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Availability Projections of Hydroelectric Power Plants through Monte Carlo Simulation
by
Oliveira, Marcos Tadeu Barros de
, Marcato, André Luís Marques
, Junqueira, Giovani Santiago
, Silva, Patrícia de Sousa Oliveira
, Oliveira, Elisa
in
Availability Factor
/ Energy
/ Fines & penalties
/ forced shutdown
/ generating units
/ Hydroelectric plants
/ Hydroelectric power
/ Hydrology
/ Influence
/ Monte Carlo simulation
/ operation optimization
/ Optimization
/ Preventive maintenance
/ risk analysis
/ Risk assessment
/ Schedules
/ Shutdowns
2021
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Availability Projections of Hydroelectric Power Plants through Monte Carlo Simulation
by
Oliveira, Marcos Tadeu Barros de
, Marcato, André Luís Marques
, Junqueira, Giovani Santiago
, Silva, Patrícia de Sousa Oliveira
, Oliveira, Elisa
in
Availability Factor
/ Energy
/ Fines & penalties
/ forced shutdown
/ generating units
/ Hydroelectric plants
/ Hydroelectric power
/ Hydrology
/ Influence
/ Monte Carlo simulation
/ operation optimization
/ Optimization
/ Preventive maintenance
/ risk analysis
/ Risk assessment
/ Schedules
/ Shutdowns
2021
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Availability Projections of Hydroelectric Power Plants through Monte Carlo Simulation
by
Oliveira, Marcos Tadeu Barros de
, Marcato, André Luís Marques
, Junqueira, Giovani Santiago
, Silva, Patrícia de Sousa Oliveira
, Oliveira, Elisa
in
Availability Factor
/ Energy
/ Fines & penalties
/ forced shutdown
/ generating units
/ Hydroelectric plants
/ Hydroelectric power
/ Hydrology
/ Influence
/ Monte Carlo simulation
/ operation optimization
/ Optimization
/ Preventive maintenance
/ risk analysis
/ Risk assessment
/ Schedules
/ Shutdowns
2021
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Availability Projections of Hydroelectric Power Plants through Monte Carlo Simulation
Journal Article
Availability Projections of Hydroelectric Power Plants through Monte Carlo Simulation
2021
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Overview
The present work proposes a Monte Carlo Simulation (MCS) to obtain availability projections for Hydroelectric Power Plants (HPP), based mainly on regulatory aspects involving the Availability Factor (AFA). The main purpose of the simulation is to generate scenarios to obtain statistics for risk analysis and decision-making in relation to the HPP. The proposed methodology consists of two steps, firstly, the optimization of the maintenance schedule of the hydroelectric plant is carried out, in order to allocate the mandatory maintenance in the simulation horizon. Then, for the MCS, scenarios of forced shutdowns of the Generating Units (GU) will be generated, which directly influence the operation and, consequently, the availability of the HPP. The scenarios will be inserted into an operation optimization model, which considers the impact of forced shutdown samples on the MCS. The proposed modeling was applied using real data from the Santo Antônio HPP, which is one of the largest hydroelectric plants in Brazil.
Publisher
MDPI AG
Subject
/ Energy
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