Heat transfer analysis using zinc Ferrite/water (Hybrid) nanofluids in a circular tube: An experimental investigation and development of new correlations for thermophysical and heat transfer properties
Author:
Publisher
Elsevier BV
Subject
Energy Engineering and Power Technology,Renewable Energy, Sustainability and the Environment
Reference73 articles.
1. Enhancing the performance of automotive radiators using nanofluids;Said;Renew Sustain Energy Rev,2019
2. Performance assessment of linear Fresnel solar reflector using MWCNTs/DW nanofluids;Ghodbane;Renewable Energy,2019
3. Heat transfer enhancement and life cycle analysis of a Shell-and-Tube Heat Exchanger using stable CuO/water nanofluid;Said;Sustainable Energy Technol Assess,2019
4. On the performance of nanofluids in APR 1400 PLUS7 assembly: Neutronics;Khuwaileh;Ann Nucl Energy,2020
5. A review on performance and environmental effects of conventional and nanofluid-based thermal photovoltaics;Said;Renew Sustain Energy Rev,2018
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