Document IIF
Production d'électricité et récupération de chaleur à partir de la biomasse avec des cycles de puissance thermodynamiques avancés au CO2 : développement de la modélisation et simulation.
Power generation and heat recovery from biomass with advanced CO2 thermodynamic power cycles: modelling development and simulation.
Résumé
A small-scale power generation test system with biomass and CO2 transcritical Brayton cycles has been designed and constructed with purposely selected and manufactured system components. These include a biomass boiler, a CO2 supercritical heater, a CO2 turbine simulator, a CO2 recuperator, a CO2 gas cooler and a CO2 transcritical compressor. The designed performance specifications of each component include the biomass flue gases parameters, the heat exchanger UA values and the compressor performance curves. Accordingly, the system component models are developed and therefore integrated together under TRNSYS simulation platform to establish a model for the biomass-CO2 power generation system. The developed system model will be validated by the system performance measurements in the future. At current stage, the system model is applied to predict the system performance at different operation conditions. These consist of heat source and sink temperatures, and turbine inlet and outlet pressures. The simulation results are essential and significant in understanding the system operations prior to the system measurements and can contribute significantly to the optimal system designs, component selections and controls, and eventually instruct the actual system operations.
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Détails
- Titre original : Power generation and heat recovery from biomass with advanced CO2 thermodynamic power cycles: modelling development and simulation.
- Identifiant de la fiche : 30027771
- Langues : Anglais
- Sujet : Technologie
- Source : IIR Rankine Conference 2020.
- Date d'édition : 31/07/2020
- DOI : http://dx.doi.org/10.18462/iir.rankine.2020.1229
Liens
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Indexation
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Thèmes :
CO2;
Autres systèmes à économie / récupération d'énergie - Mots-clés : Cycle transcritique; CO2; Modélisation; Simulation; Biomasse; Récuperation de chaleur; Brayton; Essai; R744
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