CFD prediction of heat transfer at supercritical pressure with rough walls: Parametric analyses and comparison with experimental data

Author:

Kassem S.,Pucciarelli A.ORCID,Ambrosini W.ORCID

Funder

Xi'an Eurasia University

Euratom Research and Training Programme

H2020 Euratom

Publisher

Elsevier BV

Subject

Nuclear Energy and Engineering

Reference31 articles.

1. A methodology for including wall roughness effects in k-ɛ low-Reynolds turbulence models-Part I and Part II: Part I. Basis of the methodology;Ambrosini;Nucl. Eng. Design,2015

2. On the mechanism of final heat transfer restoration at the transition to gas-like fluid at supercritical pressure: A description by CFD analyses;Buzzi;Nucl. Eng. Des.,2019

3. Experimental study on the effect of wall roughness on heat transfer characteristics of supercritical carbon dioxide in vertical tubes;Chen;Int. J. Heat Mass Transf.,2022

4. Convective Boiling and Condensation;Collier,1996

5. De Angelis, A., Pucciarelli, A., Kassem, S., Ambrosini, W., 2021, Advances in the development of a fluid-to-fluid similarity theory for fluids at supercritical pressure: results from sensitivity analyses, Proceedings of the 2021 28th International Conference on Nuclear Engineering, ICONE28, August 4–6, 2021, Virtual, Online, ICONE28-64713.

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