COUPLING NORSOK CO2 CORROSION PREDICTION MODEL WITH PIPELINES THERMAL/HYDRAULIC MODELS TO SIMULATE CO2 CORROSION ALONG PIPELINES
Pipelines transporting oil and gas are vulnerable to internal corrosion when water forms a part of the transported fluids. The presence of carbon dioxide (CO2) in the fluid accelerates the corrosion rate due to its reaction with water which results in forming...
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School of Engineering. Taylor’s University
2011
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my.utp.eprints.74762017-03-20T02:22:52Z COUPLING NORSOK CO2 CORROSION PREDICTION MODEL WITH PIPELINES THERMAL/HYDRAULIC MODELS TO SIMULATE CO2 CORROSION ALONG PIPELINES Mohyaldinn, Mysara Eissa El-Khatib, Noaman A.F. Che Ismail, Mokhtar TN Mining engineering. Metallurgy Pipelines transporting oil and gas are vulnerable to internal corrosion when water forms a part of the transported fluids. The presence of carbon dioxide (CO2) in the fluid accelerates the corrosion rate due to its reaction with water which results in forming carbonic acid, and hence, water pH is reduced. The corrosion rate prediction is an important task needed to manage and control the corrosion. The prediction can be carried on by selecting one of many empirical and mechanistic models that developed for corrosion rate prediction. One of these models is NORSOK model, an empirical model developed by NORSOK Norwegian standard for CO2 corrosion prediction in straight pipes. In this paper NORSOK model has been coupled to thermal and hydraulic models to predict CO2 corrosion rate along pipelines. School of Engineering. Taylor’s University 2011-12 Citation Index Journal PeerReviewed application/pdf http://eprints.utp.edu.my/7476/1/NorskCorrModel-new.pdf Mohyaldinn, Mysara Eissa and El-Khatib, Noaman A.F. and Che Ismail, Mokhtar (2011) COUPLING NORSOK CO2 CORROSION PREDICTION MODEL WITH PIPELINES THERMAL/HYDRAULIC MODELS TO SIMULATE CO2 CORROSION ALONG PIPELINES. [Citation Index Journal] http://eprints.utp.edu.my/7476/ |
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TN Mining engineering. Metallurgy Mohyaldinn, Mysara Eissa El-Khatib, Noaman A.F. Che Ismail, Mokhtar COUPLING NORSOK CO2 CORROSION PREDICTION MODEL WITH PIPELINES THERMAL/HYDRAULIC MODELS TO SIMULATE CO2 CORROSION ALONG PIPELINES |
description |
Pipelines transporting oil and gas are vulnerable to internal corrosion when
water forms a part of the transported fluids. The presence of carbon dioxide
(CO2) in the fluid accelerates the corrosion rate due to its reaction with water
which results in forming carbonic acid, and hence, water pH is reduced. The
corrosion rate prediction is an important task needed to manage and control the
corrosion. The prediction can be carried on by selecting one of many empirical
and mechanistic models that developed for corrosion rate prediction. One of
these models is NORSOK model, an empirical model developed by NORSOK
Norwegian standard for CO2 corrosion prediction in straight pipes. In this paper
NORSOK model has been coupled to thermal and hydraulic models to predict
CO2 corrosion rate along pipelines. |
format |
Citation Index Journal |
author |
Mohyaldinn, Mysara Eissa El-Khatib, Noaman A.F. Che Ismail, Mokhtar |
author_facet |
Mohyaldinn, Mysara Eissa El-Khatib, Noaman A.F. Che Ismail, Mokhtar |
author_sort |
Mohyaldinn, Mysara Eissa |
title |
COUPLING NORSOK CO2 CORROSION PREDICTION MODEL
WITH PIPELINES THERMAL/HYDRAULIC MODELS TO
SIMULATE CO2 CORROSION ALONG PIPELINES |
title_short |
COUPLING NORSOK CO2 CORROSION PREDICTION MODEL
WITH PIPELINES THERMAL/HYDRAULIC MODELS TO
SIMULATE CO2 CORROSION ALONG PIPELINES |
title_full |
COUPLING NORSOK CO2 CORROSION PREDICTION MODEL
WITH PIPELINES THERMAL/HYDRAULIC MODELS TO
SIMULATE CO2 CORROSION ALONG PIPELINES |
title_fullStr |
COUPLING NORSOK CO2 CORROSION PREDICTION MODEL
WITH PIPELINES THERMAL/HYDRAULIC MODELS TO
SIMULATE CO2 CORROSION ALONG PIPELINES |
title_full_unstemmed |
COUPLING NORSOK CO2 CORROSION PREDICTION MODEL
WITH PIPELINES THERMAL/HYDRAULIC MODELS TO
SIMULATE CO2 CORROSION ALONG PIPELINES |
title_sort |
coupling norsok co2 corrosion prediction model
with pipelines thermal/hydraulic models to
simulate co2 corrosion along pipelines |
publisher |
School of Engineering. Taylor’s University |
publishDate |
2011 |
url |
http://eprints.utp.edu.my/7476/1/NorskCorrModel-new.pdf http://eprints.utp.edu.my/7476/ |
_version_ |
1738655580790194176 |