2019•Unpublished venueRequires access

Management of Sustained Casing Pressure in Offshore Gas Wells by a Novel Casing-Surface Design that Suppress Gas Migration at the Casing-Cement Interface

Alex William Mwang'ande, Hualin Liao, Long Zeng

Open publisher page 8 citations

Abstract

Abstract Sustained Casing Pressures (SCP) is still a serious problem that challenges the offshore producing gas wells. Despite existence of the many methods to mitigate it, SCP is still bringing severe health, safety and environmental (HSE) concerns necessitating the need for new methods. This article brings a new method of mitigating SCP caused by micro-annulus in offshore gas wells by designing a novel casing surface that will increase the length of casing-cement interface (CCI) for the same planned cement column length and thereby suppressing fluid migration through the CCI. Two new casing-surface designs were invented and tested by inputting the field data from offshore gas well X in conjunction with an existing SCP prediction model to verify the validity of the new method. The new developed method was found to have a great potential of controlling SCP and improve the production life time of the offshore gas wells by suppressing gas migration through micro-annulus.

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What this paper is about

Abstract Sustained Casing Pressures (SCP) is still a serious problem that challenges the offshore producing gas wells. Despite existence of the many methods to mitigate it, SCP is still bringing severe health, safety and environmental (HSE) concerns necessitating the need for new methods. This article brings a new method of mitigating SCP caused by micro-annulus in offshore gas wells by designing a novel casing surface that will increase the length of casing-cement interface (CCI) for the same planned cement column length and thereby suppressing fluid migration through the CCI. Two new casing-surface designs were invented and tested by inputting the field data from offshore gas well X in conjunction with an existing SCP prediction model to verify the validity of the new method. The new developed method was found to have a great potential of controlling SCP and improve the production life time of the offshore gas wells by suppressing gas migration through micro-annulus.

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Available abstract

Abstract Sustained Casing Pressures (SCP) is still a serious problem that challenges the offshore producing gas wells. Despite existence of the many methods to mitigate it, SCP is still bringing severe health, safety and environmental (HSE) concerns necessitating the need for new methods. This article brings a new method of mitigating SCP caused by micro-annulus in offshore gas wells by designing a novel casing surface that will increase the length of casing-cement interface (CCI) for the same planned cement column length and thereby suppressing fluid migration through the CCI. Two new casing-surface designs were invented and tested by inputting the field data from offshore gas well X in conjunction with an existing SCP prediction model to verify the validity of the new method. The new developed method was found to have a great potential of controlling SCP and improve the production life time of the offshore gas wells by suppressing gas migration through micro-annulus.

Key concepts: Casing, Annulus (botany), Petroleum engineering, Submarine pipeline, Natural gas field, Offshore oil and gas, Cement, Fossil fuel

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Management of Sustained Casing Pressure in Offshore Gas Wells by a Novel Casing-Surface Design that Suppress Gas Migration at the Casing-Cement Interface — Research Paper | ScholarLens