Material Selection of Casing in Gas Well Containing CO2 and H2S

2011 ◽  
Vol 201-203 ◽  
pp. 982-985
Author(s):  
Xiang Zhen Yan ◽  
Bing Shao ◽  
Xiu Juan Yang ◽  
Tong Tao Wang

Based on analysis of different guidelines and standards for material selection of casing which belong to six companies in four countries, the main factors that influence the material selection of casing have been generalized. Through comparing the safety and corrosion resistance properties of materials recommended by different guidelines in specific conditions, a synthetic guideline has been developed, which can provide a more appropriate suggestion. The environmental conditions and materials adopted in East Sichuan region have been taken for example. By comparing the proposed results with adopted materials of field well completion, it demonstrates that the result provided by the synthetic guideline is accurate and reliable.

2013 ◽  
Vol 703 ◽  
pp. 135-138
Author(s):  
Ling Feng Li

For natural gas well, material selection of gas-well wellhead assembly is an important factor of gas production system life. In order to ensure the long-term development of gas wells, this paper mainly introduces the material selection of gas-well wellhead assembly, proposes the optimization idea and technique of gas-well wellhead assembly. By taking W well as an example, this paper optimizes the material selection of gas-well wellhead assembly for W well. For application, the optimal materials of gas-well wellhead assembly in W well have good performance of corrosion resistance.


2018 ◽  
Author(s):  
Jiandong Wang ◽  
Huali Zhang ◽  
Yufei Li ◽  
Dajiang Zhu ◽  
Chuanlei Wang

2013 ◽  
Vol 690-693 ◽  
pp. 1516-1519
Author(s):  
Ling Feng Li

For natural gas well in sour gas reservoirs, very serious corrosion in the gas well string is an important factor of gas production system life. In order to ensure the long-term development of gas wells, this paper mainly introduces the tubing and casing corrosion in sour gas reservoirs, corrosion-resistant material selection of tubing and casing in sour gas reservoirs and proposes the optimization idea and technique of tubing material selection.. By taking W 63 well as an example, this paper optimizes the material selection of production casing for W 63 well. For application, the optimal materials of gas well string in W 63 well have good performance of corrosion resistance.


2012 ◽  
Vol 485 ◽  
pp. 429-432
Author(s):  
Ling Feng Li ◽  
Xiao Ming Liu ◽  
Zhi Qiang Huang

For natural gas well with high content of CO2 and H2S, very serious corrosion in the gas well string is an important factor of gas production system life. In order to ensure the long-term development of gas wells, this paper mainly study the corrosion-resistant material selection of tubing and casing in sour gas reservoirs under coexistence of H2S and CO2 and proposes the optimization idea and technique of tubing and casing material selection. By taking Puguang gas field as an example, this paper optimizes the material selection of production casing for Puguang gas field. By testing, the optimal materials of gas well string in Puguang gas field have good performance of erosion resistance


Author(s):  
Soumitra Nandi ◽  
Zahed Siddique

With the advancements of composite materials and research in nano-composites, designers have the flexibility to select materials from a wide range of properties to meet their specific design needs. Even with all these advancements, the material selection process during design follows a very conventional approach. The conventional approach to material design is to select a certain material from a given pre-set material list that allows the attainment of nearest properties required for the product. One of the disadvantages of this approach is that the trade-off inherent in the selection of material, when multiple properties are targeted, can be cumbersome to achieve or addressed at all. In this paper we present an approach to select and design composite materials, where the designer will have flexibility to select multiple properties of materials during the design of a new product. This approach employs an index for selection combined with heuristic optimization techniques to select the optimized combination of composite materials that could meet closest possible property goals. In the case study presented in this paper, we did not perform any optimization; rather, emphasize is given to the explanation of material selection technique, and an RMS value is introduced as an index for the selection.


Author(s):  
O. A. Abuzeid ◽  
A. I. Aljoboury ◽  
A.-H. I. Mourad ◽  
A. Alawar ◽  
M. Abou Zour

In earlier works, characterization and stress corrosion cracking of casings of brine recirculation pumps, used in desalination plants, had been investigated. These casings which were manufactured from two types of Ni resist ductile irons have been reported to show different service lives. Material selection of casings is believed to be one of possible factors to extend the service life of these pumps. Two types of stainless steels; UNS S31603 and UNS S32750 have been recommended as substitutes to Ni resist ductile irons. In this work, mechanical, metallurgical, and electrochemical tests have been conducted on as received samples, made of these two types of stainless steels. Results have shown considerable higher yield and tensile strengths and corrosion resistance for the UNS S32750 over the UNS S31603. Results have also shown reproduced pitting behavior illustrated by measured pitting potentials and visual observations for UNS S31603 samples. UNS S32750 samples have shown no signs of pitting.


2021 ◽  
Author(s):  
Ming-Lei Yeow

Abstract A large gas field with carbonate formations was discovered about 200 km (kilometers) offshore, in water depths of 108 m (meters) below mean sea level. Flow analysis and reservoir depletion studies by the Operator show 7" tubing is required to provide high production rates of about 80 to 120 million Standard Cubic Feet per day (mmscfd) per well as the optimum production and depletion strategy for the field. The field presents significant challenges to well construction and completion. These challenges were considered in the design stage to optimise well completion design and operations. This paper describes the approach and methods used to overcome the challenges in the design and execution stage to optimise the completion design and to manage challenges during construction of the well including: –Due to loss of circulation in the fractured gas carbonate reservoirs, the well will be drilled with Pressurised Mud Cap Drilling (PMCD), a form of Managed Pressure Drilling (MPD). Thus, the design needs to provide for installing the well completion in this condition–The wells required heavy mud weight for drilling and thus, heavy brine weights for well completion. Challenges to avoid or minimise the loss of high cost heavy brine were considered–High reservoir temperatures of about 325 deg. F (degrees Fahrenheit) which lead to challenges of ensuring equipment will continue to work in high temperature environments, high loads / stresses on completion & casing during production, and Wellhead & Christmas Tree & Flowline movement / growth.–Presence of sour gas and CO2 (Carbon Dioxide) which require optimising metallurgy of tubulars and downhole equipment, considering corrosion and cost requirements–Understanding loads / stresses on the tubing and casings with high flowrates and high flowing temperatures–Concerns with formation collapse during production–Corrosion studies to optimise material selection and ensuring well integrity for at least twenty (20) years’ field life–Manage hydrates and scaling while carrying out well completion, well clean and well test operations and during the field life–Acceptable seals, barriers and completion equipment to manage high pressure gas–Wellhead and Christmas Tree that can take the high temperature and sour gas content–Well clean-up and testing after completion in conjunction with drilling operations–Cost and time optimisation to maximize returns on investment for the project. Well completion engineering studies were carried out for each challenge or consideration. Experiences and lessons from similar gas fields were also considered. Corrosion laboratory analysis was carried out to optimise the corrosion resistant alloy for the completion tubular and completion equipment. For each solution to the challenge, cost and time considerations were reviewed and studied to optimise the design, cost, integrity and safety of the wells and operations. This paper describes the approaches and methods taken by the Operator to optimise the Big Bore Gas Well Completion Design including some lessons for improvement after successfully drilling, completing, clean-up and testing of the first well with this completion design.


2015 ◽  
Vol 33 (1) ◽  
pp. 5-18
Author(s):  
Wojciech Jurczak

Abstract Corrosive degradation of construction materials for marine structures is a natural phenomenon. The extent of deterioration in mechanical properties of materials used in ship construction is directly linked to the chemical makeup of the material as well as the prevailing environmental conditions (e.g. salinity, physical stress) an the applied anti-corrosive coating. The paper presents results of research into stress corrosion of highly durable aluminum alloys. In order to increase the safety while using the above mentioned components, logging of corrosive potential has been introduced in the case of selected (corrosion-prone) number of surfaces of the quarter-section in relation the model 620 ship, made of 7020 alloy, so that the hazard of corrosive breach can be monitored.


2019 ◽  
Author(s):  
Jiandong Wang ◽  
Huali Zhang ◽  
Yufei Li ◽  
Dajiang Zhu ◽  
Chuanlei Wang ◽  
...  

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