Impact of a Single Spoiler on Scouring Depth Status Beneath a River Crossing Inclined Pipeline

Deep river crossing pipelines utilized to carry fluids are often placed upon the sand bed. Placement of pipe on the non-smooth bed would result in the production of some local gaps beneath the pipe. Asymmetric scouring is one of the main reasons for pipe underwater failures which are significant in...

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Main Authors: S. Abbasi, M. Masoomi, S. A. Arjmandi
Format: Article
Language:English
Published: D. G. Pylarinos 2018-10-01
Series:Engineering, Technology & Applied Science Research
Subjects:
Online Access:https://etasr.com/index.php/ETASR/article/view/2152
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spelling doaj-9810a82f13574cb99638bd810e1f35672020-12-02T17:08:54ZengD. G. PylarinosEngineering, Technology & Applied Science Research2241-44871792-80362018-10-0185601Impact of a Single Spoiler on Scouring Depth Status Beneath a River Crossing Inclined PipelineS. Abbasi0M. Masoomi1S. A. Arjmandi2Department of Civil Engineering, University of Zanjan, Zanjan, IranDepartment of Civil Engineering, University of Zanjan, Zanjan, IranDepartment of Civil Engineering, University of Zanjan, Zanjan, IranDeep river crossing pipelines utilized to carry fluids are often placed upon the sand bed. Placement of pipe on the non-smooth bed would result in the production of some local gaps beneath the pipe. Asymmetric scouring is one of the main reasons for pipe underwater failures which are significant in pipeline management. So, in designing pipelines, knowing the interaction between pipelines and bed, and predicting the scour depth with respect to the pipe distance from the bed is significant to ensure that the pipe will finally deposit on the bed. Numerical models have been developed for predicting the balance depth of scouring beneath the pipelines. In this paper, the impact of pipe orientation on maximum scour depth beneath the pipelines is investigated. To do this, a pipe is modeled with various angles with the flow. To manage the local scouring, some spoilers are placed and modeled upon some pipes too. Also, in order to know the effects of placement of a pipe at various distances from the bed, the impact of placement of each pipe at a distance of 0.2D, 0.4D and 0.6D is investigated as well. To model the pipe with and without a spoiler, the finite element model Flow-3D is utilized and the results show good accordance with previous experimental studies and proof the current model’s precision in predicting the scour depth. Results show that in the placement of the pipe in angles not investigated before and also with the installing of a spoiler, the scour process has a reverse ratio with the distance which would result in full deposition of the pipe on the bed. The least scour depth belongs to the condition in which the pipe has a 130° angle with the side wall. https://etasr.com/index.php/ETASR/article/view/2152Flow-3Dpipelinepipe orientationpipe with spoilerscouring
collection DOAJ
language English
format Article
sources DOAJ
author S. Abbasi
M. Masoomi
S. A. Arjmandi
spellingShingle S. Abbasi
M. Masoomi
S. A. Arjmandi
Impact of a Single Spoiler on Scouring Depth Status Beneath a River Crossing Inclined Pipeline
Engineering, Technology & Applied Science Research
Flow-3D
pipeline
pipe orientation
pipe with spoiler
scouring
author_facet S. Abbasi
M. Masoomi
S. A. Arjmandi
author_sort S. Abbasi
title Impact of a Single Spoiler on Scouring Depth Status Beneath a River Crossing Inclined Pipeline
title_short Impact of a Single Spoiler on Scouring Depth Status Beneath a River Crossing Inclined Pipeline
title_full Impact of a Single Spoiler on Scouring Depth Status Beneath a River Crossing Inclined Pipeline
title_fullStr Impact of a Single Spoiler on Scouring Depth Status Beneath a River Crossing Inclined Pipeline
title_full_unstemmed Impact of a Single Spoiler on Scouring Depth Status Beneath a River Crossing Inclined Pipeline
title_sort impact of a single spoiler on scouring depth status beneath a river crossing inclined pipeline
publisher D. G. Pylarinos
series Engineering, Technology & Applied Science Research
issn 2241-4487
1792-8036
publishDate 2018-10-01
description Deep river crossing pipelines utilized to carry fluids are often placed upon the sand bed. Placement of pipe on the non-smooth bed would result in the production of some local gaps beneath the pipe. Asymmetric scouring is one of the main reasons for pipe underwater failures which are significant in pipeline management. So, in designing pipelines, knowing the interaction between pipelines and bed, and predicting the scour depth with respect to the pipe distance from the bed is significant to ensure that the pipe will finally deposit on the bed. Numerical models have been developed for predicting the balance depth of scouring beneath the pipelines. In this paper, the impact of pipe orientation on maximum scour depth beneath the pipelines is investigated. To do this, a pipe is modeled with various angles with the flow. To manage the local scouring, some spoilers are placed and modeled upon some pipes too. Also, in order to know the effects of placement of a pipe at various distances from the bed, the impact of placement of each pipe at a distance of 0.2D, 0.4D and 0.6D is investigated as well. To model the pipe with and without a spoiler, the finite element model Flow-3D is utilized and the results show good accordance with previous experimental studies and proof the current model’s precision in predicting the scour depth. Results show that in the placement of the pipe in angles not investigated before and also with the installing of a spoiler, the scour process has a reverse ratio with the distance which would result in full deposition of the pipe on the bed. The least scour depth belongs to the condition in which the pipe has a 130° angle with the side wall.
topic Flow-3D
pipeline
pipe orientation
pipe with spoiler
scouring
url https://etasr.com/index.php/ETASR/article/view/2152
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