Large Eddy Simulation of Scalar Mixing in Jet in a Cross-Flow

Author:

Uyanwaththa Asela1,Malalasekera Weeratunge.1,Hargrave Graham1,Dubal Mark2

Affiliation:

1. School of Mechanical, Electrical and Manufacturing Engineering, Loughborough University, Loughborough LE11 3TU, UK e-mail:

2. Uniper Technologies Limited, Technology Centre Ratcliffe-on-Soar, Nottinghamshire NG11 0EG, UK e-mail:

Abstract

Jet in a cross-flow (JICF) is a flow arrangement found in many engineering applications, especially in gas turbine air–fuel mixing. Understanding of scalar mixing in JICF is important for low NOx burner design and operation, and numerical simulation techniques can be used to understand both spatial and temporal variation of air–fuel mixing quality in such applications. In this paper, mixing of the jet stream with the cross-flow is simulated by approximating the jet flow as a passive scalar and using the large eddy simulation (LES) technique to simulate the turbulent velocity field. A posteriori test is conducted to assess three dynamic subgrid scale models in modeling jet and cross-flow interaction with the boundary layer flow field. Simulated mean and Reynolds stress component values for velocity field and concentration fields are compared against experimental data to assess the capability of the LES technique, which showed good agreement between numerical and experimental results. Similarly, time mean and standard deviation values of passive scalar concentration also showed good agreement with experimental data. In addition, LES results are further used to discuss the scalar mixing field in the downstream mixing region.

Publisher

ASME International

Subject

Mechanical Engineering,Energy Engineering and Power Technology,Aerospace Engineering,Fuel Technology,Nuclear Energy and Engineering

Reference52 articles.

1. Fuel/Air Nonuniformity—Effect on Nitric Oxide Emissions;AIAA J.,1982

2. Effects of Fuel-Air Unmixedness on NOx Emissions;J. Propul. Power,1993

3. Margason, R. J., 1993, “Fifty Years of Jet in Cross Flow Research,” Computational and Experimental Assessment of Jets in Cross Flow, Vol. 1, AGARD Conference Proceedings, Winchester, UK, Apr. 19–22, Paper No. 1.

4. Predictions of a Film Coolant Jet in Crossflow With Different Turbulence Models;ASME J. Turbomach.,2000

5. Impingement Cooling From a Circular Jet in a Cross Flow;Int. J. Heat Mass Transfer,1975

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