Time-Resolved Temperature Map Prediction of Concentration Photovoltaics Systems by Means of Coupled Ray Tracing Flux Analysis and Thermal Quadrupoles Modelling

Author:

Mateos-Canseco Alejandro,Peña-Cruz Manuel,Díaz-Ponce Arturo,Battaglia Jean-Luc,Pradère Christophe,Patino-Lopez Luis

Abstract

A transient 3D thermal model based on the thermal quadrupole method, coupled to ray tracing analysis, is presented. This methodology can predict transient temperature maps under any time-fluctuating irradiance flux—either synthetic or experimental—providing a useful tool for the design and parametric optimization of concentration photovoltaics systems. Analytic simulations of a concentration photovoltaics system thermal response and assessment of in-plane thermal gradients induced by fast tracking point perturbations, like those induced by wind, are provided and discussed for the first time. Computation times for time-resolved temperature maps can be as short as 9 s for a full month of system operation, with stimuli inspired by real data. Such information could pave the way for more accurate studies of cell reliability under any set of worldwide irradiance conditions.

Funder

Secretaría de Energía

Publisher

MDPI AG

Subject

Energy (miscellaneous),Energy Engineering and Power Technology,Renewable Energy, Sustainability and the Environment,Electrical and Electronic Engineering,Control and Optimization,Engineering (miscellaneous)

Reference55 articles.

1. Current Status of Concentrator Photovoltaic (CPV) Technology;Philipps,2015

2. Non-uniform illumination in concentrating solar cells

3. Effects of Highly Non-uniform Illumination Distribution on Electrical Performance of Solar Cellshttp://hdl.handle.net/1885/40832

4. Simulation Of Deformation Induced Sun Tracking Error In A High Concentrated Photovoltaic System;Lin;AIP Conf. Proc.,2010

5. A comparative analysis of wind pressure on flat and stair-step constructions of solar plant trackers

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