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Analysis of Energy Recovery Out of the Water Supply and Distribution Network of the Brussels Capital Region
by
Nuc, François
, Hendrick, Patrick
in
Belgium
/ Datasets
/ Economic aspects
/ Electricity
/ Energy consumption
/ energy recovery
/ Infrastructure
/ Mathematical functions
/ Optimization
/ pump as turbines
/ Sensors
/ turbine
/ Valves
/ water distribution network
/ Water levels
/ Water supply
/ water supply network
2025
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Analysis of Energy Recovery Out of the Water Supply and Distribution Network of the Brussels Capital Region
by
Nuc, François
, Hendrick, Patrick
in
Belgium
/ Datasets
/ Economic aspects
/ Electricity
/ Energy consumption
/ energy recovery
/ Infrastructure
/ Mathematical functions
/ Optimization
/ pump as turbines
/ Sensors
/ turbine
/ Valves
/ water distribution network
/ Water levels
/ Water supply
/ water supply network
2025
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Do you wish to request the book?
Analysis of Energy Recovery Out of the Water Supply and Distribution Network of the Brussels Capital Region
by
Nuc, François
, Hendrick, Patrick
in
Belgium
/ Datasets
/ Economic aspects
/ Electricity
/ Energy consumption
/ energy recovery
/ Infrastructure
/ Mathematical functions
/ Optimization
/ pump as turbines
/ Sensors
/ turbine
/ Valves
/ water distribution network
/ Water levels
/ Water supply
/ water supply network
2025
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Analysis of Energy Recovery Out of the Water Supply and Distribution Network of the Brussels Capital Region
Journal Article
Analysis of Energy Recovery Out of the Water Supply and Distribution Network of the Brussels Capital Region
2025
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Overview
Water Supply and Distribution Networks (WSDNs) offer underexplored potential for energy recovery. While many studies confirm their technical feasibility, few assess the long-term operational compatibility and economic viability of such solutions. This study evaluates the energy recovery potential of the Brussels Capital Region’s WSDN using four years (2019–2022) of operational data. Rather than focusing on available technologies, the analysis examines whether the real behavior of the network supports sustainable energy extraction. The approach includes network topology identification, theoretical power modeling, and detailed flow and pressure analysis. The Brussels system, composed of a Water Supply Network (WSN) and a Water Distribution Network (WDN), reveals strong disparities: the WSN offers localized opportunities for energy recovery, while the WDN presents significant operational constraints that limit economic viability. Our findings suggest that day-ahead electricity markets provide more suitable valorization pathways than flexibility markets. Most importantly, the study highlights the necessity of long-term behavioral analysis to avoid misleading conclusions based on short-term data and to support informed investment decisions in the urban water–energy nexus.
Publisher
MDPI AG
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