INFLUENCE OF VIRGIN BRAKE PIPE ON HEAT EXCHANGER WITH DOMINANT CYCLE MATERIAL CHAIN

Authors

  • Sergii Titar Odessa National Polytechnic University
  • Bogdan Dariienko Odessa National Polytechnic University

DOI:

https://doi.org/10.31649/2311-1429-2018-2-57-62

Keywords:

packer bed, heat transfer, intensification, pipe bundles

Abstract

Vibration is one of perspective methods of intensification of packet bed heat transfer with surface. It happens that vibration provides hot only considerably intensify the process of heat transfer but also ensures stability of bed’s motion. Data on the heat transfer of a dense gravitational layer with the surface in terms of vibrations is limited to a narrow range of variation of the mode and geometric characteristics/ Due to this fact scientific works do not contain recommendations on the methods of calculation and design of heat transfer apparatures.

Author Biographies

Sergii Titar, Odessa National Polytechnic University

Cand. Cs. (Eng.), Professor of the chair of thermal power plant and energy saving technologics

Bogdan Dariienko, Odessa National Polytechnic University

student

References

Tytar S. S. Intensyfikatsiya teploobminu sypuchoho materialu shchilʹnoho sharu z tsylindrom za dopomohoyu vibratsiyi / S. S. Tytar, O. S. Furman // Suchasni tekhnolohiyi , materialy i konstruktsiyi v budivnytstvi.2016. – №1. – s.65 – 70.

Tytar S.S. Lokalʹnyy teploobmin shchilʹnoho sharu sypkoho materialu z tsylindrom za vidsutnosti ta nayavnosti vibratsiyi / S. S. Tytar, O. M. Shramenko // Visnyk Vinnytsʹkoho politekhnichnoho universytetu. – 2018. - №1(136). – s. 18 – 23.

Boshkova Y.L. Yssledovanye éffektyvnosty teploobmena v teploobmennykakh-utylyzatorakh s hranulyrovannoy nasadkoy / Y. L. Boshkova, A. V. Solodkaya // Énerhetyka. Problema rehyonalʹnoho razvytyya. – 2016. – T.3, №32. – s. 110 – 106.

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Published

2019-02-26

How to Cite

[1]
S. Titar and B. Dariienko, “INFLUENCE OF VIRGIN BRAKE PIPE ON HEAT EXCHANGER WITH DOMINANT CYCLE MATERIAL CHAIN”, СучТехнБудів, vol. 25, no. 2, pp. 57–62, Feb. 2019.

Issue

Section

MODELING OF BUILDING PRODUCTION

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