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2019 | OriginalPaper | Buchkapitel

32. Numerical Simulation of Vortex Shedding from a Cylindrical Bluff-Body Flame Stabilizer

verfasst von : Sombuddha Bagchi, Sourav Sarkar, Uddalok Sen, Achintya Mukhopadhyay, Swarnendu Sen

Erschienen in: Advances in Materials, Mechanical and Industrial Engineering

Verlag: Springer International Publishing

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Abstract

A two-dimensional, laminar transient flow past a cylindrical bluff body, with methane injection perpendicular to the direction of the free stream flow, i.e. the cross-flow arrangement, is numerically studied. An unstructured grid finite volume method is used and simulations were carried out. The methane mass fraction and the injection velocity of methane injected from the slotted cylinder are altered simultaneously, and their effects on the combustion, flame characteristics, and fluid mechanics are investigated. The flame is anchored right in front of the cylinder and is stabilized by the wake of the bluff body. The current investigation illustrates the qualitative aspects of the vortex shedding phenomena. A particular case of injection velocity and mass fraction is studied in detail and its vortex shedding phenomena are analysed minutely. The non-reacting flow exhibits 2P mode of vortex shedding while the reacting flow exhibits the more common 2S mode. Fast Fourier transform analysis of the temporally fluctuating lift coefficient is performed for the different cases carried out in the present study.

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Literatur
1.
Zurück zum Zitat Renard, P.H., Thévenin, D., Rolon, J.C.: Dynamics of flame/vortex interactions. Prog. Energy Combust. Sci. 26(3), 225–282 (2000)CrossRef Renard, P.H., Thévenin, D., Rolon, J.C.: Dynamics of flame/vortex interactions. Prog. Energy Combust. Sci. 26(3), 225–282 (2000)CrossRef
2.
Zurück zum Zitat Candel, S.: Combustion dynamics and control: progress and challenges. Proc. Combust. Inst. 29, 1–28 (2002)CrossRef Candel, S.: Combustion dynamics and control: progress and challenges. Proc. Combust. Inst. 29, 1–28 (2002)CrossRef
3.
Zurück zum Zitat Delhaye, B., Veynante, D., Candel, S.M., Minh, H.H.: Simulation and modeling of reactive shear layers. Theor. Comput. Fluid Dynam. 6, 67–87 (1994)CrossRef Delhaye, B., Veynante, D., Candel, S.M., Minh, H.H.: Simulation and modeling of reactive shear layers. Theor. Comput. Fluid Dynam. 6, 67–87 (1994)CrossRef
5.
Zurück zum Zitat Poszdiech, O., Grundmann, R.: A systematic approach to the numerical calculation of fundamental quantities of the two-dimensional flow over a circular cylinder. J. Fluids Struct. 23, 479–499 (2007)CrossRef Poszdiech, O., Grundmann, R.: A systematic approach to the numerical calculation of fundamental quantities of the two-dimensional flow over a circular cylinder. J. Fluids Struct. 23, 479–499 (2007)CrossRef
6.
Zurück zum Zitat Wang, H.F., Cao, H.L., Zhou, Y.: POD analysis of a finite-length cylinder near wake. Exp. Fluids 55, 1790 (2014)CrossRef Wang, H.F., Cao, H.L., Zhou, Y.: POD analysis of a finite-length cylinder near wake. Exp. Fluids 55, 1790 (2014)CrossRef
7.
Zurück zum Zitat Singha, S., Singhamahapatra, K.P.: Flow past a circular cylinder between parallel walls at low Reynolds numbers. Ocean Eng. 37, 757–769 (2010)CrossRef Singha, S., Singhamahapatra, K.P.: Flow past a circular cylinder between parallel walls at low Reynolds numbers. Ocean Eng. 37, 757–769 (2010)CrossRef
8.
9.
Zurück zum Zitat Zhu, M.M., Zhao, P.H., Ge, H.W., Chen, Y.L.: Simulation of vortex shedding behind a bluff body flame stabilizer using a hybrid U-RANS/PDF method. Acta. Mech. Sin. 28, 348–358 (2012)CrossRef Zhu, M.M., Zhao, P.H., Ge, H.W., Chen, Y.L.: Simulation of vortex shedding behind a bluff body flame stabilizer using a hybrid U-RANS/PDF method. Acta. Mech. Sin. 28, 348–358 (2012)CrossRef
10.
Zurück zum Zitat Raghavan, V., Shijin, P.K., Babu, V.: Numerical investigation of flame–vortex interactions in laminar cross-flow non-premixed flames in the presence of bluff bodies. Combust. Theor. Model. 20, 683–706 (2016)MathSciNetCrossRef Raghavan, V., Shijin, P.K., Babu, V.: Numerical investigation of flame–vortex interactions in laminar cross-flow non-premixed flames in the presence of bluff bodies. Combust. Theor. Model. 20, 683–706 (2016)MathSciNetCrossRef
11.
Zurück zum Zitat Torero, J.L., Bonneau, L., Most, J.M., Joulain, P.: The effect of gravity on a laminar diffusion flame established over a horizontal flat plate. Proc. Combust. Inst. 25, 1701–1709 (1994)CrossRef Torero, J.L., Bonneau, L., Most, J.M., Joulain, P.: The effect of gravity on a laminar diffusion flame established over a horizontal flat plate. Proc. Combust. Inst. 25, 1701–1709 (1994)CrossRef
12.
Zurück zum Zitat Ha, J.S., Shim, S.H., Shin, H.D.: Boundary layer diffusion flame over a flat plate in the presence and absence of flow separation. Combust. Sci. Technol. 75, 241–260 (1991)CrossRef Ha, J.S., Shim, S.H., Shin, H.D.: Boundary layer diffusion flame over a flat plate in the presence and absence of flow separation. Combust. Sci. Technol. 75, 241–260 (1991)CrossRef
13.
Zurück zum Zitat Hirano, T., Kanno, Y.: Aerodynamic and thermal structures of the laminar boundary layer over a flat plate with a diffusion flame. Proc. Combust. Inst. 14, 391–398 (1973)CrossRef Hirano, T., Kanno, Y.: Aerodynamic and thermal structures of the laminar boundary layer over a flat plate with a diffusion flame. Proc. Combust. Inst. 14, 391–398 (1973)CrossRef
14.
Zurück zum Zitat Hirano, T., Kinoshita, M.: Gas velocity and temperature profiles of a diffusion flame stabilized in the stream over liquid fuel. Proc. Combust. Inst. 15, 379–387 (1975)CrossRef Hirano, T., Kinoshita, M.: Gas velocity and temperature profiles of a diffusion flame stabilized in the stream over liquid fuel. Proc. Combust. Inst. 15, 379–387 (1975)CrossRef
15.
Zurück zum Zitat Gopalakrishnan, E.D., Raghavan, V.: Numerical investigation of laminar diffusion flames established on a horizontal flat plate in a parallel air stream. Int. J. Spray Combust. Dynam. 3(2), 161–190 (2011)CrossRef Gopalakrishnan, E.D., Raghavan, V.: Numerical investigation of laminar diffusion flames established on a horizontal flat plate in a parallel air stream. Int. J. Spray Combust. Dynam. 3(2), 161–190 (2011)CrossRef
16.
Zurück zum Zitat Peters, N.: Flame calculations with reduced mechanisms—an outline. In: Peters, N., Rogg, B. (eds.) Reduced Kinetic Mechanisms for Applications in Combustion Systems. Lecture Notes in Physics Monographs, vol. 15, pp. 3–14. Springer, Berlin (1993)CrossRef Peters, N.: Flame calculations with reduced mechanisms—an outline. In: Peters, N., Rogg, B. (eds.) Reduced Kinetic Mechanisms for Applications in Combustion Systems. Lecture Notes in Physics Monographs, vol. 15, pp. 3–14. Springer, Berlin (1993)CrossRef
17.
Zurück zum Zitat Ueda, T., Ooshima, A., Saito, N., Mizomoto, M.: Aerodynamic structure of a laminar boundary layer diffusion flame over a horizontal flat plate—experimental analysis. JSME Int. J. Ser. 234-II(4), 527–532 (1991)CrossRef Ueda, T., Ooshima, A., Saito, N., Mizomoto, M.: Aerodynamic structure of a laminar boundary layer diffusion flame over a horizontal flat plate—experimental analysis. JSME Int. J. Ser. 234-II(4), 527–532 (1991)CrossRef
18.
Zurück zum Zitat Ramachandra, A., Raghunandan, B.N.: Buoyancy effects on the characteristics of a laminar boundary layer diffusion flame in a confined flow. Combust. Flame 58, 191–196 (1984)CrossRef Ramachandra, A., Raghunandan, B.N.: Buoyancy effects on the characteristics of a laminar boundary layer diffusion flame in a confined flow. Combust. Flame 58, 191–196 (1984)CrossRef
19.
Zurück zum Zitat Rohmat, T.A., Katoh, H., Obara, T., Yoshihashi, T., Ohyagi, S.: Diffusion flame stabilized on a porous plate in a parallel airstream. AIAA J. 36(11), 1945–1952 (1998)CrossRef Rohmat, T.A., Katoh, H., Obara, T., Yoshihashi, T., Ohyagi, S.: Diffusion flame stabilized on a porous plate in a parallel airstream. AIAA J. 36(11), 1945–1952 (1998)CrossRef
20.
Zurück zum Zitat Chen, C.-H., T’ien, J.S.: Diffusion flame stabilization at the leading edge of a fuel plate. Combust. Sci. Technol. 50, 283–306 (1986)CrossRef Chen, C.-H., T’ien, J.S.: Diffusion flame stabilization at the leading edge of a fuel plate. Combust. Sci. Technol. 50, 283–306 (1986)CrossRef
21.
Zurück zum Zitat Wang, X., Suzuki, T., Ochiai, Y., Ohyagi, S.: Numerical studies of reacting flows over flat walls with fuel injection: Part 1—velocity anomaly and hydrodynamic instability. JSME Int J. Ser. B 41(1), 19–27 (1998)CrossRef Wang, X., Suzuki, T., Ochiai, Y., Ohyagi, S.: Numerical studies of reacting flows over flat walls with fuel injection: Part 1—velocity anomaly and hydrodynamic instability. JSME Int J. Ser. B 41(1), 19–27 (1998)CrossRef
22.
Zurück zum Zitat Shijin, P.K., Sundaram, S.S., Raghavan, V.: Numerical investigation of laminar cross-flow non-premixed flames in the presence of a bluff-body. Combust. Theor. Model. 18(6), 692–710 (2014)MathSciNetCrossRef Shijin, P.K., Sundaram, S.S., Raghavan, V.: Numerical investigation of laminar cross-flow non-premixed flames in the presence of a bluff-body. Combust. Theor. Model. 18(6), 692–710 (2014)MathSciNetCrossRef
23.
Zurück zum Zitat Lavid, M., Berlad, A.L.: Gravitational effects on chemically reacting laminar boundary layer flows over a horizontal flat plate. Proc. Combust. Inst. 16, 1557–1568 (1976)CrossRef Lavid, M., Berlad, A.L.: Gravitational effects on chemically reacting laminar boundary layer flows over a horizontal flat plate. Proc. Combust. Inst. 16, 1557–1568 (1976)CrossRef
24.
Zurück zum Zitat Raghunandan, B.N., Yogesh, G.P.: Recirculating flow over a burning surface—flame structure and heat transfer augmentation. Proc. Combust. Inst. 22, 1501–1507 (1988)CrossRef Raghunandan, B.N., Yogesh, G.P.: Recirculating flow over a burning surface—flame structure and heat transfer augmentation. Proc. Combust. Inst. 22, 1501–1507 (1988)CrossRef
25.
Zurück zum Zitat Marble, F.E.: Growth of a diffusion flame in the field of a vortex. Recent advances in the aerospace sciences. In: Casci, C., Bruno, C. (eds.) Honor of Luigi Crocco on His 75th Birthday, Springer, Boston, MA, pp. 395–413 (1985)CrossRef Marble, F.E.: Growth of a diffusion flame in the field of a vortex. Recent advances in the aerospace sciences. In: Casci, C., Bruno, C. (eds.) Honor of Luigi Crocco on His 75th Birthday, Springer, Boston, MA, pp. 395–413 (1985)CrossRef
26.
Zurück zum Zitat Karagozian, A.R., Marble, F.E.: Study of a diffusion flame in a stretched vortex. Combust. Sci. Technol. 45, 65–84 (1986)CrossRef Karagozian, A.R., Marble, F.E.: Study of a diffusion flame in a stretched vortex. Combust. Sci. Technol. 45, 65–84 (1986)CrossRef
27.
Zurück zum Zitat Alain, M., Candel S.M.: A numerical analysis of a diffusion flame–vortex interaction. Combust. Sci. Technol. 60, 79–96 (1988)CrossRef Alain, M., Candel S.M.: A numerical analysis of a diffusion flame–vortex interaction. Combust. Sci. Technol. 60, 79–96 (1988)CrossRef
28.
Zurück zum Zitat Ashurst, W.T., Mcmurtry, P.A.: Flame generation of vorticity: vortex dipoles from monopoles. Combust. Sci. Technol. 66, 17–37 (1989)CrossRef Ashurst, W.T., Mcmurtry, P.A.: Flame generation of vorticity: vortex dipoles from monopoles. Combust. Sci. Technol. 66, 17–37 (1989)CrossRef
29.
Zurück zum Zitat Lewis, G.S., Cantwell, B.J., Vandsburger, U., Bowman, C.T.: An investigation of the structure of a laminar non-premixed flame in an unsteady vortical flow. Symp. (Int.) Combust. 22, 515–522 (1989)CrossRef Lewis, G.S., Cantwell, B.J., Vandsburger, U., Bowman, C.T.: An investigation of the structure of a laminar non-premixed flame in an unsteady vortical flow. Symp. (Int.) Combust. 22, 515–522 (1989)CrossRef
30.
Zurück zum Zitat Macaraeg, M.G., Jackson, T.L., Hussaini, M.Y.: Ignition and structure of a laminar diffusion flame in the field of a vortex. Combust. Sci. Technol. 87, 363–387 (1993)CrossRef Macaraeg, M.G., Jackson, T.L., Hussaini, M.Y.: Ignition and structure of a laminar diffusion flame in the field of a vortex. Combust. Sci. Technol. 87, 363–387 (1993)CrossRef
31.
Zurück zum Zitat Rolon, J.C., Aguerre, F., Candel, S.: Experiments on the interaction between a vortex and a strained diffusion flame. Combust. Flame 100, 422–442 (1995)CrossRef Rolon, J.C., Aguerre, F., Candel, S.: Experiments on the interaction between a vortex and a strained diffusion flame. Combust. Flame 100, 422–442 (1995)CrossRef
32.
Zurück zum Zitat Fan, A., Wan, J., Maruta, K., Yao, H., Liu, W.: Interactions between heat transfer, flow field and flame stabilization in a micro-combustor with a bluff body. Int. J. Heat Mass Trans. 66, 72–79 (2013)CrossRef Fan, A., Wan, J., Maruta, K., Yao, H., Liu, W.: Interactions between heat transfer, flow field and flame stabilization in a micro-combustor with a bluff body. Int. J. Heat Mass Trans. 66, 72–79 (2013)CrossRef
33.
Zurück zum Zitat Altay, H.M., Speth, R.L., Hudgins, D.E., Ghoniem, A.F.: Flame–vortex interaction driven combustion dynamics in a backward-facing step combustor. Combust. Flame 156(5), 1111–1125 (2009)CrossRef Altay, H.M., Speth, R.L., Hudgins, D.E., Ghoniem, A.F.: Flame–vortex interaction driven combustion dynamics in a backward-facing step combustor. Combust. Flame 156(5), 1111–1125 (2009)CrossRef
34.
Zurück zum Zitat Barlow, R.S., Karpetis, A., Frank, J.H., Chen, J.Y.: Scalar profiles and NO formation in laminar opposed-flow partially premixed methane/air flames. Combust. Flame 127, 2102–2118 (2001)CrossRef Barlow, R.S., Karpetis, A., Frank, J.H., Chen, J.Y.: Scalar profiles and NO formation in laminar opposed-flow partially premixed methane/air flames. Combust. Flame 127, 2102–2118 (2001)CrossRef
35.
Zurück zum Zitat Mondal, S., Mukhopadhyay, A., Sen, S.: Dynamic characterization of a laboratory scale pulse combustor. Combust. Sci. Tech. 186(2), 139–152 (2014) Mondal, S., Mukhopadhyay, A., Sen, S.: Dynamic characterization of a laboratory scale pulse combustor. Combust. Sci. Tech. 186(2), 139–152 (2014)
36.
Zurück zum Zitat Sen, U., Mukhopadhyay, A., Sen, S.: Effects of fluid injection on dynamics of flow past a circular cylinder. Eur. J. Mech. B/Fluids 61, 187–199 (2017)MathSciNetCrossRef Sen, U., Mukhopadhyay, A., Sen, S.: Effects of fluid injection on dynamics of flow past a circular cylinder. Eur. J. Mech. B/Fluids 61, 187–199 (2017)MathSciNetCrossRef
37.
Zurück zum Zitat Fujii, S., Eguchi, K.: A Comparison of non-reacting and reacting flows around a bluff-body flame stabilizer. J. Fluids Eng. 103(2), 328–334 (1981)CrossRef Fujii, S., Eguchi, K.: A Comparison of non-reacting and reacting flows around a bluff-body flame stabilizer. J. Fluids Eng. 103(2), 328–334 (1981)CrossRef
38.
Zurück zum Zitat Bagchi, S., Sarkar, S., Sen, U., Mukhopadhyay, A., Sen, S.: Numerical investigation of vortex shedding from a bluff body stabilised flame with cross injection. Proc. Sustain. Energy Environ. Challenges 23, 250–254 (2018) Bagchi, S., Sarkar, S., Sen, U., Mukhopadhyay, A., Sen, S.: Numerical investigation of vortex shedding from a bluff body stabilised flame with cross injection. Proc. Sustain. Energy Environ. Challenges 23, 250–254 (2018)
39.
Zurück zum Zitat Bagchi, S., Sarkar, S., Mukhopadhyay, A., Sen, S.: Numerical simulation of vortex shedding from a cylindrical bluff body flame stabilizer. In: Proceedings of International Conference of Mechanical Engineering, pp. 678–682 (2018) Bagchi, S., Sarkar, S., Mukhopadhyay, A., Sen, S.: Numerical simulation of vortex shedding from a cylindrical bluff body flame stabilizer. In: Proceedings of International Conference of Mechanical Engineering, pp. 678–682 (2018)
40.
Zurück zum Zitat Bharadwaj, N., Safta, C., Madnia, C.K.: Flame-wall interaction for a non-premixed flame propelled by a vortex ring. Combust. Theor. Model. 11(1), 1–19 (2007)CrossRef Bharadwaj, N., Safta, C., Madnia, C.K.: Flame-wall interaction for a non-premixed flame propelled by a vortex ring. Combust. Theor. Model. 11(1), 1–19 (2007)CrossRef
41.
Zurück zum Zitat Safta, C., Madnia, C.K.: Characteristics of methane diffusion flame in a reacting vortex ring. Combust. Theor. Model. 8(3), 449–474 (2004)CrossRef Safta, C., Madnia, C.K.: Characteristics of methane diffusion flame in a reacting vortex ring. Combust. Theor. Model. 8(3), 449–474 (2004)CrossRef
42.
Zurück zum Zitat Renard, P.H., Rolon, J.C., Thévenin, D., Candel, S.: Investigations of heat release, extinction, and time evaluation of the flame surface, for a non-premixed flame interacting with a vortex. Combust. Flame 117, 189–205 (1999)CrossRef Renard, P.H., Rolon, J.C., Thévenin, D., Candel, S.: Investigations of heat release, extinction, and time evaluation of the flame surface, for a non-premixed flame interacting with a vortex. Combust. Flame 117, 189–205 (1999)CrossRef
43.
Zurück zum Zitat Hermanns, M., Vera, M., Liñán, A.: On the dynamics of flame edges in diffusion-flame/vortex interactions. Combust. Flame 149, 32–48 (2007)CrossRef Hermanns, M., Vera, M., Liñán, A.: On the dynamics of flame edges in diffusion-flame/vortex interactions. Combust. Flame 149, 32–48 (2007)CrossRef
44.
Zurück zum Zitat Mishra, S., Santhosh, R., Basu, S.: Scalar transport in diffusion flame wrapped up by an air and fuel side vortex. Int. Comm. Heat Mass Trans. 47, 32–40 (2013)CrossRef Mishra, S., Santhosh, R., Basu, S.: Scalar transport in diffusion flame wrapped up by an air and fuel side vortex. Int. Comm. Heat Mass Trans. 47, 32–40 (2013)CrossRef
45.
Zurück zum Zitat Cetegen, B.M., Mohamad, N.: Experiments on liquid mixing and reaction in a vortex. J. Fluid Mech. 249, 391–414 (1993)CrossRef Cetegen, B.M., Mohamad, N.: Experiments on liquid mixing and reaction in a vortex. J. Fluid Mech. 249, 391–414 (1993)CrossRef
46.
Zurück zum Zitat Thiesset, F., Maurice, G., Halter, F., Mazellier, N., Chauveau, C., Gökalp, I.: Flame-vortex interaction: effect of residence time and formulation of a new efficiency function. Proc. Combust. Inst. 36(2), 1843–1851 (2017)CrossRef Thiesset, F., Maurice, G., Halter, F., Mazellier, N., Chauveau, C., Gökalp, I.: Flame-vortex interaction: effect of residence time and formulation of a new efficiency function. Proc. Combust. Inst. 36(2), 1843–1851 (2017)CrossRef
47.
Zurück zum Zitat Stöhr, M., Boxx, I., Carter, C.D., Meier, W.: Experimental study of vortex-flame interaction in a gas turbine model combustor. Combust. Flame 159(8), 2636–2649 (2012)CrossRef Stöhr, M., Boxx, I., Carter, C.D., Meier, W.: Experimental study of vortex-flame interaction in a gas turbine model combustor. Combust. Flame 159(8), 2636–2649 (2012)CrossRef
48.
Zurück zum Zitat Smooke, M.D., Puri, I.K., Seshadri, K.: A comparison between numerical calculations and experimental measurements of the structure of a counter flow diffusion flame burning diluted methane in diluted air. In: 21st Symposium (International) on Combustion. The Combustion Institute, pp. 1783–1792 (1986) Smooke, M.D., Puri, I.K., Seshadri, K.: A comparison between numerical calculations and experimental measurements of the structure of a counter flow diffusion flame burning diluted methane in diluted air. In: 21st Symposium (International) on Combustion. The Combustion Institute, pp. 1783–1792 (1986)
49.
Zurück zum Zitat Braza, M., Chassaing, P., Ha, M.H.: Numerical study and physical analysis of the pressure and velocity fields in the near wake of a circular cylinder. J. Fluid Mech. 165, 79–130 (1986)MathSciNetCrossRef Braza, M., Chassaing, P., Ha, M.H.: Numerical study and physical analysis of the pressure and velocity fields in the near wake of a circular cylinder. J. Fluid Mech. 165, 79–130 (1986)MathSciNetCrossRef
50.
Zurück zum Zitat Liu, C., Zheng, X., Sung, C.H.: Preconditioned multigrid methods for unsteady incompressible flows. J. Comput. Phys. 139, 35–57 (1998)CrossRef Liu, C., Zheng, X., Sung, C.H.: Preconditioned multigrid methods for unsteady incompressible flows. J. Comput. Phys. 139, 35–57 (1998)CrossRef
51.
Zurück zum Zitat Park, J., Kwon, K., Choi, H.: Numerical solutions of flow past a circular cylinder at Reynolds number up to 160. KSME Int. J. 12(6), 1200–1205 (1998)CrossRef Park, J., Kwon, K., Choi, H.: Numerical solutions of flow past a circular cylinder at Reynolds number up to 160. KSME Int. J. 12(6), 1200–1205 (1998)CrossRef
52.
Zurück zum Zitat Meneghini, J.R., Saltara, F., Siqueira, C.L.R., Ferrari Jr., J.A.: Numerical simulation off low interference between two circular cylinders in tandem and side-by-side arrangements. J. Fluids Struct. 15, 327–350 (2001)CrossRef Meneghini, J.R., Saltara, F., Siqueira, C.L.R., Ferrari Jr., J.A.: Numerical simulation off low interference between two circular cylinders in tandem and side-by-side arrangements. J. Fluids Struct. 15, 327–350 (2001)CrossRef
53.
Zurück zum Zitat Shi, J.-M., Gerlach, D., Breuer, M., Biswas, G., Durst, F.: Heating effect on steady and unsteady horizontal laminar flow of air past a circular cylinder. Phys. Fluids 16(12), 4331–4345 (2004)CrossRef Shi, J.-M., Gerlach, D., Breuer, M., Biswas, G., Durst, F.: Heating effect on steady and unsteady horizontal laminar flow of air past a circular cylinder. Phys. Fluids 16(12), 4331–4345 (2004)CrossRef
54.
Zurück zum Zitat Ding, H., Shu, C., Yeo, K.S., Xu, D.: Numerical simulation of flows around two circular cylinders by mesh-free least square-based finite difference methods. Int. J. Numer. Methods Fluids 53, 305–332 (2007)CrossRef Ding, H., Shu, C., Yeo, K.S., Xu, D.: Numerical simulation of flows around two circular cylinders by mesh-free least square-based finite difference methods. Int. J. Numer. Methods Fluids 53, 305–332 (2007)CrossRef
55.
Zurück zum Zitat Mittal, S.: Instability of the separated shear layer in flow past a cylinder: forced excitation. Int. J. Numer. Methods Fluids 56, 687–702 (2008)CrossRef Mittal, S.: Instability of the separated shear layer in flow past a cylinder: forced excitation. Int. J. Numer. Methods Fluids 56, 687–702 (2008)CrossRef
56.
Zurück zum Zitat Rajani, B.N., Kandasamy, A., Majumdar, S.: Numerical simulation of laminar flow past a circular cylinder. Appl. Math. Model. 33, 1228–1247 (2009)MathSciNetCrossRef Rajani, B.N., Kandasamy, A., Majumdar, S.: Numerical simulation of laminar flow past a circular cylinder. Appl. Math. Model. 33, 1228–1247 (2009)MathSciNetCrossRef
57.
Zurück zum Zitat Li, Y., Zhang, R., Shock, R., Chen, H.: Prediction of vortex shedding from a circular cylinder using a volumetric Lattice-Boltzmann boundary approach. Eur. Phys. J. 171, 91–97 (2009) Li, Y., Zhang, R., Shock, R., Chen, H.: Prediction of vortex shedding from a circular cylinder using a volumetric Lattice-Boltzmann boundary approach. Eur. Phys. J. 171, 91–97 (2009)
58.
Zurück zum Zitat Harichandan, A.B., Roy, A.: Numerical investigation of low Reynolds number flow past two and three circular cylinders using unstructured grid CFR scheme. Int. J. Heat Fluid Flow 31, 154–171 (2010)CrossRef Harichandan, A.B., Roy, A.: Numerical investigation of low Reynolds number flow past two and three circular cylinders using unstructured grid CFR scheme. Int. J. Heat Fluid Flow 31, 154–171 (2010)CrossRef
Metadaten
Titel
Numerical Simulation of Vortex Shedding from a Cylindrical Bluff-Body Flame Stabilizer
verfasst von
Sombuddha Bagchi
Sourav Sarkar
Uddalok Sen
Achintya Mukhopadhyay
Swarnendu Sen
Copyright-Jahr
2019
DOI
https://doi.org/10.1007/978-3-319-96968-8_32

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