2019
DOI: 10.1007/978-3-030-22063-1_146
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Improving Efficiency of Boiler in Case of Coal Hydrotransport

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Cited by 2 publications
(6 citation statements)
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“…The results of studies performed on a pilot plant for the preparation and combustion of Karakechi brown coal, that was created in relation to the boiler TP-35 [63,64], in general, confirmed the nature of temperature changes, burnout of volatiles and coke residue, as well as the general dependence of the process on the degree ballasting with moisture and fractional composition of the initial fuel. At the same time, dust combustion is characterized by a shorter section lf from the burner cutoff to the zone of maximum temperatures T f , which are a higher level of temperatures themselves and therefore the degree of burnout.…”
Section: Mathematical Models Of Transportation Of Coal-water Suspensionsmentioning
confidence: 62%
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“…The results of studies performed on a pilot plant for the preparation and combustion of Karakechi brown coal, that was created in relation to the boiler TP-35 [63,64], in general, confirmed the nature of temperature changes, burnout of volatiles and coke residue, as well as the general dependence of the process on the degree ballasting with moisture and fractional composition of the initial fuel. At the same time, dust combustion is characterized by a shorter section lf from the burner cutoff to the zone of maximum temperatures T f , which are a higher level of temperatures themselves and therefore the degree of burnout.…”
Section: Mathematical Models Of Transportation Of Coal-water Suspensionsmentioning
confidence: 62%
“…Verification of the same method of calculation for dry dust of Karakechi brown coal at k comb = 1.34 gave a discrepancy, when compared with the experiment, of 5...7%. At the same time, the distributions of dimensionless temperatures and the degree of burnup revealed under the conditions of the stand [64] are typical for the combustion of dust and CWS in the TP-35 boiler. Despite the lower values of the kinetic constants k comb for agglomerates when compared to dust, the burnout time of CWSs increases significantly due to a decrease in the flame temperature and an increase in the size of agglomerates compared to the size of dust particles.…”
Section: Mathematical Models Of Transportation Of Coal-water Suspensionsmentioning
confidence: 79%
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“…The existing calculated dependencies of the main parameters of hydrotransport are based on the law of turbulent transfer of the solid phase with the flow of liquid, and the effectiveness of the process has been considered by many scientists in connection with the effect on the turbulent properties of solid particles [2][3][4][5][6][7][8][9][10][11].…”
Section: Introductionmentioning
confidence: 99%