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Thursday, July 16, 2020 | History

3 edition of MHD ETF conceptual design. found in the catalog.

MHD ETF conceptual design.

Westinghouse Electric Corporation. Advanced Energy Systems Division

MHD ETF conceptual design.

by Westinghouse Electric Corporation. Advanced Energy Systems Division

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Published by Dept. of Energy, forsale by the National Technical Information Service] in [Washington], [Springfield, Va .
Written in English

    Subjects:
  • Magnetohydrodynamic generators -- Designs and plans.

  • Edition Notes

    ContributionsUnited States. Dept. of Energy.
    The Physical Object
    Paginationv. :
    ID Numbers
    Open LibraryOL17649390M

      15 Best Modern Design Portfolios of Having a beautifully designed portfolio is a must for every web and graphic designer. It’s the most important factor that helps to set yourself apart from the amateurs and show professionalism. Journal Article: Design of closed-cycle MHD generator with nonequilibrium ionization and system.

    Design and test MHD components and sub-systems and to integrate these into system tests to be conducted in the pilot scale Engineering Test Facility (ETF) which could be available as early as 2. Mid-Term Objective () To develop and operate a colmercial scale demonstration MHD electric. Modern Home Design, MHD; Modern House Design, MHD; Small House Design, SHD; Small House Design, SHD; Search By Architectural Style. Bungalow House Designs Contemporary House Designs Modern House Designs One Story House Designs Two Story House Designs. Login. Username. Password.

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MHD ETF conceptual design by Westinghouse Electric Corporation. Advanced Energy Systems Division Download PDF EPUB FB2

Get this from a library. MHD ETF conceptual design. [Westinghouse Electric Corporation. Advanced Energy Systems Division.; United States. Department of Energy.]. Magnetohydrodynamics (MHD) Engineering Test Facility (ETF) MWe power plant. Conceptual Design Engineering Report (CDER). Volume 1: Executive summary - Kindle edition by NASA, National Aeronautics and Space Administration.

Download it once and read it on your Kindle device, PC, phones or : National Aeronautics and Space Administration NASA. MHD ETF conceptual design. Volume I. Summary and recommendations. Technical Report Retallick, F.D. Three conceptual designs of an MHD Engineering Test Facility (ETF) were defined.

The first concept designated, ETF-1 is a complete MHD-steam powerplant with all of the features expected in a large scale commercial unit. The facility was sized. The procedures and computations used to identify an MHD channel for a mW(I) EFT-scale plant are presented. Under the assumed constraints of maximum E(x), E(y), J(y) and Beta; results show the best plant performance is obtained for active length, L is approximately 12 M, whereas in the initial ETF studies, L is approximately 16 M.

As MHD channel length is reduced from 16 M, the channel Author: S. Wang, P. Staiger, J. Smith. A MHD channel study for the ETF conceptual design. The procedures and computations used to identify an MHD channel for a mW(I) EFT-scale plant are presented. Under the assumed constraints of maximum E(x), E(y), J(y) and Beta; results show the best plant performance is obtained for active length, L is approximately 12 M, whereas in the Author: P.

Staiger, J. Smith and S. Wang. The reference conceptual design of the Magnetohydrodynamic Engineering Test Facility (ETF), a prototype MWe coal-fired electric generating plant designed to demonstrate the commercial feasibility of open cycle MHD is summarized.

Main elements of the design are identified and explained, and the rationale behind them is reviewed. The reference conceptual design of the magnetohydrodynamic (MHD) Engineering Test Facility (ETF), a prototype MWe coal-fired electric generating plant designed to demonstrate the commercial feasibility of open cycle MHD, is summarized.

Main elements of the design, systems, and plant facilities are illustrated. Engineering design details for the principal systems, system operating modes, site facilities, and structures of an engineering test facility (ETF) of a MWE power plant are presented.

The ETF resembles a coal-fired steam power plant in many ways. It is analogous to a conventional plant which has had the coal combustor replaced with the MHD power train. Magnetohydrodynamics (MHD) Engineering Test Facility (ETF) MWe power plant. Conceptual Design Engineering Report (CDER). Volume 1: Executive summary - NASA/ADS Main elements of the design are identified and explained, and the rationale behind them was reviewed.

Full text of "NASA Technical Reports Server (NTRS) Magnetohydrodynamics (MHD) Engineering Test Facility (ETF) MWe power plant Conceptual Design Engineering Report (CDER)" See other formats.

MHD ETF conceptual design. By Westinghouse Electric Corporation. Advanced Energy Systems Division. and United States. Magnetohydrodynamics (MHD) Engineering Test Facility (ETF) MWe power plant. Conceptual Design Engineering Report (CDER).

Volume 1: Executive summary. Hartwig, W., and Greenberg, R.,System design description (SDD) oxidant supply system for magnetohydrodynamics engineering test facility conceptual design— MW e power plant conceptual design engineering report (CDER), Gilbert/Commonwealth, DOE/NASA/–1, NASA CR, Vol.

V, SDD Google Scholar. The major initial firing of the ash-injected combustor without parameters of the ETF system design are given in the MHD channel in place. These tests were con- Table 6. tinued up to April when power generation The Conceptual design Study of a Potential Early occurred.

End region and current consolidation effects upon the performance of an MHD channel for the ETF conceptual design. By J. Smith and S. Wang. Abstract. It is noted that operating conditions which yielded a peak thermodynamic efficiency (41%) for an EFT-size MHD/steam power plant were previously (Wang et al., ; Staiger, ) identified.

Magnetohydrodynamic (MHD) power generation process is basically based on the physics background of space plasma. The basic principle is the Faradays Law of electromagnetic induction. OF AN MHD CHANNEL FOR THE ETF CONCEPTUAL DESIGN S.

Wang and J. Marlin Smith National Aeronautics and Space Administration Lewis Research Center Cleveland, Ohio Abstract Operating conditions which yielded the peak thermodynamic efficiency (41 percent) for an ETF-size MHD/steam plant were previously identified by. End region and current consolidation effects upon the performance of an MHD channel for the ETF conceptual design.

By S. Wang and J. Smith. Abstract. The effects of MHD channel end regions on the overall power generation were considered. The peak plant thermodynamic efficiency was found to be slightly lower than for the active region (41%).

COVID Resources. Reliable information about the coronavirus (COVID) is available from the World Health Organization (current situation, international travel).Numerous and frequently-updated resource results are available from this ’s WebJunction has pulled together information and resources to assist library staff as they consider how to handle coronavirus.

Benefits of an ETF Portfolio. ETFs are baskets of individual securities, much like mutual funds but with two key differences. First, ETFs can be freely traded like stocks, while mutual fund.

A Guidebook On Conceptual Frameworks For Research In Engineering Education Conceptual frameworks influence how we interpret events, too. For example, for many decades the Copernican conceptual framework of the universe caused astronomers to explain [email protected]{osti_, title = {Conceptual design of a coal-fired retrofit liquid-metal MHD power system}, author = {Pierson, E S and Herman, H and Petrick, M}, abstractNote = {The desire to develop a coal-fired energy-conversion system with the high efficiencies and moderate temperatures of two-phase-generator liquid-metal MHD (LMMHD) systems led to the open-cycle LMMHD (OC-LMMHD) concept.The design of an energy converter is often dictated by the type of energy to be converted, although it is the duty of the engineer to seek out new and more efficient ways of transforming of the MHD flow channel provide an interface to an external circuit.

Electrons pass from the fluid at one wall to an electrode, to an external load, to the.