Combustion of Solid Fuel in a Vortex Furnace with Counter-swirling Flows

The results of computer simulation of the processes of incineration of low-grade solid fuel-pulverized peat with a moisture content of 40%, an ash content of 6% are given. It has been determined the fields of distribution of temperature, velocity of gases and particles in the volume and at the outle...

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Main Authors: Redko A.A., Redko I.A., Redko A.F.
Format: Article
Language:English
Published: Academy of Sciences of Moldova 2017-12-01
Series:Problems of the Regional Energetics
Subjects:
a
Online Access:http://journal.ie.asm.md/assets/files/04_03_35_2017.pdf
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spelling doaj-2972fd40627e45318d65d892743344e12020-11-24T23:35:51ZengAcademy of Sciences of MoldovaProblems of the Regional Energetics1857-00702017-12-013533344Combustion of Solid Fuel in a Vortex Furnace with Counter-swirling Flows Redko A.A.0Redko I.A.1Redko A.F.2Department of heat and gas supply, ventilation and the use of thermal waste energy Kharkiv National University of Construction and Architecture Kharkov, UkraineDepartment of Exploitation of gas and heating systems Kharkiv National University of Urban Economy by O.M. Beketov Kharkiv, Ukraine.Department of heat and gas supply, ventilation and the use of thermal waste energy Kharkiv National University of Construction and Architecture Kharkov, UkraineThe results of computer simulation of the processes of incineration of low-grade solid fuel-pulverized peat with a moisture content of 40%, an ash content of 6% are given. It has been determined the fields of distribution of temperature, velocity of gases and particles in the volume and at the outlet from the furnace. The three-dimensional temperature distribution in the combustion chamber indicates high-temperature combustion of peat particles at temperatures above 1700°C with liquid ash removal in the lower part of the furnace. It has been determined that when the furnace is cooled, it is not ensured combustion of the fuel completely. The value of the swirling flow rate at the outlet from the furnace (up to 370 m/s) ensures the efficiency of separation of fuel particles, reducing heat losses from mechanical underburning. It is determined that the concentration of oxygen is close to zero over the entire height of the furnace, at an outlet from the furnace the oxygen concentration is 5...6%, since oxygen is supplied with excess (αв=1,2). The results of a numerical study showed that the diameter of peat particles affects the process of their combustion: coke particles with an initial diameter of 25 mkm to 250 mkm burn out by 96%. With an increase in particle diameter up to 1000 mkm, the degree of burn-out of coke decreases, but at the same time their removal decreases. It is shown that the furnace ensures the completeness of combustion of peat particles of peat 99.8%, volatiles is 100%. http://journal.ie.asm.md/assets/files/04_03_35_2017.pdfnumerical simulationacombustion processessolid fuelfurnace
collection DOAJ
language English
format Article
sources DOAJ
author Redko A.A.
Redko I.A.
Redko A.F.
spellingShingle Redko A.A.
Redko I.A.
Redko A.F.
Combustion of Solid Fuel in a Vortex Furnace with Counter-swirling Flows
Problems of the Regional Energetics
numerical simulation
a
combustion processes
solid fuel
furnace
author_facet Redko A.A.
Redko I.A.
Redko A.F.
author_sort Redko A.A.
title Combustion of Solid Fuel in a Vortex Furnace with Counter-swirling Flows
title_short Combustion of Solid Fuel in a Vortex Furnace with Counter-swirling Flows
title_full Combustion of Solid Fuel in a Vortex Furnace with Counter-swirling Flows
title_fullStr Combustion of Solid Fuel in a Vortex Furnace with Counter-swirling Flows
title_full_unstemmed Combustion of Solid Fuel in a Vortex Furnace with Counter-swirling Flows
title_sort combustion of solid fuel in a vortex furnace with counter-swirling flows
publisher Academy of Sciences of Moldova
series Problems of the Regional Energetics
issn 1857-0070
publishDate 2017-12-01
description The results of computer simulation of the processes of incineration of low-grade solid fuel-pulverized peat with a moisture content of 40%, an ash content of 6% are given. It has been determined the fields of distribution of temperature, velocity of gases and particles in the volume and at the outlet from the furnace. The three-dimensional temperature distribution in the combustion chamber indicates high-temperature combustion of peat particles at temperatures above 1700°C with liquid ash removal in the lower part of the furnace. It has been determined that when the furnace is cooled, it is not ensured combustion of the fuel completely. The value of the swirling flow rate at the outlet from the furnace (up to 370 m/s) ensures the efficiency of separation of fuel particles, reducing heat losses from mechanical underburning. It is determined that the concentration of oxygen is close to zero over the entire height of the furnace, at an outlet from the furnace the oxygen concentration is 5...6%, since oxygen is supplied with excess (αв=1,2). The results of a numerical study showed that the diameter of peat particles affects the process of their combustion: coke particles with an initial diameter of 25 mkm to 250 mkm burn out by 96%. With an increase in particle diameter up to 1000 mkm, the degree of burn-out of coke decreases, but at the same time their removal decreases. It is shown that the furnace ensures the completeness of combustion of peat particles of peat 99.8%, volatiles is 100%.
topic numerical simulation
a
combustion processes
solid fuel
furnace
url http://journal.ie.asm.md/assets/files/04_03_35_2017.pdf
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