A numerical investigation on heat transfer and emissions characteristics of impinging radial jet reattachment combustion (RJRC) flame

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Date

2015

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Elsevier Ltd

Abstract

Radial Jet Reattachment combustion (RJRC) flame jet is used in applications where the impingement surface is delicate and demands low impingement pressure. In the present study, a two dimensional axisymmetric computational fluid dynamics (CFD) simulation is carried out. The turbulence-combustion interaction in the flame field is modeled in a k-?/EDM framework. The distribution of heat flux, pressure coefficient and emissions is presented for varying Reynolds number (Re = 1000 to 30,000) and different non-dimensional nozzle tip to plate spacing (X/R = 0.5 to 3). It is found that the peak heat flux increases and pressure coefficient reduces significantly with the increase in Reynolds number. However, with the increase in the nozzle tip to plate spacing the peak heat flux and the pressure coefficient decrease. Furthermore, the concentrations of NO<inf>x</inf> and CO emissions increase with the increase in Reynolds number and the distance of the location of the nozzle tip from the impingement plate. © 2015 Elsevier Ltd. All rights reserved.

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Keywords

Combustion, Computational fluid dynamics, Heat transfer, Nozzles, Particulate emissions, Reynolds number, Turbulence, Axisymmetric, CO emissions, Computational fluid dynamics simulations, Emissions characteristics, Impingement surfaces, Numerical investigations, Pressure coefficients, RJRC, Heat flux

Citation

Applied Thermal Engineering, 2015, 89, , pp. 534-544

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