98
Views
27
CrossRef citations to date
0
Altmetric
Original Articles

Effect of combustion on near-critical swirling flow

, &
Pages 625-645 | Received 25 Mar 2002, Published online: 15 May 2007

References

  • Althaus, W, Bruecker, Ch, and Weimer, M, 1995. "Breakdown of slender vortices". In: Fluid Vortices. Dordrecht: Kluwer; 1995. pp. 373–426.
  • Benjamin, T B, 1962. Theory of the vortex breakdown phenomenon, J. Fluid Mech. 14 (1962), pp. 593–629.
  • Bruecker, Ch, and Althaus, W, 1995. Study of vortex breakdown by particle tracking velocimetry (PTV), Part 3: time-dependent structure and development of breakdown modes, Experiments in Fluids 18 (1995), pp. 174–86.
  • Buckmaster, J D, and Ludford, G S S, 1982. Theory of Laminar Flames. Cambridge: Cambridge University Press; 1982.
  • Buckmaster, J D, 1993. The structure and syability of laminar flames, Ann. Rev. Fluid Mech. 25 (1993), pp. 21–54.
  • Escudier, M, 1988. Vortex breakdown: observations and explanations, Prog. Aero. Sci. 25 (1988), pp. 189–229.
  • Gupta, A K, Lilley, D G, and Syred, N, 1984. Swirl Flows. Cambridge, MA: Abacus; 1984.
  • Gupta, A K, Lewis, M J, and Qi, S, 1998. Effect of swirl on combustion characteristics of premixed flames, J. Eng. Gas Turbine and Power Trans. ASME 120 (1998), pp. 488–94.
  • Gutmark, E, Parr, T, Hanson-Parr, D, and Schadow, K C, 1992. Structure of a controlled ducted flame, Comb. Sci. Tech. 87 (1992), pp. 217–39.
  • Hall, M G, 1972. Vortex breakdown, Ann. Rev. Fluid Mech. 4 (1972), pp. 195–217.
  • Judd, K P, Rusak, Z, and Hirsa, A, 2000. "Theoretical and experimental studies of swirling flows in diverging streamtubes". In: Rahman, M, and Brebbia, C A, eds. Advances in Fluid Mechanics III. Southampton: WIT Press; 2000. pp. 491–502.
  • Kapila, A K, 1992. "Role of acoustics in combustion instability". In: Hussaini, M Y, Kumar, A, and Voight, R G, eds. Major Research Topics in Combustion. Berlin: Springer; 1992.
  • Lefebvre, A H, 1998. Gas Turbine Combustion. London: Taylor and Francis; 1998.
  • Leibovich, S, 1978. The structure of vortex breakdown, Ann. Rev. Fluid Mech. 10 (1978), pp. 221–46.
  • Leibovich, S, 1984. Vortex stability and breakdown: survey and extension, AIAA J. 22 (1984), pp. 1192–206.
  • Malkiel, E, Cohen, J, Rusak, Z, and Wang, S, 1996. Presented at Axisymmetric Vortex Breakdown in a Pipe--Theoretical and Experimental Studies: Proc. 36th Israel Ann. Conf..
  • McManus, K R, Poinsot, T, and Candel, S M, 1993. Active control of combustion instabilities, Prog. Energy Comb. Sci. 19 (1993), pp. 1–29.
  • McVey, J B, Padget, F C, Rosfjord, T J, Hu, A S, Peracchio, A A, Schlein, B, and Tegel, D R, 1993. Evaluation of low-NOx, combustor concepts for aeroderivative gas turbine engines, J. Eng. Gas Turbines and Power 115 (1993), pp. 581–7.
  • Paschereit, O, Gutmark, E, and Weisenstein, W, 1998. Control of Thermoacoustic Instabilities and Emissions in an Industrial Type Gas-turbine Combustor: 27th Symp. (Int.) on Combustion (Boulder, CO). Pittsburgh, PA: The Combustion Institute; 1998. pp. 1817–24.
  • Rusak, Z, 1998. The interaction of near-critical swirling flows in a pipe with inlet azimuthal vorticity perturbations, Phys. Fluids 10 (1998), pp. 1672–84.
  • Rusak, Z, 2000. Review of recent studies on the axisymmetric vortex breakdown phenomenon. Presented at AIAA Paper 2000-2529, AIAA Fluids., 2000, Conf..
  • Rusak, Z, and Lamb, D, 1999. Prediction of vortex breakdown in leading edge vortices above slender delta wings, J. Aircraft 36 (1999), pp. 659–67.
  • Rusak, Z, and Wang, S, 1996. Theoretical study of the axisymmetric vortex breakdown phenomenon, SIAM J. Appl. Math. 84 (1996), pp. 65–75.
  • Rusak, Z, Judd, K P, and Wang, S, 1997. The effect of small pipe divergence on near-critical swirling flows, Phys. Fluids 9 (1997), pp. 2273–85.
  • Rusak, Z, Wang, S, and Whiting, C, 1998a. The evolution of a perturbed vortex in a pipe to axisymmetric vortex breakdown, J. Fluid Mech. 366 (1998a), pp. 211–37.
  • Rusak, Z, Whiting, C, and Wang, S, 1998b. Axisymmetric breakdown of a Q-vortex in a pipe, AIAA J. 36 (1998b), pp. 1848–53.
  • Sarpkaya, T, 1995. Vortex breakdown and turbulence, AIAA (1995), paper 95-0433.
  • Sivasegaram, S, and Whitelaw, J H, 1991. The influence of swirl on oscillations in ducted premixed flames, Comb. Flame 85 (1991), pp. 195–205.
  • Snyder, T S, Rosfjord, T J, McVey, J B, and Chiappetta, L M, 1994. Comparison of liquid fuel/air mixing and NOx emmisions for a tangential entry nozzle, ASME, International Gas Turbine and Aeroengine Congress (1994), 94-GT-283.
  • Stephens, J R, Acharya, S, and Gutmark, E J, 1997. Controlled swirl-stabilized spray combustor, AIAA (1997), paper, 97–0464.
  • Thompson, P A, 1972. Compressible Fluid Dynamics. New York: McGraw Hill; 1972.
  • Wang, S, and Rusak, Z, 1996a. On the stability of an axisymmetric rotating flow, Phys. Fluids 8 (1996a), pp. 1007–16.
  • Wang, S, and Rusak, Z, 1996b. On the stability of non-columnar swirling flows, Phys. Fluids 8 (1996b), pp. 1017–23.
  • Wang, S, and Rusak, Z, 1997a. The dynamics of a swirling flow in a pipe and transition to axisymmetric vortex breakdown, J. Fluid Mech. 340 (1997a), pp. 177–223.
  • Wang, S, and Rusak, Z, 1997b. The effect of slight viscosity on near critical swirling flows, Phys. Fluids 9 (1997b), pp. 1914–27.
  • Wang, T, and Yang, V, 1997. Combustion response of a premixed swirl injector to longitudinal acoustic oscillations, AIAA (1997), Paper 97-0694 35th Aerospace Science Meeting and Exhibit (Reno, NV).
  • Williams, F A, 1985. Combustion Theory. New York: Benjamin Cummings; 1985.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.