Advanced benchmark of the flow through a mixing vane grid – Large eddy simulation validation

Nuclear Engineering and Design - Tập 381 - Trang 111335 - 2021
Benjamin Farges1, Marie-Charlotte Gauffre2, Sofiane Benhamadouche3, Pierre Badel4, Vincent Faucher5, Guillaume Ricciardi5
1Framatome 10 rue Juliette Récamier, Lyon FR-69006, France
2EDF 19 Rue Pierre Bourdeix, FR-69007 Lyon, France
3EDF Lab, 6 quai Watier, Chatou FR-78400, France
4EDF Lab Boulevard Gaspard Monge, FR-91120 Palaiseau, France
5CEA, DES, IRESNE, Nuclear Technology Department, Center of Cadarache, Saint-Paul-lez-Durance FR-13108, France

Tài liệu tham khảo

Benhamadouche, 2017, On the use of (U)RANS and LES approaches for turbulent incompressible single phase flows in nuclear engineering applications, Nucl. Eng. Des., 312, 2, 10.1016/j.nucengdes.2016.11.002 Benhamadouche, S., Moussou, P., Le-Maître, C., 2009. CFD estimation of the flow-induced vibrations of a fuel rod downstream a mixing grid. Proceedings of PVP 2009 ASME Pressure Vessels and Piping 2009/Creep 8 Conference, July 22-26, Prague, Czech Republic. Benhamadouche, S., Gauffre, M.-C., Badel, P. Wall-modelled large eddy simulation of the flow through PWR fuel assemblies AT ReH=66,000 - Validation on califs experimental setup, International Topical Meeting on Advances in Thermal Hydraulics, ATH 2018 - Embedded Topical Meeting pp. 765-776, 2018. Best practice Guidelines for the use of CFD in Nuclear Reactor Safety Application, Collective document, 2007, OECD Nuclear Energy Agency, Committee on the Safety of Nuclear Installations, NEA/CSNI/R-2007-5. Bieder, 2014, Les analysis of the flow in a simplified pwr assembly with mixing grid, Prog. Nucl. Energy, 75, 15, 10.1016/j.pnucene.2014.03.014 Bieder, 2015, Cfd analysis of the flow in the near wake of a generic pwr mixing grid, Ann. Nucl. Energy, 82, 169, 10.1016/j.anucene.2014.08.004 Chen, 2016, Cfd simulation for the optimal design and utilization of experiment to research the flow process in pwr, Ann. Nucl. Energy, 94, 1, 10.1016/j.anucene.2016.02.007 Cheng, 2017, Cfd analysis of flow field in a rod bundle with multi-grid, Ann. Nucl. Energy, 99, 464, 10.1016/j.anucene.2016.09.053 Delafontaine, 2018, Simulation of unsteady fluid forces on a single rod downstream of mixing grid cell, Nucl. Eng. Des., 332, 38, 10.1016/j.nucengdes.2018.03.010 Ducros, 1999, Subgrid-scale stress modelling based on the square of the velocity gradient tensor, Flow Turbul. Combust., 62 Fournier, 2011, Optimizing Code_Saturne computations on Petascale systems, Computers Fluids, 3 Germano, 1991, A dynamic subgrid‐scale eddy viscosity model, Phys. Fluids, 3, 10.1063/1.857955 In, 2001, Flow analysis for optimum design of mixing vane in a pwr fuel assembly, Nuclear Eng. Technol., 33 Karoutas, 1995, 3-d flow analyses for design of nuclear fuel spacer, 3153 Lee, 2014, Synthesis of the turbulent mixing in a rod bundle with vaned spacer grids based on the oecd-kaeri cfd benchmark exercise, Nucl. Eng. Des., 279, 3, 10.1016/j.nucengdes.2014.03.008 Moreno, 2016 Moreno, 2018, Unsteady Pressure and Velocity Measurements in Rods Bundle Using Grids With and Without Mixing Vanes Païdoussis, 1983, “A review of flow induced vibrations in reactors and reactor components, Nucl. Eng. Des., 74, 31, 10.1016/0029-5493(83)90138-3 Piomelli, 2008, Wall-Layer Models for Large-Eddy Simulations, Progress in Aerospace Sciences, Large Eddy Simulation - Current Capabilities and Areas of Needed Research, 44, 437 “Review of Fuel Failures in Water Cooled Reactors”, IAEA Nuclear Energy Series NF-T-2.1 (2010). Sagaut, 2006 Wells, 2015, Overview of CFD Round Robin Benchmark of the High Fidelity Fuel Rod Bundle NESTOR Experimental Data Xiong, 2018, Cfd simulation of swirling flow induced by twist vanes in a rod bundle, Nucl. Eng. Des., 338, 52, 10.1016/j.nucengdes.2018.08.003