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A Decision Support System to Enhance Electricity Grid Resilience against Flooding Disasters

Authors :
Michael Violante
Hassan Davani
Saeed D. Manshadi
Source :
Water; Volume 14; Issue 16; Pages: 2483
Publication Year :
2022
Publisher :
Research Square Platform LLC, 2022.

Abstract

In different areas across the U.S., there are utility poles and other critical infrastructure that are vulnerable to flooding damage. The goal of this multidisciplinary research is to assess and minimize the probability of utility pole failure through conventional hydrological, hydrostatic, and geotechnical calculations embedded to a unique mixed-integer linear programming (MILP) optimization framework. Once the flow rates that cause utility pole overturn are determined, the most cost-efficient subterranean pipe network configuration can be created that will allow for flood waters to be redirected from vulnerable infrastructure elements. The optimization framework was simulated using the Julia scientific programming language, for which the JuMP interface and Gurobi solver package were employed to solve a minimum cost network flow objective function given the numerous decision variables and constraints across the network. We implemented our optimization framework in three different watersheds across the U.S. These watersheds are located near Whittier, NC; Leadville, CO; and London, AR. The implementation of a minimum cost network flow optimization model within these watersheds produced results demonstrating that the necessary amount of flood waters could be conveyed away from utility poles to prevent failure by flooding.

Details

Database :
OpenAIRE
Journal :
Water; Volume 14; Issue 16; Pages: 2483
Accession number :
edsair.doi.dedup.....7aa60667a885a241e4baf1980fa06048
Full Text :
https://doi.org/10.21203/rs.3.rs-1000967/v1