Dynamic behavior of axially functionally graded pipe conveying gas–liquid two-phase flow
The dynamic behavior of an axially functionally graded pipeline conveying gas–liquid two-phase flow is studied using the Euler–Bernoulli beam model and the generalized integral transform method (GITT). The influence of changes in functionally graded material parameters, boundary conditions, and gas volumetric fraction of two-phase flow on the linear stability of functionally graded pipes is investigated. The results indicate that the gradient of elastic modulus has a significant influence on the complex frequency, critical velocity for instability, and coupling flutter of the functionally graded pipeline. Additionally, the gradient of density has a significant effect on the complex frequency of the functionally graded pipe. The boundary conditions of the pipe have a significant influence on its dynamic response. The pipe exhibits higher stability when both ends are fixed, followed by the combination of fixed support and simple support. Conversely, the condition of simply supported at both ends is the most susceptible to instability. The gas volumetric fraction also plays a significant role in the dynamic behavior of functionally graded pipes conveying gas–liquid two-phase fluids.
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Availability:
- Find a library where document is available. Order URL: http://worldcat.org/issn/01411187
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Supplemental Notes:
- © 2023 Elsevier Ltd. All rights reserved. Abstract reprinted with permission of Elsevier.
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Authors:
- Fu, Guangming
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0000-0001-8726-0523
- Wang, Xiao
- Wang, Boying
- Su, Jian
- Wang, Kai
- Sun, Baojiang
- Publication Date: 2024-1
Language
- English
Media Info
- Media Type: Web
- Features: Figures; References; Tables;
- Pagination: 103827
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Serial:
- Applied Ocean Research
- Volume: 142
- Issue Number: 0
- Publisher: Elsevier
- ISSN: 0141-1187
- Serial URL: https://www.sciencedirect.com/journal/applied-ocean-research
Subject/Index Terms
- TRT Terms: Composite materials; Mechanical stability; Two phase flow; Underwater pipelines
- Subject Areas: Materials; Pipelines;
Filing Info
- Accession Number: 01907678
- Record Type: Publication
- Files: TRIS
- Created Date: Feb 9 2024 2:51PM