RESEARCH OF HEAT EXCHANGE BETWEEN THE THROUGH GAS FLOW AND THE DENSE LAYER OF GRANULATED MATERIAL

Authors

DOI:

https://doi.org/10.31649/2311-1429-2018-2-74-80

Keywords:

heat exchange, granular material, heating, gas flow, temperature curves, efficiency

Abstract

On the basis experimental studies, the specific features of the heat exchange process between the granular packing and the through flow of the gaseous (air) medium are determined. Experimental studies of heat exchange between a dense layer of granular material and a stream of heated air have been carried out. The conditions for increasing the efficiency of the heat recovery unit are established. The course of the temperature curve for the gas flow and solid components at the inlet and outlet of the installation indicates the presence of two clearly pronounced regions with different heating rates. It is assumed that it is expedient to set the heating time in the heat accumulator with a stationary nozzle within the first period, which is characterized by a high rate of heating. It is found that the heat exchange rate increases with a mixture of particles of different sizes. It is established that the coefficients of intercomponent heat transfer during heating of the fixed nozzle depend on the gas velocity, the velocity of the ball, the temperature of the gas at the inlet to the apparatus, the duration of the process, and are described by a function of the sigmoid class

Author Biographies

Antonyna Solodka, Odessa National Academy of Food Technologies

phD, assistant of Department of Power Engineering and Pipeline Transport of Energy

Irina Boshkova, Odessa National Academy of Food Technologies

dr. tech. sciences, Professor of Department of Power Engineering and Pipeline Transport of Energy

Natalya Volgusheva, Odessa National Academy of Food Technologies

phD, Associate Professor, Department of Power Engineering and Pipeline Transport of Energy

References

Denysov-Vynskyy N. D. Vtorychnye énerhetycheskye resursy kak rezerv énerhosberezhenyya / N. D. Denysov-Vynskyy. // Énerhosberezhenye. – 2008. – №2 (20). – S. 23–28.

Kumar A. H. Optimization and economic evaluation of industrial gas production and combined heat and power generation from gasification of corn stover and distillers grains. A. H. Kumar., Y. Demirel, Jones D. D., Hanna M. A. // Bioresource Technology. – 2010. – №101. – S. 3696–3701.

Samoylov M. V., Panevchyk V. V., Kovalev A. N. Osnovy énerhosberezhenyya. Mynsk, 2002. 198 s.

Kopetsʹka YU. O. Sutnistʹ, osnovni vydy ta klasyfikatsiya enerhetychnykh resursiv yak skladovi vyrobnychoho potentsialu pidpryyemstva / YU. O. Kopetsʹka // Naukovyy visnyk. – Uzhhorod. – 2016. – Vyp. 7, CH.2. – S. 21–26.

Udoskonalennya kompleksnoyi systemy utylizatsiyi teploty vidkhidnykh haziv kotloahrehetiv dlya pidihrivannya i zvolozhennya duttʹovoho povitrya / N.M. Fialko, H.O. Presich, R.O. Navrodsʹka, H.O. Hnyedash // Promyshlennaya teplotekhnyka. – 2011. – T. 33, №5. – S. 88–95.

Pospelova T. H. Osnovy énerhosberezhenyya / Pospelova T. H. // Mynsk: UP «Tekhnoprynt», 2000. – 350 s.

Zakon Ukrayiny «Pro enerhozberezhennya» vid 01.07.1994 r. № 74/94-VR. Vidomosti Verkhovnoyi Rady Ukrayiny. – 1994 r. – № 30. – St. 283

Costoyanye y perspektyvy yspolʹzovanyya vtorychnykh énerhoresursov v énerhetycheskom khozyaystve Ukrayny / A.A. Dolynskyy, N.M. Fyalko, R.A. Navrodskaya, N.V Hnedoy // Promyshlennaya teplotekhnyka. – 2012. – T. 34, №4. – S. 94–103.

Arnov R. Y. Sostav y struktura toplyvno-énerhetycheskykh resursov promyshlennoho predpryyatyya / Arnov R. Y. Moskva: Ynform, 2007. – 304 s.

Low grade thermal energy sources and uses from the process industry in the UK / Yasmine Ammar, Sharon Joyce, Rose Norman [et al] // Applied Energy. – 2012. – V. 89, №1. – R. 3–20.

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Published

2019-02-26

How to Cite

[1]
A. Solodka, I. Boshkova, and N. Volgusheva, “RESEARCH OF HEAT EXCHANGE BETWEEN THE THROUGH GAS FLOW AND THE DENSE LAYER OF GRANULATED MATERIAL”, СучТехнБудів, vol. 25, no. 2, pp. 74–80, Feb. 2019.

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Section

MODELING OF BUILDING PRODUCTION

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