Failure analysis of flow-induced vibration problem of in-serviced duplex stainless steel piping system in oil and gas industry

Failure of the duplex stainless steel piping system in oil and gas industry can have disastrous effects. In this study, a novel method of failure analysis of flow-induced vibration problem of in-serviced duplex stainless steel piping system is proposed. The proposed non-destructive technique is able...

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Main Authors: Kong, K.K., Khoo, S.Y., Ong, Z.C., Eng, H.C., Ismail, Z., Chong, W.T., Noroozi, S., Rahman, A.G.A.
Format: Article
Published: Maney Publishing 2014
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Online Access:http://eprints.um.edu.my/15484/
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Institution: Universiti Malaya
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spelling my.um.eprints.154842015-12-31T00:43:38Z http://eprints.um.edu.my/15484/ Failure analysis of flow-induced vibration problem of in-serviced duplex stainless steel piping system in oil and gas industry Kong, K.K. Khoo, S.Y. Ong, Z.C. Eng, H.C. Ismail, Z. Chong, W.T. Noroozi, S. Rahman, A.G.A. Q Science (General) Failure of the duplex stainless steel piping system in oil and gas industry can have disastrous effects. In this study, a novel method of failure analysis of flow-induced vibration problem of in-serviced duplex stainless steel piping system is proposed. The proposed non-destructive technique is able to determine a suitable operating condition for continuous operation without failure. The technique relies on the combined operation of operational modal analysis, operating deflection shape analysis and linear elastic finite element analysis. The effect of different operating conditions for two distinct valve opening cases (i.e. fully opened and partially opened) on the dynamic stress is examined, and they are utilised for forecasting purpose in failure analysis. The result shows that maximum operating conditions are 360 and 400 mmscfd for fully opened and partially opened flow control valves, respectively. Beyond this limit, the piping system most likely will fail. Maney Publishing 2014 Article PeerReviewed Kong, K.K. and Khoo, S.Y. and Ong, Z.C. and Eng, H.C. and Ismail, Z. and Chong, W.T. and Noroozi, S. and Rahman, A.G.A. (2014) Failure analysis of flow-induced vibration problem of in-serviced duplex stainless steel piping system in oil and gas industry. Materials Research Innovations, 18 (S6). pp. 417-422.
institution Universiti Malaya
building UM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Malaya
content_source UM Research Repository
url_provider http://eprints.um.edu.my/
topic Q Science (General)
spellingShingle Q Science (General)
Kong, K.K.
Khoo, S.Y.
Ong, Z.C.
Eng, H.C.
Ismail, Z.
Chong, W.T.
Noroozi, S.
Rahman, A.G.A.
Failure analysis of flow-induced vibration problem of in-serviced duplex stainless steel piping system in oil and gas industry
description Failure of the duplex stainless steel piping system in oil and gas industry can have disastrous effects. In this study, a novel method of failure analysis of flow-induced vibration problem of in-serviced duplex stainless steel piping system is proposed. The proposed non-destructive technique is able to determine a suitable operating condition for continuous operation without failure. The technique relies on the combined operation of operational modal analysis, operating deflection shape analysis and linear elastic finite element analysis. The effect of different operating conditions for two distinct valve opening cases (i.e. fully opened and partially opened) on the dynamic stress is examined, and they are utilised for forecasting purpose in failure analysis. The result shows that maximum operating conditions are 360 and 400 mmscfd for fully opened and partially opened flow control valves, respectively. Beyond this limit, the piping system most likely will fail.
format Article
author Kong, K.K.
Khoo, S.Y.
Ong, Z.C.
Eng, H.C.
Ismail, Z.
Chong, W.T.
Noroozi, S.
Rahman, A.G.A.
author_facet Kong, K.K.
Khoo, S.Y.
Ong, Z.C.
Eng, H.C.
Ismail, Z.
Chong, W.T.
Noroozi, S.
Rahman, A.G.A.
author_sort Kong, K.K.
title Failure analysis of flow-induced vibration problem of in-serviced duplex stainless steel piping system in oil and gas industry
title_short Failure analysis of flow-induced vibration problem of in-serviced duplex stainless steel piping system in oil and gas industry
title_full Failure analysis of flow-induced vibration problem of in-serviced duplex stainless steel piping system in oil and gas industry
title_fullStr Failure analysis of flow-induced vibration problem of in-serviced duplex stainless steel piping system in oil and gas industry
title_full_unstemmed Failure analysis of flow-induced vibration problem of in-serviced duplex stainless steel piping system in oil and gas industry
title_sort failure analysis of flow-induced vibration problem of in-serviced duplex stainless steel piping system in oil and gas industry
publisher Maney Publishing
publishDate 2014
url http://eprints.um.edu.my/15484/
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