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Proposal of a new design of central solar receiver for pressurised gases and supercritical fluids

María José Montes, Rafael Guédez, D. D'Souza, José Ignacio Linares, José González‐Aguilar, Manuel Romero

2023International Journal of Thermal Sciences14 citationsDOIOpen Access PDF

Abstract

This work presents a novel design of microchannel central receiver for pressurised gases and supercritical fluids in solar tower plants. It consists of a radial arrangement of vertical absorber panels that converge on the central axis of the tower. The absorber panels comprise compact structures, whose compactness is increased in one flow pass compared to the previous one, as the fluid is heated. This concept reduces radiation heat losses due to its light-trapping geometry and increases heat transfer to the thermal fluid without over penalising its pressure drop. For the receiver assessment, it has been developed a thermal resistance model characterising the fluid heating along the panel height and the temperature gradient between parallel channel rows of the compact structure across the panel thickness. Once the thermal and optical boundary conditions are defined, an optimisation analysis of the main geometrical parameters of the receiver has been accomplished. The receiver performance is evaluated by means of a global exergy efficiency referred to the solar subsystem, which computes the receiver heat losses, the fluid pressure drop and the optical efficiency of the heliostat field in which the receiver is integrated. For each parametric optimisation, the configuration that maximises this efficiency is identified.

Topics & Concepts

Pressure dropMechanicsHeat transferSupercritical fluidMaterials scienceWorking fluidThermalHeliostatExergyComputational fluid dynamicsConcentrated solar powerFluid dynamicsWork (physics)OpticsSolar energyThermodynamicsThermal energy storagePhysicsBiologyEcologySolar Thermal and Photovoltaic SystemsPhotovoltaic System Optimization TechniquesHeat Transfer Mechanisms
Proposal of a new design of central solar receiver for pressurised gases and supercritical fluids | Litcius