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Alameri, Saeed A.
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Alameri, Saeed A.
author Alrwashdeh, Mohammad
Alameri, Saeed A.
spellingShingle Alrwashdeh, Mohammad
Alameri, Saeed A.
AIP Advances
Reactor Monte Carlo (RMC) model validation and verification in compare with MCNP for plate-type reactor
General Physics and Astronomy
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spelling Alrwashdeh, Mohammad Alameri, Saeed A. 2158-3226 AIP Publishing General Physics and Astronomy http://dx.doi.org/10.1063/1.5115807 <jats:p>Traditional neutronics calculations and simulation behavior of plate type research reactors pose a challenge comparing with the conventional pressurized water reactors. This is due to its complex geometry, characteristics, heterogeneity, and neutron leakage that lead to modeling difficulties. The Reactor Monte Carlo code (RMC) is employed in stochastic approach for the neutronic analysis in the plate type research reactor. The goal of this report is to examine the capability and validity of the model built using RMC and compare the results with a well-known Monte Carlo code such as MCNP. The results between RMC and MCNP are in a good agreement for effective multiplications factor (keff), radial power peaking factor, total power peaking factor, and integral and differential control rods worth.</jats:p> Reactor Monte Carlo (RMC) model validation and verification in compare with MCNP for plate-type reactor AIP Advances
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title Reactor Monte Carlo (RMC) model validation and verification in compare with MCNP for plate-type reactor
title_unstemmed Reactor Monte Carlo (RMC) model validation and verification in compare with MCNP for plate-type reactor
title_full Reactor Monte Carlo (RMC) model validation and verification in compare with MCNP for plate-type reactor
title_fullStr Reactor Monte Carlo (RMC) model validation and verification in compare with MCNP for plate-type reactor
title_full_unstemmed Reactor Monte Carlo (RMC) model validation and verification in compare with MCNP for plate-type reactor
title_short Reactor Monte Carlo (RMC) model validation and verification in compare with MCNP for plate-type reactor
title_sort reactor monte carlo (rmc) model validation and verification in compare with mcnp for plate-type reactor
topic General Physics and Astronomy
url http://dx.doi.org/10.1063/1.5115807
publishDate 2019
physical
description <jats:p>Traditional neutronics calculations and simulation behavior of plate type research reactors pose a challenge comparing with the conventional pressurized water reactors. This is due to its complex geometry, characteristics, heterogeneity, and neutron leakage that lead to modeling difficulties. The Reactor Monte Carlo code (RMC) is employed in stochastic approach for the neutronic analysis in the plate type research reactor. The goal of this report is to examine the capability and validity of the model built using RMC and compare the results with a well-known Monte Carlo code such as MCNP. The results between RMC and MCNP are in a good agreement for effective multiplications factor (keff), radial power peaking factor, total power peaking factor, and integral and differential control rods worth.</jats:p>
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description <jats:p>Traditional neutronics calculations and simulation behavior of plate type research reactors pose a challenge comparing with the conventional pressurized water reactors. This is due to its complex geometry, characteristics, heterogeneity, and neutron leakage that lead to modeling difficulties. The Reactor Monte Carlo code (RMC) is employed in stochastic approach for the neutronic analysis in the plate type research reactor. The goal of this report is to examine the capability and validity of the model built using RMC and compare the results with a well-known Monte Carlo code such as MCNP. The results between RMC and MCNP are in a good agreement for effective multiplications factor (keff), radial power peaking factor, total power peaking factor, and integral and differential control rods worth.</jats:p>
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spelling Alrwashdeh, Mohammad Alameri, Saeed A. 2158-3226 AIP Publishing General Physics and Astronomy http://dx.doi.org/10.1063/1.5115807 <jats:p>Traditional neutronics calculations and simulation behavior of plate type research reactors pose a challenge comparing with the conventional pressurized water reactors. This is due to its complex geometry, characteristics, heterogeneity, and neutron leakage that lead to modeling difficulties. The Reactor Monte Carlo code (RMC) is employed in stochastic approach for the neutronic analysis in the plate type research reactor. The goal of this report is to examine the capability and validity of the model built using RMC and compare the results with a well-known Monte Carlo code such as MCNP. The results between RMC and MCNP are in a good agreement for effective multiplications factor (keff), radial power peaking factor, total power peaking factor, and integral and differential control rods worth.</jats:p> Reactor Monte Carlo (RMC) model validation and verification in compare with MCNP for plate-type reactor AIP Advances
spellingShingle Alrwashdeh, Mohammad, Alameri, Saeed A., AIP Advances, Reactor Monte Carlo (RMC) model validation and verification in compare with MCNP for plate-type reactor, General Physics and Astronomy
title Reactor Monte Carlo (RMC) model validation and verification in compare with MCNP for plate-type reactor
title_full Reactor Monte Carlo (RMC) model validation and verification in compare with MCNP for plate-type reactor
title_fullStr Reactor Monte Carlo (RMC) model validation and verification in compare with MCNP for plate-type reactor
title_full_unstemmed Reactor Monte Carlo (RMC) model validation and verification in compare with MCNP for plate-type reactor
title_short Reactor Monte Carlo (RMC) model validation and verification in compare with MCNP for plate-type reactor
title_sort reactor monte carlo (rmc) model validation and verification in compare with mcnp for plate-type reactor
title_unstemmed Reactor Monte Carlo (RMC) model validation and verification in compare with MCNP for plate-type reactor
topic General Physics and Astronomy
url http://dx.doi.org/10.1063/1.5115807