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:: International Transaction Journal of Engineering, Management, & Applied Sciences & Technologies

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ISSN 2228-9860
eISSN 1906-9642
CODEN: ITJEA8


FEATURE PEER-REVIEWED ARTICLE

Vol.11(13) (2020)

  • ENHANCED ENERGY EFFICIENCY OF CERAMICS MANUFACTURING DUE TO HEAT RECOVERY FROM SECONDARY ENERGY SOURCES

    A.I. Sharapov, A.G. Arzamastsev, A.V. Peshkova, M.N. Neklyudov (Department of Industrial Energy, Lipetsk State Technical University, Lipetsk, RUSSIA).

    Disciplinary: Sustainable Energy Technologies, Renewable Energy.

    ➤ FullText

    DOI: 10.14456/ITJEMAST.2020.251

    Keywords: Energy efficiency improvement; Heat recovery; Waste energy sources; Waste heat recovery; Drying plant.

    Abstract
    The article describes a method for increasing the energy efficiency of ceramics manufacturers by renewable energy via recovery of heat from kilns used for firing ceramic products. For ceramics manufacturings, there is a heat recovery scheme that has been developed to use heat released during the cooling of kilns, which makes it possible to reduce energy consumption for heating the air entering an air-drying plant, the specific energy effect from this scheme has been calculated.

    Paper ID: 11A13E

    Cite this article:

    Sharapov, A.I., Arzamastsev, A.G., Peshkova, A.V., Neklyudov, M.N. (2020). ENHANCED ENERGY EFFICIENCY OF CERAMICS MANUFACTURING DUE TO HEAT RECOVERY FROM SECONDARY ENERGY SOURCES. International Transaction Journal of Engineering, Management, & Applied Sciences & Technologies, 11(13), 11A13E, 1-6.



    References:

    [1] O.L.Danilov, A.B.Garyev, I.V., Yakovlev. Energy saving in heat power engineering and heat technologies: university textbook. ?.: MEI Publishing House, 2010, 424p.

    [2] P.D. Lebedev. Heat exchangers, drying and refrigeration units. Textbook for students of Technical universities. 2nd Ed., rev. M., Energy, 1972, 319p.

    [3] D.B. Ginzburg et al. Furnaces and dryers for silicate industry. Ed. P.P. Budnikov. Promstroyizdat, 1963, 344p.

    [4] P.V. Levchenko Calculation of furnaces and dryers of Silicate industry. Publishing house "Higher school", 1968, 363p.

    [5] A.I. Sharapov, E.Y. Myakotina, A.V. Peshkova Energy saving in ventilation and air conditioning systems. Problems of modern science: collection of scientific papers of Lipetsk State Technical University conference. Lipetsk, 2016, 296-298

    [6] A.I. Sharapov, E.Y. Myakotina, Y.V. Shatskikh, A.V. Peshkova Increase of energy efficiency of the mechanical ventilation system, In the collection: IOP Conference Series: Earth and Environmental Science. Electronic edition, 2019, 022218.

    [7] A.I. Sharapov, A.S. Parkhomov, A.V. Peshkova Program for calculating the process of heat recovery from kilns for firing ceramic products. School of young scientists: the regional profile seminar on problems of technical sciences, Lipetsk: LSTU, 2019, 132-135.

    [8] A.I. Sharapov, A.S. Parkhomov, A.V. Peshkova Development of software for calculating the process of heat recovery from kilns for firing ceramic products. Youth and the XXI century: the X International Youth Scientific Conference, Kursk: SWSU, 2020, 4, 289-291.



Other issues:
Vol.11(12)(2020)
Vol.11(11)(2020)
Vol.11(10)(2020)
Vol.11(9)(2020)
Vol.11(8)(2020)
Vol.11(7)(2020)
Vol.11(6)(2020)
Vol.11(5)(2020)
Vol.11(4)(2020)
Vol.11(3)(2020)
Vol.11(2)(2020)
Vol.11(1)(2020)
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