang Tuo,Zhu Rukai,Bai Bin,et al. New method for the exploration and development of unconventional reservoirs[J]. Lithologic Reservoirs,2013,25(6):35-39.


[2]侯加根,唐颖,刘钰铭,等.鄂尔多斯盆地苏里格气田东区致密储层分布模式[J].岩性油气藏,2014,26(3):1-6.

Hou Jiagen,Tang Ying,Liu Yuming,et al. Distribution patterns of tight reservoirs in eastern Sulige Gas Field,Ordos Basin[J]. Lithologic Reservoirs,2014,26(3):1-6.

[3]邹才能,朱如凯,吴松涛,等.常规与非常规油气聚集类型、特征、机理及展望———以中国致密油和致密气为例[J].石油学报,2012,33(2):173-187.


Zou Caineng,Zhu Rukai,Wu Songtao,et al. Types,characteristics, genesis and prospects of conventional and unconventional hydrocarbon accumulations:Taking tight oil and tight gas in China as an instance[J]. Acta Petrolei Sinica,2012,33(2):173-187.


[4]Chen Dongxia,Wang Lei,Pang Xiongqi,et al. Geological characteristics and hydrocarbon accumulation models of the tight-s and gas reservoirs in Upper Triassic Xujiahe Formation in western Sichuan Depression of China[R]. SPE 16891,2013.

[5]邱先强,李治平,刘银山,等.致密气藏水平井产量预测及影响因素分析[J].西南石油大学学报,2013,35(2):142-145.


Qiu Xiangqiang,Li Zhiping,Liu Yinshan,et al. Analysis of productivity equation and influence factors of horizontal wells in tight sand gas reservoir[J]. Journal of Southwest Petroleum University,2013, 35(2):142-145.


[6]张岩,吴铬,黎华继,等.孝泉地区致密砂岩气藏水平井产能评价研究[J].钻采工艺,2013,36(4):56-58.


Zhang Yan,Wu Ke,Li Huaji,et al. Research on horizontal well productivity of tight sandstone gas reservoir in Xiaoquan area [J].Drilling & Production Technology,2013,36(4):56-58.


袁淋,李晓平,张璐,等.水平井稳态产能公式对比与分析[J]. 岩性油气藏,2013,25(6):127-132.


Yuan Lin,Li Xiaoping,Zhang Lu,et al. The analysis and correlation of horizontal wells’ steady productivity formulas [J]. Lithologic Reservoirs,2013,25(6):127-132.


[6]李晓平. 地下油气渗流力学[M]. 北京:石油工业出版社,2008:136-137.



Li Xiaoping. The underground oil and gas percolation mechanics [M]. Beijing:Petroleum Industry Press,2008:136-137.


[7]袁淋,李晓平.低渗透气藏水平井气水两相产能研究[J].天然气地球科学,2014,25(9):1155-1161.
Yuan Lin,Li Xiaoping. The productivity study of gas-water two phase horizontal well in low-permeability gas reservoir[J]. Natural Gas Geoscience,2014,25(9):1155-1161.





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