Numerical Analysis of Crack Failure in Reinforced Thermoplastic Pipe (RTP)
Composite pipeline is well known now because they are able to show that they can drastically reduce losses caused by corrosion which usually occurs in conventional metal pipes in the oil and gas industry. RTP consist of three layers which are the inner liner, helically winded reinforced layers made...
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my-utp-utpedia.172942017-03-16T08:31:57Z http://utpedia.utp.edu.my/17294/ Numerical Analysis of Crack Failure in Reinforced Thermoplastic Pipe (RTP) Edmund, Jonathan Emmanuel TA Engineering (General). Civil engineering (General) Composite pipeline is well known now because they are able to show that they can drastically reduce losses caused by corrosion which usually occurs in conventional metal pipes in the oil and gas industry. RTP consist of three layers which are the inner liner, helically winded reinforced layers made of thermoplastic polyethylene (fibre-reinforced PE) or armoured wired and an outer thermoplastic cover. Multiple modeling and test have been conducted to determine maximum stress and strain a RTP can withstand before hitting failure. IRC 2016-01 Final Year Project NonPeerReviewed application/pdf en http://utpedia.utp.edu.my/17294/1/Numerical%20Analysis%20of%20Crack%20Failure%20on%20Reinforced%20Thermoplastic%20Pipe%20%28FINAL%29%29.pdf Edmund, Jonathan Emmanuel (2016) Numerical Analysis of Crack Failure in Reinforced Thermoplastic Pipe (RTP). IRC, Universiti Teknologi PETRONAS. (Submitted) |
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TA Engineering (General). Civil engineering (General) Edmund, Jonathan Emmanuel Numerical Analysis of Crack Failure in Reinforced Thermoplastic Pipe (RTP) |
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Composite pipeline is well known now because they are able to show that they can drastically reduce losses caused by corrosion which usually occurs in conventional metal pipes in the oil and gas industry. RTP consist of three layers which are the inner liner, helically winded reinforced layers made of thermoplastic polyethylene (fibre-reinforced PE) or armoured wired and an outer thermoplastic cover. Multiple modeling and test have been conducted to determine maximum stress and strain a RTP can withstand before hitting failure. |
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Final Year Project |
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Edmund, Jonathan Emmanuel |
author_facet |
Edmund, Jonathan Emmanuel |
author_sort |
Edmund, Jonathan Emmanuel |
title |
Numerical Analysis of Crack Failure in Reinforced Thermoplastic Pipe (RTP) |
title_short |
Numerical Analysis of Crack Failure in Reinforced Thermoplastic Pipe (RTP) |
title_full |
Numerical Analysis of Crack Failure in Reinforced Thermoplastic Pipe (RTP) |
title_fullStr |
Numerical Analysis of Crack Failure in Reinforced Thermoplastic Pipe (RTP) |
title_full_unstemmed |
Numerical Analysis of Crack Failure in Reinforced Thermoplastic Pipe (RTP) |
title_sort |
numerical analysis of crack failure in reinforced thermoplastic pipe (rtp) |
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IRC |
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2016 |
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http://utpedia.utp.edu.my/17294/1/Numerical%20Analysis%20of%20Crack%20Failure%20on%20Reinforced%20Thermoplastic%20Pipe%20%28FINAL%29%29.pdf http://utpedia.utp.edu.my/17294/ |
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