Numerical Investigation of Air Natural Convection in the AP1000 Passive Containment Cooling System Following LBLOCA Using ANSYS FLUENT

Author:

Abdellatif Hossam H.1ORCID,Arcilesi David1

Affiliation:

1. University of Idaho, Department of Nuclear Engineering and Industrial Management, 1776 Science Center Drive, Idaho Falls, Idaho 83402

Publisher

Informa UK Limited

Reference35 articles.

1. Westinghouse AP1000 advanced passive plant

2. Westinghouse AP1000 Design Control Document Rev. 19 U.S. Nuclear Regulatory Commission (2011); https://www.nrc.gov/docs/ML1117/ML11171A500.html (current as of Oct. 20 2023).

3. Analysis of the AP1000® Passive Containment Cooling System Air Flow Path Using Computational Fluid Dynamics;WRIGHT R. F.;Proc. Int. Topl. Mtg. Nuclear Reactor Thermal Hydraulics (NURETH-16), Chicago, Illinois, August 30–September 4, 2015, American Nuclear Society,2015

4. AP1000 Pressurized Water Reactor website Westinghouse Nuclear; https://www.westinghousenuclear.com/energy-systems/ap1000-pwr (current as of Dec. 25 2023).

5. D. R. SPENCER and J. WOODCOCK “AP600 Passive Containment Cooling System Phenomena Identification and Ranking Table ” Proc. 7th Int. Conf. Nuclear Engineering Tokyo Japan April 19–23 1999; https://www.osti.gov/etdeweb/biblio/20055873.

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