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A. Rubekina, A. Ivanov, A. Tsymbal (2018)
Calculation of the Heat Transfer in Coke Dry Quenching by Numerical ModelingCoke and Chemistry, 61
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ISSN 1068-364X, Coke and Chemistry, 2019, Vol. 62, No. 7, pp. 288–292. © Allerton Press, Inc., 2019. Russian Text © The Author(s), 2019, published in Koks i Khimiya, 2019, No. 7, pp. 41–45. COKE a, a, S. A. Kravchenko * and S. Yu. Stelmachenko ** Giprokoks, Kharkov, Ukraine *e-mail: sa_kravchenko@giprokoks.com **e-mail: ko518@giprokoks.com Received May 15, 2019; revised May 15, 2019; accepted May 24, 2019 Abstract—The basic factors that affect the efficiency of dry-quenching systems at coke plants are identified by numerical modeling. On the basis of quantitative estimates, recommendations for increasing the eff iciency of coke cooling are made. Keywords: coke production, dry-quenching systems, quenching chamber, numerical modeling, charging unit, coke segregation DOI: 10.3103/S1068364X1907007X Giprokoks dry-quenching systems operate success- In the chambers, the coke is segregated on charging: fully at numerous coke plants. In such systems, hot small pieces accumulate at the center, while large coke is cooled by inert gases circulating in a closed pieces accumulate at the walls (on account of their loop between the quenching chamber (filled with hot greater mobility). In the experimental model, the non- coke) and a waste-heat boiler. That permits the use of uniformity of the gas in the blast distribution is
Coke and Chemistry – Springer Journals
Published: Oct 23, 2019
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