Analysis of Gas Turbine Combustor Exhaust Emissions: Effects of Transient Inlet Air Pressure

Author:

Tenango‐Pirín Oscar1,Espinosa Sierra2ORCID,García Juan Carlos2,Rodríguez José Alfredo2

Affiliation:

1. Universidad Autónoma de Ciudad Juárez Av. Plutarco Elías Calles 1210 Ciudad Juárez Chihuahua 32310 México

2. Universidad Autónoma del Estado de Morelos Av. Universidad 1001, UAEM Cuernavaca Morelos 62209 México

Abstract

Gas turbine combustors are often subjected to combustion instabilities because of variability of operating conditions, affecting components, and altering exhaust emissions. Herein, the analysis focuses on simulating numerically the non‐premixed combustion as unsteady flamelet combustion and detailed kinetic mechanism. The goal is analyzing exhaust gases under unsteady inlet airflow conditions to define operation guidelines. The numerical approach is validated using data from the literature for nonperturbed cases. Three periodical perturbations of different amplitude show differences with the nonperturbed case. Besides emission of exhaust gases, the temperature field is sensitive to airflow inlet conditions. According to the simulation results, a strong dependence of temperature and pressure in primary and dilution zones of combustor exists on the inlet air pressure condition. Emissions of flue gases like CO and NOx respond to combustor thermal behavior showing high sensitivity to inlet air pressure as well. Results indicate that moderate pressure oscillations may derive into flashback effects.

Funder

Consejo Nacional de Ciencia y Tecnología

Secretaría de Educación Pública

Publisher

Wiley

Subject

General Energy

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