Design, simulation and optimization of a solar dish collector with spiral-coil thermal absorber

Author:

Pavlovic Sasa1,Bellos Evangelos2,Stefanovic Velimir1,Tzivanidis Christos2,Stamenkovic Zoran3ORCID

Affiliation:

1. Faculty of Mechanical Engineering, Department of Energetics and Process technique, Niš

2. National Technical University of Athens, School of Mechanical Engineering, Thermal Energy Department, Athens, Greece

3. Faculty of Mechanical Engineering, Department of Energetics and Process technique, Laboratory for Intelligent Production Systems, Niš

Abstract

The efficient conversion of solar radiation into heat at high temperature levels requires the use of concentrating solar collectors. The goal of this paper is to present the optical and the thermal analysis of a parabolic dish concentrator with a spiral coil receiver. The parabolic dish reflector consists of 11 curvilinear trapezoidal reflective petals constructed by PMMA with silvered mirror layer and has a diameter of 3.8 m, while its focal distance is 2.26m. This collector is designed with commercial software SolidWorks and simulated, optically and thermally in its Flow Simulation Studio. The optical analysis proved that the ideal position of the absorber is at 2.1m from the reflector in order to maximize the optical efficiency and to create a relative uniform heat flux over the absorber. In thermal part of the analysis, the energetic efficiency was calculated approximately 65%, while the exergetic efficiency is varied from 4% to 15% according to the water inlet temperature. Moreover, other important parameters as the heat flux and temperature distribution over the absorber are presented. The pressure drop of the absorber coil is calculated at 0.07bar, an acceptable value.

Publisher

National Library of Serbia

Subject

Renewable Energy, Sustainability and the Environment

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