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Original Articles

Controlled mixing enhancement in turbulent rectangular jets responding to periodically forced inflow conditions

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Pages 742-771 | Received 08 Oct 2014, Accepted 05 Mar 2015, Published online: 08 Apr 2015

References

  • Kral LD. Active flow control technology. New York (NY): ASME Fluids Engineering Division; 1998. ( Technical brief).
  • Jahanmiri M. Active flow control: a review. Göteborg (Sweden) Chalmers University of Technology; 2010. ( Technical report 2010:12).
  • Quinn WR, Militzer J. Experimental and numerical study of a turbulent free square jet. Phys Fluids. 1988;31:1017–1025.
  • Quinn WR. Turbulent free jet flows issuing from sharp-edged rectangular slots: the influence of slot aspect ratio. Exp Thermal Fluid Sci. 1992;5:203–215.
  • Xu M, Pollard A, Mi J, Secretain F, Sadeghi H. Effects of Reynolds number on some properties of a turbulent jet from a long square pipe. Phys Fluids. 2013;25:1–19.
  • Grinstein FF, DeVore CR. Dynamics of coherent structures and transition to turbulence in free square jets. Phys Fluids. 1996;8:1237–1251.
  • Yu H, Girimaji SS. Near-field turbulent simulations of rectangular jets using lattice Boltzmann method. Phys Fluids. 2005;17:1–17.
  • Yu H, Luo L-S, Girimaji SS. LES of turbulent square jet flow using an MRT lattice Boltzmann model. Comput Fluids. 2006;35:957–965.
  • Tyliszczak A, Geurts BJ. DNS and LES of excited rectangular jets. Conference Proceedings of Turbulence and Shear Flow Phenomena-8; 2013 Aug 28–30; Poitiers; 2012.
  • Rembold B, Adams NA, Kleiser L. Direct numerical simulation of a transitional rectangular jet. Int J Heat Fluid Flow. 2002;23:547–553.
  • Gohil TB, Saha AK, Muralidhar K. Control of flow in forced jets: a comparison of round and square cross sections. J Vis. 2010;13:141–149.
  • Gutmark EJ, Grinstein FF. Flow control with noncircular jets. Ann Rev Fluid Mech. 1999;31:239–272.
  • Grinstein FF. Vortex dynamics and entrainment in rectangular free jets. J Fluid Mech. 2001;437:69–101.
  • Crow SC, Champagne FH. Orderly structure in jet turbulence. J Fluid Mech. 1971;48:547–691.
  • Zaman KBMQ, Hussain AKMF. Vortex pairing in a circular jet under controlled excitation. Part 1. General jet response. J Fluid Mech. 1980;101:449–491.
  • Hussain AKMF, Zaman KBMQ. Vortex pairing in a circular jet under controlled excitation. Part 2. Coherent structure dynamics. J Fluid Mech. 1980;101:493–544.
  • Suzuki YH, Kasagi N. Active control of an axisymetric jet with distributed electromagnetic flap actuators. Exp Fluids. 2004;36:498–509.
  • Hussain AKMF, Thompson CA. Controlled symmetric perturbation of the plane jet: an experimental study in the initial region. J Fluid Mech. 1980;100:397–431.
  • Zaman KBMQ, Hussain AKMF. Turbulence suppression in free shear flows by controlled excitation. J Fluid Mech. 1981;103:133–159.
  • Arbey H, Ffowcs Williams JE. Active cancelation of pure tones in an excited jet. J Fluid Mech 1984;149:445–454.
  • Cho SK, Yoo JY, Choi H. Vortex pairing in axisymmetric jet using two-frequency acoustic forcing at low to moderate Strouhal numbers. Exp Fluids. 1998;25:305–315.
  • Drobniak S, Klajny R. Coherent structures of free acoustically stimulated jet. J Turbul. 2002;3:1–30.
  • Balarac G, Métais O, Lesieur M. Mixing enhancement in coaxial jets through inflow forcing: a numerical study. Phys Fluids. 2007;19:075102.
  • Cardoso de Souza T, Geurts BJ, Bastiaans RJM, De GoeyLPH. Steady large-scale modulation of a moderately turbulent co-flow jet. J Turbul. 2014;15:273–292.
  • Reynolds WC, Parekh DE, Juvet PJD, Lee MJD. Bifurcating and blooming jets. Ann Rev Fluid Mech. 2003;35:295–315.
  • Sagaut P. Large eddy simulation for incompressible flows. New York (NY): Springer; 2001.
  • Geurts BJ. Elements of direct and large-eddy simulation. Philadelphia (PA): Edwards Publishing; 2004.
  • Vreman B, Geurts BJ, Kuerten H. Discretization error dominance over subgrid terms in large eddy simulation of compressible shear layers in 2D. Commun Numer Methods Eng. 1994;10:785–790.
  • Geurts BJ, Fröhlich J. Numerical effects contaminating LES: a mixed story. In: Geurts BJ, editor. Modern simulation strategies for turbulent flow. Philadelphia (PA): Edwards Publishing; 2001.p. 309–330.
  • Geurts BJ, Fröhlich J. A framework for predicting accuracy limitations in large-eddy simulation. Phys Fluids. 2002;14:L41–L44.
  • Meyers J, Geurts BJ, Baelmans M. Database analysis of errors in large-eddy simulation. Phys Fluids. 2003;15:2740–2755.
  • Geurts BJ. Interacting errors in large-eddy simulation: a review of recent developments. J Turbul. 2006;7:1–17.
  • Vreman B, Kuerten H, Geurts B. Shocks in direct numerical simulation of the confined three-dimensional mixing layer. Phys Fluids. 1995;7:2105–2107.
  • Vreman AW. An eddy-viscosity subgrid-scale model for turbulent shear flow: algebraic theory and applications. Phys Fluids. 2004;16:3670–3681.
  • Laizet S, Lamballais E. High-order compact schemes for incompressible flows: a simple and efficient method with quasi-spectral accuracy. J Comput Phys. 2009;228:5989–6015.
  • Tyliszczak A. A high-order compact difference algorithm for half-staggered grids for laminar and turbulent incompressible flows. J Comput Phys. 2014;276:438–467.
  • Tyliszczak A, Boguslawski A. LES of the jet in low Mach variable density conditions. In: Lamballais E, Friedrich R, Geurts BJ, Métais O, editors. Direct and large eddy simulations VI, ERCOFTAC Series. Dordrecht: Springer; 2006. p. 575–582.
  • Tyliszczak A, Boguslawski A, Drobnak S. Quality of LES predictions of isothermal and hot round jet. In: Meyers J, Geurts BJ, Sagaut P, editors. Quality and reliability of large eddy simulations. Vol. 12 of ERCOFTAC Series. Heidelberg: Springer; 2008. p. 259–270.
  • Boguslawski A, Tyliszczak A, Drobniak S, Asendrych D. Self-sustained oscillations in a homogeneous-density round jet. J Turbul. 2013;14:25–52.
  • Kuban L, Laval J-P, Elsner W, Tyliszczak A, Marquillie M. LES modeling of converging-diverging turbulent channel flow. J Turbul. 2012;13:1–19.
  • Aniszewski W, Boguslawski A, Marek M, Tyliszczak A. A new approach to sub-grid surface tension for LES of two-phase jlows. J Comput Phys. 2012;231:7368–7397.
  • Tyliszczak A. LES–CMC and LES–Flamelet simulation of non-premixed methane flame (Sandia F). J Theor Appl Mech. 2013;51:859–871.
  • Tyliszczak A. Assessment of implementation variants of conditional scalar dissipation rate in LES-CMC simulation of auto-ignition of hydrogen jet. Arch Mech. 2013;65:97–129.
  • Tyliszczak A, Geurts BJ. Parametric analysis of excited round jets – numerical study. Flow Turbul Combust. 2014;93:221–247.
  • Babu PC, Mahesh K. Upstream entrainment in numerical simulation of spatially evolving round jets. Phys Fluids. 2004;16:3699–3705.
  • Foysi H, Mellado JP, Sarkar S. Large-eddy simulation of variable-density round and plane jets. Int J Heat Fluid Flow. 2010;31:307–314.
  • da Silva CB, Métais O. Vortex control of bifurcating jets: a numerical study. Phys Fluids. 2002;14:3798–3819.
  • Sadeghi H, Pollard A. Effects of passive control rings positioned in the shear layer and potential core of a turbulent round jet. Phys Fluids. 2012;24:115103.
  • Samimy M, Kim J-H, Kastner J, Adamovich I, Utkin Y. Active control of high-speed and high-Reynolds-number jets using plasma actuators. J Fluid Mech. 2007;578:305–330.
  • Danaila I, Boersma BJ. Direct numerical simulation of bifurcating jets. Phys Fluids. 2000;12:1255–1257.
  • Klein M, Sadiki A, Janicka J. A digital filter based generation of inflow data for spatially developing direct numerical and large eddy simulations. J Comput Phys. 2003;186:652–665.
  • Kempf A, Klein M, Janicka J. Efficient generation of initial- and inflow-conditions for transient turbulent flows in arbitrary geometries. Flow Turbul Combust. 2005;74:67–84.
  • di Mare L, Klein M, Jones WP, Janicka J. Synthetic turbulence inflow conditions for large eddy simulation. Phys Fluids. 2006;18:1–11.
  • Fathali M, Klein M, Broeckhoven T, Lacor C, Baelmans M. Generation of turbulent inflow and initial conditions based on multi-correlated random fields. Int J Numer Methods Fluids. 2007;57:93–117.
  • Tabor GR, Baba-Ahmadi MH. Inlet conditions for large eddy simulation: a review. Comput Fluids. 2010;39:553–567.
  • Ferziger JH, Peric M. Computational methods for fluid dynamics. Berlin Heidelberg: Springer-Verlag; 1996.
  • Sadeghi H, Pollard A. The preferred and shear layer modes in a jet under passive controls. Proceedings of 18th Australasian Fluid Mechanics Conference; 2012 Dec 3–7; Launceston, UK; 2012.
  • Ball CG, Fellouah H, Pollard A. The flow field in turbulent round free jets. Prog Aerosp Sci. 2012;50:1–26.
  • Husain HS, Hussain F. Elliptic jets. Part 3. Dynamics of preferred mode coherent structure. J Fluid Mech. 1993;248:315–361.
  • Hertzberg JR, Ho CM. Three-dimensional vortex dynamics in a rectangular sudden expansion. J. Fluid Mech. 1995;289:1–27.

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