Axial Disc Motor Experimental Analysis Based in Steinmetz Parameters

Research output: Chapter in Book/Report/Conference proceedingConference contribution

Abstract

Nowadays an economical and environment crisis is felt in the world due to the increasing fuel prices and high CO(2) emissions. This crisis is mostly due to present the transportation system, which uses internal combustion engines. The development and integration of electrical motors with improved electro mechanical characteristics, using high temperature superconductors, can provide a sustainable future replacing the conventional internal combustion motors.
Original languageUnknown
Title of host publicationIFIP Advances in Information and Communication Technology
Pages529-536
Volume349
DOIs
Publication statusPublished - 1 Jan 2011
EventTECHNOLOGICAL INNOVATION FOR SUSTAINABILITY -
Duration: 1 Jan 2011 → …

Conference

ConferenceTECHNOLOGICAL INNOVATION FOR SUSTAINABILITY
Period1/01/11 → …

Keywords

    Cite this

    Neves, M. F. D. S. V., DEE Group Author, & Martins, J. F. A. (2011). Axial Disc Motor Experimental Analysis Based in Steinmetz Parameters. In IFIP Advances in Information and Communication Technology (Vol. 349, pp. 529-536) https://doi.org/10.1007/978-3-642-19170-1_58
    Neves, Mário Fernando da Silva Ventim ; DEE Group Author ; Martins, João Francisco Alves. / Axial Disc Motor Experimental Analysis Based in Steinmetz Parameters. IFIP Advances in Information and Communication Technology. Vol. 349 2011. pp. 529-536
    @inproceedings{d0e05e415cc14b21b02edfa4470d6699,
    title = "Axial Disc Motor Experimental Analysis Based in Steinmetz Parameters",
    abstract = "Nowadays an economical and environment crisis is felt in the world due to the increasing fuel prices and high CO(2) emissions. This crisis is mostly due to present the transportation system, which uses internal combustion engines. The development and integration of electrical motors with improved electro mechanical characteristics, using high temperature superconductors, can provide a sustainable future replacing the conventional internal combustion motors.",
    keywords = "Axial disc motor, HTS materials, YBCO",
    author = "Neves, {M{\'a}rio Fernando da Silva Ventim} and {DEE Group Author} and Martins, {Jo{\~a}o Francisco Alves}",
    year = "2011",
    month = "1",
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    doi = "10.1007/978-3-642-19170-1_58",
    language = "Unknown",
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    booktitle = "IFIP Advances in Information and Communication Technology",

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    Neves, MFDSV, DEE Group Author & Martins, JFA 2011, Axial Disc Motor Experimental Analysis Based in Steinmetz Parameters. in IFIP Advances in Information and Communication Technology. vol. 349, pp. 529-536, TECHNOLOGICAL INNOVATION FOR SUSTAINABILITY, 1/01/11. https://doi.org/10.1007/978-3-642-19170-1_58

    Axial Disc Motor Experimental Analysis Based in Steinmetz Parameters. / Neves, Mário Fernando da Silva Ventim; DEE Group Author ; Martins, João Francisco Alves.

    IFIP Advances in Information and Communication Technology. Vol. 349 2011. p. 529-536.

    Research output: Chapter in Book/Report/Conference proceedingConference contribution

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    T1 - Axial Disc Motor Experimental Analysis Based in Steinmetz Parameters

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    AU - DEE Group Author

    AU - Martins, João Francisco Alves

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    N2 - Nowadays an economical and environment crisis is felt in the world due to the increasing fuel prices and high CO(2) emissions. This crisis is mostly due to present the transportation system, which uses internal combustion engines. The development and integration of electrical motors with improved electro mechanical characteristics, using high temperature superconductors, can provide a sustainable future replacing the conventional internal combustion motors.

    AB - Nowadays an economical and environment crisis is felt in the world due to the increasing fuel prices and high CO(2) emissions. This crisis is mostly due to present the transportation system, which uses internal combustion engines. The development and integration of electrical motors with improved electro mechanical characteristics, using high temperature superconductors, can provide a sustainable future replacing the conventional internal combustion motors.

    KW - Axial disc motor

    KW - HTS materials

    KW - YBCO

    U2 - 10.1007/978-3-642-19170-1_58

    DO - 10.1007/978-3-642-19170-1_58

    M3 - Conference contribution

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    SP - 529

    EP - 536

    BT - IFIP Advances in Information and Communication Technology

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    Neves MFDSV, DEE Group Author, Martins JFA. Axial Disc Motor Experimental Analysis Based in Steinmetz Parameters. In IFIP Advances in Information and Communication Technology. Vol. 349. 2011. p. 529-536 https://doi.org/10.1007/978-3-642-19170-1_58