Autor(es):
Casimiro, Sergio ; Cardoso, João P. ; Alarcón-Padilla, Diego-César ; Turchi, Craig ; Ioakimidis, C. ; Mendes, J. Farinha
Data: 2014
Identificador Persistente: http://hdl.handle.net/10400.9/2484
Origem: Repositório do LNEG
Assunto(s): Concentrated solar power; Thermodynamic simulation; Desalination; Multi-effect-desalination; Cogeneration; TRNSYS; Concentrated solar power; Concentrated solar power; Thermodynamic simulation; Thermodynamic simulation; Desalination; Desalination; Multi-effect-desalination; Multi-effect-desalination; Cogeneration; Cogeneration; TRNSYS; TRNSYS
Descrição
This work presents the results of using a new tool to simulate the cogeneration of water and electricity with Concentrating Solar Power (CSP) and Forward Feed Multi-Effect-Desalination (FF-MED) plants, by adding a new functionality to the System Advisor Model (SAM) developed by the US National Renewable Energy Laboratory (NREL). The controlling strategy of the MED model is presented in detail, and a case study application is shown. This study compares the results obtained with a CSP plant operating in San Diego, CA, with four different cooling systems: an MED/Seawater Cooling Circuit (SWCC), dry cooling, wet cooling, and a SWCC standalone. The results show that the usage of an MED/SWCC system in cogeneration with a CSP plant can be feasible and has the potential to be economically interesting.