Optimisation of thermohydraulic performance of triangular duct solar air heater with alternative dimple shaped protrusion and intrusion on the absorber plate
Author:
Publisher
Elsevier BV
Subject
Fluid Flow and Transfer Processes
Reference62 articles.
1. MPPT-based artificial intelligence techniques for photovoltaic systems and its implementation into field programmable gate array chips: Review of current status and future perspectives;Mellit;Energy,2014
2. Efficiency enhancement in solar air heaters by modification of absorber plate-a review;Aravindh;Int. J. Green Energy,2016
3. Energy and exergy analysis of multi-pass flat plate solar air heater—an analytical approach;Velmurugan;Int. J. Green Energy,2015
4. Efficiency analysis of an air solar flat plate collector in different convection modes;Hematian;Int. J. Green Energy,2015
5. A parametric study of the 2D model of solar air heater with elliptical rib roughness using CFD;Kumar;J. Mech. Sci. Technol.,2017
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