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JELENÍKOVÁ, I. ŠIKULA, O. PERÁČKOVÁ, J.
Original Title
Simulation of the influence of particle deposition on the inner surface corrosion of the water pipes
Type
conference paper
Language
English
Original Abstract
In water distribution systems can be found particles of rust and other mechanical contaminants. The particles are deposited in locations where the low velocity of water flow. Where a can cause the pitting corrosion. Is a concern in the systems made of galvanized steel pipes. The contribution deals with CFD (Computational Fluid Dynamics) simulations of water flow and particles deposition in water distribution system. CFD Simulations were compared with the corrosive deposits in real pipeline. Corrosion is a spontaneous process of destruction of metal material due to electrochemical reactions of metal with the aggressive surrounding. Electrochemical corrosion is caused by the thermodynamic instability of metal and therefore can not be completely suppress, it can only influence the speed of corrosion. The requirement is to keep metal properties during the whole its lifetime. Requested service lifetime the water pipe according to EN 806-2 is 50 years.
Keywords
CFD (Computational Fluid Dynamics) simulation, pipes
Authors
JELENÍKOVÁ, I.; ŠIKULA, O.; PERÁČKOVÁ, J.
RIV year
2012
Released
25. 4. 2012
Publisher
Department of Power Engineering, University of Žilina
Location
Žilina
ISBN
978-80-554-0516-2
Book
Proceedings of the XVIII. International Scientific Conference THE APLICATION OF EXPERIMENTAL AND NUMERICAL METHODS IN FLUID MECHANICS AND ENERGY 2012
Edition number
1
Pages from
106
Pages to
113
Pages count
8
BibTex
@inproceedings{BUT91846, author="Ivana {Jeleníková} and Ondřej {Šikula} and Jana {Peráčková}", title="Simulation of the influence of particle deposition on the inner surface corrosion of the water pipes", booktitle="Proceedings of the XVIII. International Scientific Conference THE APLICATION OF EXPERIMENTAL AND NUMERICAL METHODS IN FLUID MECHANICS AND ENERGY 2012", year="2012", number="1", pages="106--113", publisher="Department of Power Engineering, University of Žilina", address="Žilina", isbn="978-80-554-0516-2" }