CFD and DNS methodologies development for fuel bundle simulations

Author:

Baglietto E.,Ninokata H.,Misawa Takeharu

Publisher

Elsevier BV

Subject

Mechanical Engineering,Waste Management and Disposal,Safety, Risk, Reliability and Quality,General Materials Science,Nuclear Energy and Engineering,Nuclear and High Energy Physics

Reference26 articles.

1. Selection of an appropriate turbulence model to evaluate performances of novel fuel geometries for the “IRIS” reactor;Baglietto,2003

2. Simulation of turbulent flow inside tight lattice fuel bundles with an improved non-linear eddy viscosity model;Baglietto,2004

3. CFD modeling of secondary flows in fuel rod bundles;Baglietto,2004

4. CFD modeling of flow in geometrically disturbed rod bundles;Baglietto;Int. J. Heat Technol.,2004

5. Baglietto, E., Ninokata, H., in press. Anisotropic eddy viscosity modeling for application to industrial engineering internal flows. Int. J. Transport Phenomena.

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1. Multiscale Modeling of Flow in Rod Bundles: From Direct Numerical Simulation and Subchannel to Coarse-Mesh CFD;Nuclear Science and Engineering;2024-03-14

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3. Estimation of turbulent energy mixing factor in PWR sub‐channel by DNS;The Canadian Journal of Chemical Engineering;2024-02-06

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5. References;Handbook on Thermal Hydraulics in Water-Cooled Nuclear Reactors;2024

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