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  5. Simplified Mathematical Model for Computing Draining Operations in Pipelines of Undulating Profiles with Vacuum Air Valves

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Article
English
2020

Simplified Mathematical Model for Computing Draining Operations in Pipelines of Undulating Profiles with Vacuum Air Valves

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0 Files

English
2020
Water
Vol 12 (9)
DOI: 10.3390/w12092544

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Oscar Coronado-hernández
Oscar Coronado-hernández

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Oscar Coronado-hernández
Vicente S. Fuertes-Miquel
Édgar Quiñones-Bolaños
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Abstract

The draining operation involves the presence of entrapped air pockets, which are expanded during the phenomenon occurrence generating drops of sub-atmospheric pressure pulses. Vacuum air valves should inject enough air to prevent sub-atmospheric pressure conditions. Recently, this phenomenon has been studied by the authors with an inertial model, obtaining a complex formulation based on a system composed by algebraic-differential equations. This research simplifies this complex formulation by neglecting the inertial term, thus the Bernoulli’s equation can be used. Results show how the inertial model and the simplified mathematical model provide similar results of the evolution of main hydraulic and thermodynamic variables. The simplified mathematical model is also verified using experimental tests of air pocket pressure, water velocity, and position of the water column.

How to cite this publication

Oscar Coronado-hernández, Vicente S. Fuertes-Miquel, Édgar Quiñones-Bolaños, Gustavo Gatica, Jairo R. Coronado-Hernández (2020). Simplified Mathematical Model for Computing Draining Operations in Pipelines of Undulating Profiles with Vacuum Air Valves. Water, 12(9), pp. 2544-2544, DOI: 10.3390/w12092544.

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Publication Details

Type

Article

Year

2020

Authors

5

Datasets

0

Total Files

0

Language

English

Journal

Water

DOI

10.3390/w12092544

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