A novel high temperature electrical storage heater using an inorganic salt based composite phase change material
Author:
Affiliation:
1. Birmingham Centre for Energy Storage (BCES) & School of Chemical EngineeringUniversity of Birmingham Birmingham UK
2. Jiangsu Jinhe Energy Science & Technology Co. Ltd. Jurong Jiangsu Province China
Funder
Engineering and Physical Sciences Research Council
British Council
Publisher
Wiley
Link
https://onlinelibrary.wiley.com/doi/pdf/10.1002/est2.88
Reference32 articles.
1. The ugly duckling
2. Experimental study on an integrated collector storage solar air heater based on flat micro-heat pipe arrays
3. World Health Organization (WHO). Residential heating with wood and coal: health impacts and policy options in Europe and North America.2015 ISBN: 978 92 890 50760.
4. Integrated modeling of active demand response with electric heating systems coupled to thermal energy storage systems
5. Experimental study on the new type of electrical storage heater based on flat micro-heat pipe arrays
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