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Influence of inlet boundary conditions in computations of turbulent jet flames

Michał T. Lewandowski (Institute of Fluid Flow Machinery, Polish Academy of Sciences, Gdańsk, Poland)
Paweł Płuszka (Institute of Fluid Flow Machinery, Polish Academy of Sciences, Gdańsk, Poland)
Jacek Pozorski (Institute of Fluid Flow Machinery, Polish Academy of Sciences, Gdańsk, Poland)

International Journal of Numerical Methods for Heat & Fluid Flow

ISSN: 0961-5539

Article publication date: 23 July 2018

Issue publication date: 8 August 2018

295

Abstract

Purpose

This paper aims to assess the sensitivity of numerical simulation results of turbulent reactive flow to the formulation of inlet boundary conditions. The analysis concerns the profiles of the mean velocity the turbulence kinetic energy k and its dissipation rate ϵ. It is intended to provide guidance to the determination of inlet conditions when only global flow data are available. This situation can be met both in simple laboratory experiments and in industrial full-scale applications, when measurements are either incomplete or infeasible, resulting in lack of detailed inlet data.

Design/methodology/approach

Two turbulence–chemistry interaction models were studied: eddy dissipation concept and partially stirred reactor. Three different velocity profiles and related turbulence statistics were applied to present feasible scenarios and their consequences. Simulations with the most appropriate inlet data were accompanied with profiles of turbulent quantities obtained with a proposed method. This method was contrasted to other approaches popular in the literature: the pre-inlet pipe and the separate cold flow simulations of a burner. The methodology was validated on two laboratory-scale jet flames: Delft Jet-in-Hot-Coflow and Sandia CHN B. The simulations were carried out with open source code OpenFOAM.

Findings

The proposed relations for turbulence kinetic energy and its dissipation rate at the inlet are found to provide results comparable to those obtained with the use of experimental data as inlet boundary conditions. Moreover, from a certain location downstream the jet, weakly dependent on the Reynolds number, the influence of inlet conditions on flow statistics was found to be negligible.

Originality/value

This work reveals the consequences of the use of rather crude assumptions made for inlet boundary conditions. Proposed formulas for the profiles for k and epsilon are attractive alternatives to other approaches aiming to determine the inlet boundary conditions for turbulent jet flows.

Keywords

Acknowledgements

The authors are indebted to Professor Dirk Roekaerts (TU Delft, the Netherlands) for his courtesy to provide the experimental data of DJHC flames. Calculations were carried out at the Academic Computer Centre in Gdańsk.

Citation

Lewandowski, M.T., Płuszka, P. and Pozorski, J. (2018), "Influence of inlet boundary conditions in computations of turbulent jet flames", International Journal of Numerical Methods for Heat & Fluid Flow, Vol. 28 No. 6, pp. 1433-1456. https://doi.org/10.1108/HFF-02-2017-0078

Publisher

:

Emerald Publishing Limited

Copyright © 2018, Emerald Publishing Limited

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