furnace campaign
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Author(s):  
David V. Beknazaryan ◽  
Georgij E. Kanewets ◽  
Konstantin V. Strogonov

The optimal operation of high temperature reactors such as glass furnaces requires many factors to be considered. These are, for example, the duration of the campaign, operating costs, heat losses, trouble-free operation of units and many others, presented in the article. The aim of this study is to synthesize an efficiency criterion for optimizing the heat-insulating construction of a glass-melting furnace (HICGF), as well as obtaining the optimal values of the efficiency criterion for HICGF, which for the furnace under study are about 3.8 billion rubles. In the course of the study, the phenomenological heuristic-evolutionary optimization method by G. E. Kanevets (PHEOM.GEK), which has a number of advantages over other evolutionary methods. As the main generalizing criterion, taking into account the most significant production (volume, cost of the produced glass mass) and financial (costs for the construction and operation of the HICGF, the monetary equivalent of heat losses) indicators, the maximum gross income for the furnace campaign was adopted, which differs from prototypes in that it allows to take into account most fully the peculiarities of the work of the insulated side fence of the glass furnace. Using the software complex created on the basis of PHEOM.GEK complex systems for the side fence of a glass-melting furnace, the optimal set (sequence of location and thickness) of thermal insulation materials HICGF was determined, which allow maximizing the furnace campaign with minimal heat losses. The reliability of the data obtained is achieved by the correct use of the theory of heat and mass transfer and PHEOM.GEK. An efficiency criterion is proposed, which, by solving an optimization problem, made it possible to determine the optimal HICGF. The solution of the optimization problem in conjunction with the calculation of the duration of the furnace campaign makes it possible to form recommendations for the development of optimal HICGFs in the construction of new and cold repair of existing glass furnaces by specialized institutes and industrial companies


2021 ◽  
Vol 118 (4) ◽  
pp. 410
Author(s):  
Lei Zhang ◽  
Jianliang Zhang ◽  
Kexin Jiao ◽  
Xiaoke Zhang ◽  
Sijia Duan ◽  
...  

Hot metal circulation is one of the most important factors for hearth erosion. In this article, both the production conditions reflected by production parameters and the actual erosion state are considered. A series of cases are set up to analyze the hot metal flow characteristics and its contribution to hearth erosion. The main results are as follow: (1) There are two asymmetric high-speed bands existed on both side of the taphole, which is caused by the inner shape of blast furnace hearth and will cause the erosion of blast furnace hearth. (2) The velocity inside the deadman has an obvious decrease from top to middle part and then keeps almost stable, especially at the edge of deadman. It is caused by the inhibition effect of molten iron flow around deadman, and may result in a slower update rate of deadman in the lower part as well as an increase of carbon unsaturation in the molten iron. (3) The velocity of line 4–5# around the bottom increases with the increasing of daily output, and decreases with the increasing of the depth of salamander. Therefore, in the early stage of the blast furnace campaign, a production process with high utilization factor will increase hearth erosion. (4) The inner shape of hearth and the distance between sidewall and deadman are the main factors affecting the flow rate of molten iron.


Author(s):  
R. Sadri ◽  
Y. Gordon ◽  
M. Kumar ◽  
S. Singh ◽  
M. Ying ◽  
...  

Author(s):  
N. N. Shustrov ◽  
V. G. Puzach ◽  
S. A. Bezenkov

The experience of the chrome-oxide refractory materials application in the electric glass-melting furnaces for fberglass production is given in the article. The prospects are noticed of the chrome-oxide refractories using from the point of view of both the service reliability and the furnace campaign length.Ill.4. Ref. 7. Tab. 5.


Author(s):  
V. Ya. Dzuzer

The performance data are presented for the highly-efcient container glass-melting furnaces. The service condition are defned for the melting tank's lining given that the pull rate being 2,5‒3,0 tons/m2per day and the specifc glass working being 7000‒8000 tons/m2per furnace campaign. The recommendations are given on the fusion-cast baddeleyite-corundum and vibro-cast sintered chromealumina-zirconium refractories using in the melting tank's structural units.Ill. 2. Ref. 18. Tab. 1.


Author(s):  
Jun Enriquez ◽  
Ryan Walton ◽  
Adrian Deneys ◽  
Allen Chan ◽  
Bryan Bielec ◽  
...  

2017 ◽  
Author(s):  
Jean-Philippe Houde ◽  
Rudolf Hebel ◽  
André Cabral de Oliveira

Author(s):  
Jean-Philippe Houde ◽  
◽  
Rudolf Hebel ◽  
André Cabral de Oliveira ◽  
◽  
...  

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