Simulation of mixed convection heat transfer to liquid metals in vertical channels and pipes
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Published:2024-11
Issue:
Volume:428
Page:113479
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ISSN:0029-5493
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Container-title:Nuclear Engineering and Design
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language:en
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Short-container-title:Nuclear Engineering and Design
Author:
Dzodzo Milorad B.
Reference19 articles.
1. Bartosiewicz, Y., Duponcheel, M., 2018. Large-eddy simulation: Application to liquid metal fluid flow and heat transfer, Chapter 6.1.2 in Thermal Hydraulics Aspects of Liquid Metal Cooled Nuclear Reactors, Edited by Roelofs, Elsevier. 2. Bolotnov, I., Dihn, N., Iskhakov, A., Tai, C.T., Merzari, E., Nguyen, T., Baglietto, E., Wiser, R., Hassan, Y., Hu, R., Shaver, D., Schunert, S., Choi, H., Jackson, B., Martin, M., Dzodzo, M., 2021. Challenge Problem 1: Benchmark Specifications for the Direct Numerical Simulation of Canonical Flows, NEAMS Integrated Research Project, Thermal Fluids Applications in Nuclear Energy, Nuclear Science and Engineering Division, Argonne National Laboratory, ANL/NSE-21/11, May 21. 3. Scaling and connection with computational fluid dynamics;Dzodzo;Nucl. Eng. Design,2023 4. Dzodzo M.B., 2018. Natural and mixed convection in enclosures containing liquid metals and partition walls. In: Turbulence, Heat and Mass Transfer 9, Proceedings of the Ninth International Symposium On Turbulence, Heat and Mass Transfer, Rio de Janeiro,Brazil, 10-13 July, 2018, Edited by A. P. Silva Freire, K. Hanjalic, K. Suga, D. Borello, M. Haziabdic, pp. 327-330,Begel House Inc., New York, Wallingford (UK), 2018. 5. Dzodzo, M.B., 2019. Natural and mixed convection in rectangular enclosures and channels containing liquid metals and partition walls, TFEC-2019-28098, 4th Thermal and Fluids Engineering Conference (TFEC), pp. 1103-1106, Las Vegas, NV, USA, April 14-17.
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