Investigation of combustion patterns in furnace type chemical reactor with non-stoichiometric combustion of fuel in the Ansys CFX software package

Authors

  • Петр Андреевич Батраков Omsk State Technical University, Omsk, Russia https://orcid.org/0000-0002-0939-585X
  • Даниэль Григорьевич Мумладзе Omsk Carbon Group OOO, Omsk, Russia

DOI:

https://doi.org/10.25206/1813-8225-2018-160-59-63

Keywords:

Chemical reactor, combustion chamber, nonstoichiometry, air flow coefficient

Abstract

The paper considers the calculation of the combustion chamber of a chemical reactor in the software complex Ansys CFX,
which allows to determine the thermal characteristics, as well as the concentration of CO, CO2 at the output with different air
flow coefficients. The paper presents the computational model, the initial conditions, and describes the calculation algorithm
and the formation of the diffusion scheme. Verification of the methodology for adequacy when comparing the numerical model in ANSYS CFX with the literature data, which showed a maximum discrepancy of 6,92 %. Calculations shows that the operating mode of the reactor will be observed for 1.

Downloads

Download data is not yet available.

Author Biographies

Петр Андреевич Батраков, Omsk State Technical University, Omsk, Russia

кандидат технических наук, доцент кафедры «Теплоэнергетика» Омского государственного технического университета.

Даниэль Григорьевич Мумладзе, Omsk Carbon Group OOO, Omsk, Russia

старший инженер-теплотехник отдела главного энергетика ООО «Омсктехуглерод».

Downloads


Abstract views: 13

Published

2018-09-20

How to Cite

[1]
Батраков, П.А. and Мумладзе, Д.Г. 2018. Investigation of combustion patterns in furnace type chemical reactor with non-stoichiometric combustion of fuel in the Ansys CFX software package. Omsk Scientific Bulletin. 4(160) (Sep. 2018), 59–63. DOI:https://doi.org/10.25206/1813-8225-2018-160-59-63.

Issue

Section

Electrical engineering. Power engineering

Similar Articles

You may also start an advanced similarity search for this article.