A novel fractional technique for the modified point kinetics equations

A fractional model for the modified point kinetics equations is derived and analyzed. An analytical method is used to solve the fractional model for the modified point kinetics equations. This methodical technique is based on the representation of the neutron density as a power series of the relaxat...

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Main Authors: Ahmed E. Aboanber, Abdallah A. Nahla
Format: Article
Language:English
Published: SpringerOpen 2016-10-01
Series:Journal of the Egyptian Mathematical Society
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S1110256X16300037
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spelling doaj-5350335e6ce547cb898747ecfa7a8a132020-11-25T02:16:15ZengSpringerOpenJournal of the Egyptian Mathematical Society1110-256X2016-10-0124466667110.1016/j.joems.2016.02.001A novel fractional technique for the modified point kinetics equationsAhmed E. AboanberAbdallah A. NahlaA fractional model for the modified point kinetics equations is derived and analyzed. An analytical method is used to solve the fractional model for the modified point kinetics equations. This methodical technique is based on the representation of the neutron density as a power series of the relaxation time as a small parameter. The validity of the fractional model is tested for different cases of step, ramp and sinusoidal reactivity. The results show that the fractional model for the modified point kinetics equations is the best representation of neutron density for subcritical and supercritical reactors.http://www.sciencedirect.com/science/article/pii/S1110256X16300037Point kinetics equationsMulti-group of delayed neutronsRelaxation time effectsRiemann–Liouville definitionFractional calculus
collection DOAJ
language English
format Article
sources DOAJ
author Ahmed E. Aboanber
Abdallah A. Nahla
spellingShingle Ahmed E. Aboanber
Abdallah A. Nahla
A novel fractional technique for the modified point kinetics equations
Journal of the Egyptian Mathematical Society
Point kinetics equations
Multi-group of delayed neutrons
Relaxation time effects
Riemann–Liouville definition
Fractional calculus
author_facet Ahmed E. Aboanber
Abdallah A. Nahla
author_sort Ahmed E. Aboanber
title A novel fractional technique for the modified point kinetics equations
title_short A novel fractional technique for the modified point kinetics equations
title_full A novel fractional technique for the modified point kinetics equations
title_fullStr A novel fractional technique for the modified point kinetics equations
title_full_unstemmed A novel fractional technique for the modified point kinetics equations
title_sort novel fractional technique for the modified point kinetics equations
publisher SpringerOpen
series Journal of the Egyptian Mathematical Society
issn 1110-256X
publishDate 2016-10-01
description A fractional model for the modified point kinetics equations is derived and analyzed. An analytical method is used to solve the fractional model for the modified point kinetics equations. This methodical technique is based on the representation of the neutron density as a power series of the relaxation time as a small parameter. The validity of the fractional model is tested for different cases of step, ramp and sinusoidal reactivity. The results show that the fractional model for the modified point kinetics equations is the best representation of neutron density for subcritical and supercritical reactors.
topic Point kinetics equations
Multi-group of delayed neutrons
Relaxation time effects
Riemann–Liouville definition
Fractional calculus
url http://www.sciencedirect.com/science/article/pii/S1110256X16300037
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