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Performance characteristics of a liquid metal MHD generator

Author: Michael Petrick; Kung-You Lee; Argonne National Laboratory.; U.S. Atomic Energy Commission.
Publisher: Argonne, Ill. : Argonne National Laboratory, Reactor Engineering Division, 1964.
Series: ANL (Series), 6870; ANL (Series), 6870.; TID, 4500 34th ed.; AEC research and development report.
Edition/Format:   Print book : National government publication : EnglishView all editions and formats
Summary:
An experimental study was made of the performance characteristics of a liquid metal MHD generator utilizing single-phase sodium-potassium and two-phase sodium-potassium-nitrogen fluids. The purpose of this study was to compare the generator performance with theory for single-phase flow and to determine the effects of the introduction of the gaseous phase on the generator output and efficiency.
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Additional Physical Format: Electronic version :
Petrick, Michael.
Performance characteristics of a liquid metal MHD generator.
Argonne, Ill. : Argonne National Laboratory, Reactor Engineering Division, 1964
(OCoLC)876852996
Material Type: Government publication, National government publication
Document Type: Book
All Authors / Contributors: Michael Petrick; Kung-You Lee; Argonne National Laboratory.; U.S. Atomic Energy Commission.
OCLC Number: 766038342
Notes: "July 1964."
At head of title: Argonne National Laboratory.
Description: 70 pages : illustrations, charts, tables ; 28 cm.
Series Title: ANL (Series), 6870; ANL (Series), 6870.; TID, 4500 34th ed.; AEC research and development report.
Other Titles: Technical Report Archive and Image Library (TRAIL)
Responsibility: Michael Petrick and Kung-You Lee.

Abstract:

An experimental study was made of the performance characteristics of a liquid metal MHD generator utilizing single-phase sodium-potassium and two-phase sodium-potassium-nitrogen fluids. The purpose of this study was to compare the generator performance with theory for single-phase flow and to determine the effects of the introduction of the gaseous phase on the generator output and efficiency.

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