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research article

Simulated Annealing in Optimization of Energy Production in a Water Supply Network

Almeida Samora, Irene  
•
Franca, Mário J.  
•
Schleiss, Anton  
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2016
Water Resources Management -Dordrecht-

In water supply systems, the potential exists for micro-hydropower that uses the pressure excess in the networks to produce electricity. However, because urban drinking water networks are complex systems in which flows and pressure vary constantly, identification of the ideal locations for turbines is not straightforward, and assessment implies the need for simulation. In this paper, an optimization algorithm is proposed to provide a selection of optimal locations for the installation of a given number of turbines in a distribution network. A simulated annealing process was developed to optimize the location of the turbines by taking into account the hourly variation of flows throughout an average year and the consequent impact of this variation on the turbine efficiency. The optimization is achieved by considering the characteristic and efficiency curves of a turbine model for different impeller diameters as well as simulations of the annual energy production in a coupled hydraulic model. The developed algorithm was applied to the water supply system of the city Lausanne (Switzerland). This work focuses on the definition of the neighborhood of the simulated annealing process and the analysis of convergence towards the optimal solution for different restrictions and numbers of installed turbines.

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Type
research article
DOI
10.1007/s11269-016-1238-5
Web of Science ID

WOS:000369520100014

Author(s)
Almeida Samora, Irene  
Franca, Mário J.  
Schleiss, Anton  
Ramos, Helena M.
Date Issued

2016

Publisher

Springer Verlag

Published in
Water Resources Management -Dordrecht-
Volume

30

Issue

4

Start page

1533

End page

1547

Subjects

Micro-hydropower

•

Water supply systems

•

Pipeline network

•

Optimization

•

Simulated annealing

Note

[1055]

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
PL-LCH  
Available on Infoscience
February 10, 2016
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/123388
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