Well Test Analysis for a Well in Gas Storage Reservoirs With the Formation Containing High Salinity Water

Author:

Ren Zhongxin1,Wang Haifeng1,Wang Duocai1,He Hui2,Yuan Hongfei3,Zhu Ziheng1,Lin Jia'en4

Affiliation:

1. PipeChina West-East Gas Pipeline Company , 1200 Century Avenue, Pudong New Area, Shanghai 200120 , China

2. Xi’an Sinoline Petroleum Science & Technology Co., Ltd ., Room 1001, 1/F, No. 36, Second Electronic Road, Yanta District, Xi’an City, Shaanxi 710065 , China

3. Xi’an Sinoline Petroleum Science & Technology Co., Ltd. , Room 1001, 1/F, No. 36, Second Electronic Road, Yanta District, Xi’an City, Shaanxi 710065 , China

4. Xi'an Shiyou University , No. 18, East Section, Electronic Second Road, Yanta District, Xi'an, Shaanxi 710065 , China

Abstract

Abstract The production capacity of the gas wells is seriously affected by salt deposition during the injection and production process for underground gas storage with high salt content, so it is necessary to predict the production performance through well test technology. However, the existing well test analysis methods cannot be reliably used to interpret the well test data affected by salt deposition phase change and high-speed non-Darcy flow during the injection and production process. Therefore, this paper first determines the relationship between salt deposition and temperature and pressure through flash calculation of phase equilibrium of saltwater and hydrocarbon system, then establishes a porosity and permeability model considering the effect of salt deposition, and further establishes a high-speed injection-production well test analysis model considering the effect of salt deposition in combination with Forchheimer’s percolation law. Finally, the model is solved by numerical method, and the dynamic changes of reservoir pressure and salt deposition are simulated and calculated. The results show that the higher the salinity of formation water is, the greater the risk of salt deposition in the reservoir is, and the permeability of the reservoir will significantly decrease after salt deposition occurs; the non-Darcy flow effect will aggravate the risk of salt deposition in the reservoir. The research results provide a theoretical method for the evaluation of reservoir parameters and production performance prediction of salt gas storage reservoirs.

Funder

Natural Science Foundation of Shaanxi Province

Publisher

ASME International

Subject

Geochemistry and Petrology,Mechanical Engineering,Energy Engineering and Power Technology,Fuel Technology,Renewable Energy, Sustainability and the Environment

Reference26 articles.

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2. Research on the Salting Out Phase and Factors Affecting Production About Gas Reservoir With High Salinity Stratum Water;Wang;Nat. Gas Oil,2016

3. Research on Salt Crystallization Mechanism in Wen23 Gas Field Reservoir;Liu;Drill. Prod. Technol.,2009

4. Theoretical Model and Practices of Wellbore Salt Deposition in Gas Wells Based on Formation Water Evaporation in Wen23 Underground Gas Storage;Shen;Nat. Gas Ind.,2022

5. Pressure-Volume-Temperature and Solubility Relations for Natural-Gas-Water Mixtures;Dodson,1944

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