Techno-economic optimisation of a sodium–chloride salt heat exchanger for concentrating solar power applications

Author:

Guccione SalvatoreORCID,Fontalvo ArmandoORCID,Guedez RafaelORCID,Pye JohnORCID,Savoldi LauraORCID,Zanino RobertoORCID

Funder

Australian Solar Thermal Research Institute

European Commission

Australian National University

Horizon 2020 Framework Programme

Horizon 2020

Publisher

Elsevier BV

Subject

General Materials Science,Renewable Energy, Sustainability and the Environment

Reference50 articles.

1. Armijo, K., 2019. Design Basis for a 2.0 MWth Liquid-HTF Pilot- Scale CSP System. In: Presentation - Asia-Pacific Solar Research Conference. Canberra, Australia.

2. Asselineau, C.-A., Logie, W., Pye, J., Venn, F., Wang, S., Coventry, J., 2020. Design of a heliostat field and liquid sodium cylindrical receiver for the Gen3 Liquids Pathway. In: SolarPACES. Albuquerque.

3. Design Guidance for High Temperature Concentrating Solar Power Components;Barua,2020

4. Delaware method for shellside design;Bell,1988

5. Review of heat transfer fluids in tube-receivers used in concentrating solar thermal systems: Properties and heat transfer coefficients;Benoit;Renew. Sustain. Energy Rev.,2016

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