Conjunctive Optimal Operation of Power and Water Networks

Tomer Shmaya, Mashor Housh, Filippo Pecci, Kyri Baker, Joseph Kasprzyk, Avi Ostfeld

Research output: Chapter in Book/Report/Conference proceedingConference contributionpeer-review

Abstract

Power and water networks are massive critical infrastructure systems that are strongly coupled through the power transmitted from the power network to the water network, yet they are commonly operated independently. The resemblance between the two systems is high: a power network comprises a system of power stations, power transmission, and power distribution to individual customers, while a water network likely consists of water sources, regional pipelines, and a distribution system for supplying its end users. The physics of both systems are governed by Kirchhoff's laws of continuity of flow/current at nodes and energy pressure/voltage along paths. Smart joint operation of water and power networks has the potential of saving water, saving energy, and reducing environmental impact. Several studies have dealt with the problem. However, modeling can still be significantly improved, and many different research directions can be explored. The complexity of managing both systems independently differs according to the adopted assumptions and can be as easy as solving a linear programming (LP) problem or can end up as a challenging large-scale mixed integer nonlinear problem (MINLP). The objective of this study is to formulate and solve a conjunctive water-power flow (OWPF) problem for optimizing both systems simultaneously. The formulation and solution scheme will be demonstrated on a small yet general layout of a coupled power-water network.

Original languageEnglish
Title of host publicationWorld Environmental and Water Resources Congress 2023
Subtitle of host publicationAdaptive Planning and Design in an Age of Risk and Uncertainty - Selected Papers from World Environmental and Water Resources Congress 2023
EditorsSajjad Ahmad, Regan Murray
PublisherAmerican Society of Civil Engineers (ASCE)
Pages867-880
Number of pages14
ISBN (Electronic)9780784484852
DOIs
StatePublished - 2023
EventWorld Environmental and Water Resources Congress 2023: Adaptive Planning and Design in an Age of Risk and Uncertainty - Henderson, United States
Duration: 21 May 202325 May 2023

Publication series

NameWorld Environmental and Water Resources Congress 2023: Adaptive Planning and Design in an Age of Risk and Uncertainty - Selected Papers from World Environmental and Water Resources Congress 2023

Conference

ConferenceWorld Environmental and Water Resources Congress 2023: Adaptive Planning and Design in an Age of Risk and Uncertainty
Country/TerritoryUnited States
CityHenderson
Period21/05/2325/05/23

Bibliographical note

Publisher Copyright:
© World Environmental and Water Resources Congress 2023.All rights reserved

ASJC Scopus subject areas

  • Environmental Engineering
  • Management, Monitoring, Policy and Law
  • Pollution
  • Water Science and Technology

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