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  5. Concerning Dynamic Effects in Pipe Systems with Two-Phase Flows: Pressure Surges, Cavitation, and Ventilation

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Article
English
2022

Concerning Dynamic Effects in Pipe Systems with Two-Phase Flows: Pressure Surges, Cavitation, and Ventilation

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0 Files

English
2022
Water
Vol 14 (15)
DOI: 10.3390/w14152376

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Alberto Patino Vanegas
Alberto Patino Vanegas

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Helena M. Ramos
Alberto Patino Vanegas
Elias Tasca
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Abstract

The risks associated with unsteady two-phase flows in pressurized pipe systems must be considered both in system design and operation. To this end, this paper summarizes experimental tests and numerical analyses that highlight key aspects of unsteady two-phase flows in water pipelines. The essential dynamics of air–water interactions in unvented lines are first considered, followed by a summary of how system dynamics change when air venting is provided. System behaviour during unsteady two-phase flows is shown to be counter-intuitive, surprising, and complex. The role of air valves as protection devices is considered as is the reasonableness of the usual assumptions regarding air valve behaviour. The paper then numerically clarifies the relevance of cavitation and air valve performance to both the predicted air exchanges through any installed air valves and their role in modifying system behaviour during unsteady flows.

How to cite this publication

Helena M. Ramos, Alberto Patino Vanegas, Elias Tasca, Oscar Coronado-hernández, Mohsen Besharat, Ling Zhou, Bryan Karney (2022). Concerning Dynamic Effects in Pipe Systems with Two-Phase Flows: Pressure Surges, Cavitation, and Ventilation. Water, 14(15), pp. 2376-2376, DOI: 10.3390/w14152376.

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Publication Details

Type

Article

Year

2022

Authors

7

Datasets

0

Total Files

0

Language

English

Journal

Water

DOI

10.3390/w14152376

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