An efficient analytical form for the period-reactivity relation of beryllium and heavy-water moderated reactors

Author:

Aboanber Ahmed Ebrahim

Publisher

Elsevier BV

Subject

Mechanical Engineering,Waste Management and Disposal,Safety, Risk, Reliability and Quality,General Materials Science,Nuclear Energy and Engineering,Nuclear and High Energy Physics

Reference19 articles.

1. Analytical solution of the point kinetics equations by exponential mode analysis;Aboanber;Prog. Nucl. Energy,2003

2. Generalization of the analytical inversion method for the solution of the point kinetics equations;Aboanber;J. Phys. A: Math. Gen.,2002

3. Bretscher, M.M., 1997. Evaluation of reactor kinetics parameters without the need for perturbation codes. In: International Meeting on Reduced Enrichment for Research and Test, Jackson Hole, Wyoming, USA.

4. Roots and coefficients from the integrals solution of the reactor kinetics equations applicable to uranium-235 fueled, heavy water moderated reactors;Crudele;Nucl. Sci. Eng.,1971

5. Glasstone, S., Edlund, M.C., 1952. The Elements of Nuclear Reactor Theory. D. Van Nostrand Company, Inc.

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2. Mathematical treatment for two-point reactor kinetics model of reflected systems;Progress in Nuclear Energy;2018-05

3. Mittag-Leffler and Padé approximations to stiff fractional two point kinetics equations;Progress in Nuclear Energy;2018-04

4. Spectrum behavior for the nonlinear fractional point reactor kinetics model;Nuclear Science and Techniques;2017-12-29

5. Parameter analysis of neutron point kinetics for nuclear reactors;Nuclear Engineering and Design;2017-07

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