Title of article
The low Reynolds number turbulent flow and mixing in a confined impinging jet reactor
Author/Authors
Schwertfirm، نويسنده , , Florian and Gradl، نويسنده , , Johannes and Schwarzer، نويسنده , , Hans C. and Peukert، نويسنده , , Wolfgang and Manhart، نويسنده , , Michael، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2007
Pages
14
From page
1429
To page
1442
Abstract
Turbulent mixing takes an important role in chemical engineering, especially when the chemical reaction is fast compared to the mixing time. In this context a detailed knowledge of the flow field, the distribution of turbulent kinetic energy (TKE) and its dissipation rate is important, as these quantities are used for many mixing models. For this reason we conduct a direct numerical simulation (DNS) of a confined impinging jet reactor (CIJR) at Re = 500 and Sc = 1. The data is compared with particle image velocimetry (PIV) measurements and the basic flow features match between simulation and experiment. The DNS data is analysed and it is shown that the flow is dominated by a stable vortex in the main mixing duct. High intensities of turbulent kinetic energy and dissipation are found in the impingement zone which decrease rapidly towards the exit of the CIJR. In the whole CIJR the turbulence is not in equilibrium. The strong mixing in the impingement zone leads to a rapid development of a monomodal PDF. Due to the special properties of the flow field, a bimodal PDF is generated in cross-sections downstream the impingement zone, that slowly relaxes under relaminarising conditions. The time required for meso-mixing is dominating the overall mixing performance.
Keywords
direct numerical simulation , Particle image velocimetry , Opposing jets , turbulent mixing , Confined impinging jet reactor
Journal title
International Journal of Heat and Fluid Flow
Serial Year
2007
Journal title
International Journal of Heat and Fluid Flow
Record number
2381524
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