Magnetohydrodynamic Analyses of a Miniature, Dual-Stage Electromagnetic Pump for Lead and Sodium In-Pile Test Loops

Author:

Altamimi Ragai12,El-Genk Mohamed S.1234ORCID

Affiliation:

1. The University of New Mexico, Institute for Space and Nuclear Power Studies, Albuquerque, New Mexico

2. The University of New Mexico, Nuclear Engineering Department, Albuquerque, New Mexico

3. The University of New Mexico, Mechanical Engineering Department, Albuquerque, New Mexico

4. The University of New Mexico, Chemical and Biological Engineering Department, Albuquerque, New Mexico

Funder

Battelle Energy Alliance, LLC

University of New Mexico

UNM Institute for Space and Nuclear Power Studies

Office of Nuclear Energy of the U.S. Department of Energy and the Nuclear Science User Facilities

Publisher

Informa UK Limited

Subject

Nuclear Energy and Engineering

Reference30 articles.

1. R. S. BAKER and M. J. TESSIER, Handbook of Electromagnetic Pump Technology, Elsevier Science Publishing, New York (1987).

2. Performance Testing of Indigenously Developed DC Conduction Pump for Sodium Cooled Fast Reactor;NASHINE B.;Indian J. Eng. Mater. Sci.,2007

3. Numerical analysis of the electromagnetic force for design optimization of a rectangular direct current electromagnetic pump

4. Equivalent Circuit Model for Predicting the Performance Characteristics of Direct Current-Electromagnetic Pumps;ALTAMIMI R.;J. Mater. Sci. Eng.,2023

5. M. S. EL-GENK, J. J. BUKSA, and J. T. SEO, “A Self-Induced Thermoelectric Electromagnetic Pump Model for SP-100 Systems,” Space Nuclear Power Systems 1987, p. 161, M. S. EL-GENK and M. D. HOOVER, Eds., CONF-860102, Orbit Book Company, Malabar, Florida (1987).

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