Analytical calculation method for strain of pipeline with smooth dent based on 3D scanning

Due to its advantages of high accuracy and strong applicability, the evaluation criteria based on dent strain is widely used to evaluate the applicability of buried long-distance pipelines with dents. In order to obtain the more accurate strain value of dent, an analytical calculation method was pro...

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Main Authors: FANG Weilun, ZHANG Hong, YANG Yue, YANG Hong, GAO Hui, LIU Xiaoben
Format: Article
Language:zho
Published: Editorial Office of Oil & Gas Storage and Transportation 2022-12-01
Series:You-qi chuyun
Subjects:
Online Access:http://kykxxb.cumtb.edu.cn/article/10.6047/j.issn.1000-8241.2022.12.008
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author FANG Weilun
ZHANG Hong
YANG Yue
YANG Hong
GAO Hui
LIU Xiaoben
author_facet FANG Weilun
ZHANG Hong
YANG Yue
YANG Hong
GAO Hui
LIU Xiaoben
author_sort FANG Weilun
collection DOAJ
description Due to its advantages of high accuracy and strong applicability, the evaluation criteria based on dent strain is widely used to evaluate the applicability of buried long-distance pipelines with dents. In order to obtain the more accurate strain value of dent, an analytical calculation method was proposed for strain of pipelines with smooth dents based on 3D scanning profile. Specifically, the scanned point cloud data were pre-processed with the reverse engineering software, the smooth dent surface was reconstructed with the cubic B-spline interpolation function, and the point cloud data were divided into the regular grid node coordinates through data gridding. Besides, the displacement and strain of each node after dent deformation were derived based on the thin shell theory and geometrical deformation analysis,with the calculation results compared with that obtained by the finite element method and formula from ASME B31.8.According to the results, the average relative errors of maximum equivalent strain results of inner wall calculated by the proposed analytical calculation method, and formula from ASME B31.8 compared with FEA method are 17.59% and 11.56%, while that of the outer wall are 7.73% and 13.16%, respectively. Hence, the analytical calculation method is more accurate for strain calculation of the outer wall of dent than formula from ASME B31.8. In general, the research results could provide theoretical basis for the field applicability evaluation of pipelines with dents.
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spelling doaj.art-a43df7fd9a0d470f8945cf899a69ad112024-04-15T07:10:56ZzhoEditorial Office of Oil & Gas Storage and TransportationYou-qi chuyun1000-82412022-12-0141121422142910.6047/j.issn.1000-8241.2022.12.00820221208Analytical calculation method for strain of pipeline with smooth dent based on 3D scanningFANG Weilun0ZHANG Hong1YANG Yue2YANG Hong3GAO Hui4LIU Xiaoben5China University of Petroleum(Beijing)//National Engineering Laboratory for Pipeline Safety//MOE Key Laboratory of Petroleum Engineering//Beijing Key Laboratory of Urban Oil and Gas Distribution TechnologyChina University of Petroleum(Beijing)//National Engineering Laboratory for Pipeline Safety//MOE Key Laboratory of Petroleum Engineering//Beijing Key Laboratory of Urban Oil and Gas Distribution TechnologyChina University of Petroleum(Beijing)//National Engineering Laboratory for Pipeline Safety//MOE Key Laboratory of Petroleum Engineering//Beijing Key Laboratory of Urban Oil and Gas Distribution TechnologyChina University of Petroleum(Beijing)//National Engineering Laboratory for Pipeline Safety//MOE Key Laboratory of Petroleum Engineering//Beijing Key Laboratory of Urban Oil and Gas Distribution TechnologyBeijing Institute of Petrochemical Technology//Beijing Key Laboratory of Key Technology and Equipment for Deepwater Oil and Gas PipelinesChina University of Petroleum(Beijing)//National Engineering Laboratory for Pipeline Safety//MOE Key Laboratory of Petroleum Engineering//Beijing Key Laboratory of Urban Oil and Gas Distribution TechnologyDue to its advantages of high accuracy and strong applicability, the evaluation criteria based on dent strain is widely used to evaluate the applicability of buried long-distance pipelines with dents. In order to obtain the more accurate strain value of dent, an analytical calculation method was proposed for strain of pipelines with smooth dents based on 3D scanning profile. Specifically, the scanned point cloud data were pre-processed with the reverse engineering software, the smooth dent surface was reconstructed with the cubic B-spline interpolation function, and the point cloud data were divided into the regular grid node coordinates through data gridding. Besides, the displacement and strain of each node after dent deformation were derived based on the thin shell theory and geometrical deformation analysis,with the calculation results compared with that obtained by the finite element method and formula from ASME B31.8.According to the results, the average relative errors of maximum equivalent strain results of inner wall calculated by the proposed analytical calculation method, and formula from ASME B31.8 compared with FEA method are 17.59% and 11.56%, while that of the outer wall are 7.73% and 13.16%, respectively. Hence, the analytical calculation method is more accurate for strain calculation of the outer wall of dent than formula from ASME B31.8. In general, the research results could provide theoretical basis for the field applicability evaluation of pipelines with dents.http://kykxxb.cumtb.edu.cn/article/10.6047/j.issn.1000-8241.2022.12.008long-distance pipeline3d scanningsmooth dentdent strainanalytical calculation
spellingShingle FANG Weilun
ZHANG Hong
YANG Yue
YANG Hong
GAO Hui
LIU Xiaoben
Analytical calculation method for strain of pipeline with smooth dent based on 3D scanning
You-qi chuyun
long-distance pipeline
3d scanning
smooth dent
dent strain
analytical calculation
title Analytical calculation method for strain of pipeline with smooth dent based on 3D scanning
title_full Analytical calculation method for strain of pipeline with smooth dent based on 3D scanning
title_fullStr Analytical calculation method for strain of pipeline with smooth dent based on 3D scanning
title_full_unstemmed Analytical calculation method for strain of pipeline with smooth dent based on 3D scanning
title_short Analytical calculation method for strain of pipeline with smooth dent based on 3D scanning
title_sort analytical calculation method for strain of pipeline with smooth dent based on 3d scanning
topic long-distance pipeline
3d scanning
smooth dent
dent strain
analytical calculation
url http://kykxxb.cumtb.edu.cn/article/10.6047/j.issn.1000-8241.2022.12.008
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AT yanghong analyticalcalculationmethodforstrainofpipelinewithsmoothdentbasedon3dscanning
AT gaohui analyticalcalculationmethodforstrainofpipelinewithsmoothdentbasedon3dscanning
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