Thermohydraulic performance of water mixed Al2O3,TiO2 and graphene-oxide nanoparticles for nuclear fuel triangular subchannel
Author:
Publisher
Elsevier BV
Subject
Fluid Flow and Transfer Processes
Reference62 articles.
1. Computational assessment of thermo-hydraulic performance of al2o3-water nanofluid in hexagonal rod-bundles subchannel;Ahmed;Prog. Nucl. Energy,2021
2. Numerical investigation of the thermo-hydraulic performance of water-based nanofluids in a dimpled channel flow using al2o3, cuo, and hybrid al2o3–cuo as nanoparticles;Ahmed;Heat Transfer.,2021
3. The impact of d-shaped jaggedness on heat transfer enhancement technique using al2o3 based nanoparticles;Ahmed;Int. J. Thermofluids,2021
4. Cfd validation with optimized mesh using benchmarking data of pebble-bed high-temperature reactor;Ahmed;Prog. Nucl. Energy,2021
5. Analysis of single phase, discrete and mixture models, in predicting nanofluid transport;Albojamal;Int. J. Heat Mass Transf.,2017
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