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  5. Computational fluid dynamics for sub-atmospheric pressure analysis in pipe drainage

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Article
English
2019

Computational fluid dynamics for sub-atmospheric pressure analysis in pipe drainage

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English
2019
Journal of Hydraulic Research
Vol 58 (4)
DOI: 10.1080/00221686.2019.1625819

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Oscar Coronado-hernández
Oscar Coronado-hernández

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Mohsen Besharat
Oscar Coronado-hernández
Vicente S. Fuertes-Miquel
+2 more

Abstract

The occurrence of sub-atmospheric pressure in the drainage of pipelines containing an air pocket has been known as a major cause of several serious problems. Accordingly, some system malfunction and pipe buckling events have been reported in the literature. This case has been studied experimentally and numerically in the current research considering objectives for a better understanding of: (i) the emptying process, (ii) the main parameters influencing the drainage, and (iii) the air-water interface deformation. Also, this research demonstrates the ability of a computational fluid dynamic (CFD) model in the simulation of this event. The effects of the air pocket size, the percentage and the time of valve opening on the pressure variation have been studied. Results show the pipeline drainage mostly occurs due to backflow air intrusion. The worst case scenario is associated with a fast valve opening when a tiny air pocket exists in the pipeline.

How to cite this publication

Mohsen Besharat, Oscar Coronado-hernández, Vicente S. Fuertes-Miquel, Teresa Viseu, Helena M. Ramos (2019). Computational fluid dynamics for sub-atmospheric pressure analysis in pipe drainage. Journal of Hydraulic Research, 58(4), pp. 553-565, DOI: 10.1080/00221686.2019.1625819.

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Publication Details

Type

Article

Year

2019

Authors

5

Datasets

0

Total Files

0

Language

English

Journal

Journal of Hydraulic Research

DOI

10.1080/00221686.2019.1625819

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