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- W2731602401 abstract "Carbon steel materials are widely used in the oil and gas production industry because of its availability, constructability, and relatively low cost. However, there are limits to the longevity of carbon steel because of its low corrosion resistance. In particular, carbon steel tubing and piping are susceptible to erosion–corrosion damage due to the erosive and corrosive nature of the produced fluid or gas. The combined effect of sand erosion and corrosion can be very significant. One form of erosion–corrosion of carbon steels occurs when entrained sand particles impinge the wall and remove part or all of a protective iron carbonate (FeCO3) scale allowing corrosion rates to increase to bare metal rates. This limitation raises the need for reliable prediction tools to properly design production facilities in terms of cost savings and safety. This chapter provides an overview of research and development in the area of erosion–corrosion modeling. The chapter discuses two erosion–corrosion prediction models that account for CO2 corrosion under iron carbonate-scale-forming conditions in the presence of sand. The chapter also offers discussion on FeCO3 scale formation and erosion resistance." @default.
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- W2731602401 date "2017-01-01" @default.
- W2731602401 modified "2023-09-27" @default.
- W2731602401 title "Mechanistic modeling of erosion–corrosion for carbon steel" @default.
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- W2731602401 doi "https://doi.org/10.1016/b978-0-08-101105-8.00031-0" @default.
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