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10.5555/1627368.1627407guideproceedingsArticle/Chapter ViewAbstractPublication PagesConference Proceedingsacm-pubtype
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Analysis and modelling of influence non-stationary exterior temperature in interior temperature and thermal heater capacity

Published: 03 September 2009 Publication History

Abstract

Task of this paper is to be analyzed and modeled the dynamics of thermal power by the heater located inside a closed environment, and the interior temperature in conditions when the heat exchange through walls is stationary and the exterior ambient temperature varies periodically. Modeling of interior temperature is based in thermal balance between thermal capacity of the heater, air heat accumulation and the heat losses through walls. So, in analytical and graphical way are presented the changes for interior temperature, accumulation heat and transmission heat. By means of corresponding diagrams there are presented the important results which show the practical side and possibilities to optimize the heater thermal capacity respectively the optimal time manipulation with the heater.

References

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Thomas Szirtes, Pal Rozsa: Applied Dimensional Analysis and Modeling, Vancouver, B.C., Canada, 2006.
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J. J. Sokolov: Toplifikacija i toplotne mreze, Bg, 1985.
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I. Demneri, A. Shtjefni, R. Karapici: Termoteknika, Tiranë, 2003.
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B. Wayne Bequette: Process Dynamics -Modeling, Analysis, And Simulation, New Jersey, 1998.
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J. Mikles, M. Fikar: Process Modelling, Identification, and Control, Springer-Verlag Berlin Heidelberg, 2007.
  1. Analysis and modelling of influence non-stationary exterior temperature in interior temperature and thermal heater capacity

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    Published In

    cover image Guide Proceedings
    SMO'09: Proceedings of the 9th WSEAS international conference on Simulation, modelling and optimization
    September 2009
    477 pages
    ISBN:9789604741137

    Publisher

    World Scientific and Engineering Academy and Society (WSEAS)

    Stevens Point, Wisconsin, United States

    Publication History

    Published: 03 September 2009

    Author Tags

    1. heat accumulation
    2. heat losses
    3. heater thermal power
    4. interior temperature
    5. optimization

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