Mathematical model of thermal processes in a biogas plant

One of the promising areas of processing poultry and livestock waste is anaerobic digestion, which helps to prevent pollution of the natural environment, as well as to receive processing products such as gaseous fuel, biogas and highly effective biofertilizer. The use of plants for the production of...

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Main Authors: Fiapshev Amur, Kilchukova Olesya, Shekikhachev Yuriy, Khamokov Marat, Khazhmetov Luan
Format: Article
Language:English
Published: EDP Sciences 2018-01-01
Series:MATEC Web of Conferences
Online Access:https://doi.org/10.1051/matecconf/201821201032
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spelling doaj-d1ccdb41bf534b8995f2dae96da6b6742021-02-02T08:42:56ZengEDP SciencesMATEC Web of Conferences2261-236X2018-01-012120103210.1051/matecconf/201821201032matecconf_icre2018_01032Mathematical model of thermal processes in a biogas plantFiapshev Amur0Kilchukova Olesya1Shekikhachev Yuriy2Khamokov Marat3Khazhmetov Luan4Kabardino-Balkarian State Agrarian UniversityKabardino-Balkarian State Agrarian UniversityKabardino-Balkarian State Agrarian UniversityKabardino-Balkarian State Agrarian UniversityKabardino-Balkarian State Agrarian UniversityOne of the promising areas of processing poultry and livestock waste is anaerobic digestion, which helps to prevent pollution of the natural environment, as well as to receive processing products such as gaseous fuel, biogas and highly effective biofertilizer. The use of plants for the production of biological gas as alternative sources of energy is largely determined by its design characteristics and the worked out technological regimes. The study was conducted with the aim of obtaining data on the effect of the main parameters of the biogas plant and the heat exchanger-agitator on the quality of its operation. This paper considers the thermal processes taking place in the biogas plant in which the mixing device and the heating element are combined into one unit, which allows heating and maintaining the given temperature regime more evenly due to the rotation of the heat exchanger and the transfer of biomass heat throughout the whole volume of the methane. As a result of theoretical studies of the processes of heat exchange and heat transfer taking place in the biogas plant, a mathematical model has been obtained that allows determining the distribution of the temperature of the biomass throughout the entire volume of the methane. It is established that the theoretical temperature homogeneity of the stirred medium is achieved by combining the heat exchanger and the mixing device into one unit, the design and technological parameters of which characterize the intensity of the forced motion of fermentable manure, while changing the value of thermal conductivity.https://doi.org/10.1051/matecconf/201821201032
collection DOAJ
language English
format Article
sources DOAJ
author Fiapshev Amur
Kilchukova Olesya
Shekikhachev Yuriy
Khamokov Marat
Khazhmetov Luan
spellingShingle Fiapshev Amur
Kilchukova Olesya
Shekikhachev Yuriy
Khamokov Marat
Khazhmetov Luan
Mathematical model of thermal processes in a biogas plant
MATEC Web of Conferences
author_facet Fiapshev Amur
Kilchukova Olesya
Shekikhachev Yuriy
Khamokov Marat
Khazhmetov Luan
author_sort Fiapshev Amur
title Mathematical model of thermal processes in a biogas plant
title_short Mathematical model of thermal processes in a biogas plant
title_full Mathematical model of thermal processes in a biogas plant
title_fullStr Mathematical model of thermal processes in a biogas plant
title_full_unstemmed Mathematical model of thermal processes in a biogas plant
title_sort mathematical model of thermal processes in a biogas plant
publisher EDP Sciences
series MATEC Web of Conferences
issn 2261-236X
publishDate 2018-01-01
description One of the promising areas of processing poultry and livestock waste is anaerobic digestion, which helps to prevent pollution of the natural environment, as well as to receive processing products such as gaseous fuel, biogas and highly effective biofertilizer. The use of plants for the production of biological gas as alternative sources of energy is largely determined by its design characteristics and the worked out technological regimes. The study was conducted with the aim of obtaining data on the effect of the main parameters of the biogas plant and the heat exchanger-agitator on the quality of its operation. This paper considers the thermal processes taking place in the biogas plant in which the mixing device and the heating element are combined into one unit, which allows heating and maintaining the given temperature regime more evenly due to the rotation of the heat exchanger and the transfer of biomass heat throughout the whole volume of the methane. As a result of theoretical studies of the processes of heat exchange and heat transfer taking place in the biogas plant, a mathematical model has been obtained that allows determining the distribution of the temperature of the biomass throughout the entire volume of the methane. It is established that the theoretical temperature homogeneity of the stirred medium is achieved by combining the heat exchanger and the mixing device into one unit, the design and technological parameters of which characterize the intensity of the forced motion of fermentable manure, while changing the value of thermal conductivity.
url https://doi.org/10.1051/matecconf/201821201032
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