On-demand operation of a compact solar water heater based on U-pipe evacuated tube solar collector combined with phase change material
Author:
Publisher
Elsevier BV
Subject
General Materials Science,Renewable Energy, Sustainability and the Environment
Reference49 articles.
1. Low temperature latent heat thermal energy storage: heat storage materials;Abhat;Sol. Energy,1983
2. Experimental investigation on the use of water-phase change material storage in conventional solar water heating systems;Al-Hinti;Energy Convers. Manage.,2010
3. Performance evaluation of a solar water heater integrated with a PCM nanocomposite TES at various inclinations;Al-Kayiem;Sol. Energy,2014
4. Thermal performance analysis of a solar water heating system with heat pipe evacuated tube collector using data from a field trial;Ayompe;Sol. Energy,2013
5. Comparative field performance study of flat plate and heat pipe evacuated tube collectors (ETCs) for domestic water heating systems in a temperate climate;Ayompe;Energy,2011
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