Modeling and Analysis of Sustained Annular Pressure and Gas Accumulation Caused by Tubing Integrity Failure in the Production Process of Deep Natural Gas Wells

Author:

Zhang Bo1,Lu Nu2,Guo Yujie3,Wang Qing4,Cai Mengzhe5,Lou Erbiao6

Affiliation:

1. CNPC Research Institute of Safety and Environment Protection Technology, Beijing 102206, China

2. Research Institute of Petroleum Exploration and Development, PetroChina, Beijing 100083, China

3. Institute of Gas Production technology Research of the 5th Gas Production of Changqing Oilfield Company, CNPC, Oreos, Inner Mongolia 017300, China

4. CNPC Engineering Technology R&D Company Limited, Beijing 102206, China

5. Downhole Service Company of Greatwall Drilling Company, CNPC, Panjin 124000, China

6. Tarim Oilfield Company, PetroChina, Korla 841000, China

Abstract

Abstract Sustained annular pressure caused by tubing leakage seriously threatens the safe production of deep gas wells. Therefore, it is necessary to fully understand the characteristics of sustained annular pressure and find potential methods to reduce risk. However, most models are about annular pressure caused by thermal expansion and cement integrity failure. Therefore, this paper establishes a model based on the energy conservation law, gas pressure–volume–temperature (PVT) properties, and volume consistency law, to study sustained annular pressure caused by tubing leakage. The results indicate that the pressure and gas volume in tubing-casing annulus increase simultaneously and gradually slow down after tubing leakage happens. The decrease of bottom-hole pressure can reduce the risk of annular pressure, which can be realized by a downhole choke. Other measures can also control the rising speed of annular pressure, including enhancement of production rate, increase of the initial length of the gas column and annular liquid with high compressibility, but the impact of formation energy and annular gas volume should be considered. Sustained annular pressure caused by shallow leaking point has a faster rising speed, longer rising period, and higher pressure value. Large leaking point leads to a remarkable increase of leaking rate and pressure rising speed. The integrity of the upper tubing string should be strengthened.

Funder

China Postdoctoral Science Foundation

Publisher

ASME International

Subject

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

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