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[해외논문] A Review of Droplet Dynamics and Vaporization Modeling for Engineering Calculations

Journal of engineering for gas turbines and power, v.117 no.3, 1995년, pp.453 - 461  

Aggarwal, S. K. (Department of Mechanical Engineering, University of Illinois, Chicago, Chicago, IL 60607) ,  Peng, F. (Department of Mechanical Engineering, University of Illinois, Chicago, Chicago, IL 60607)

Abstract AI-Helper 아이콘AI-Helper

The present paper reviews the methodologies for representing the droplet motion and vaporization history in two-phase flow computations. The focus is on the use of droplet models that are realistic in terms of their efficient implementation in comprehensive spray simulations, representation of impor...

참고문헌 (63)

  1. 10.1016/0017-9310(89)90043-4 Abramzon B. , and SirignanoW. A., 1989, “Droplet Vaporization Model for Spray Combustion Calculations,” Int. J. Heat Mass Transfer, Vol. 32, p. 16051605. 

  2. 10.2514/3.8802 Aggarwal S. K. , TongA. Y., and SirignanoW. A., 1984, “A Comparison of Vaporization Models in Spray Calculations,” AIAA J., Vol. 22(10), pp. 1448-1457. 

  3. 10.1080/00102209208951795 Aggarwal S. K. , and ChitreS., 1992, “On the Structure of Unconfined Spray Flames,” Combust. Sci. Technol., Vol. 81, p. 9797. 

  4. Basset, A. B., 1888, A Treatise on Hydrodynamics, Deighton, Bell and Co., Cambridge; Vol. 2, Ch. 21. 

  5. Boussinesq J. V. , 1885, “Sur La Resistance ... d’une Sphere Solide,” C. R. des Seances de l’Academie, Vol. 100, p. 935935. 

  6. Chang, E., 1992, “Accelerated Motion of Rigid Spheres in Unsteady Flow at Low to Moderate Reynolds Numbers,” Ph.D. Thesis, Brown University, Rhode Island. 

  7. 10.1080/00102208708960314 Chen Z. H. , LiuG. E., and SohrabS. H., 1987, “Premixed Flames in Counterflow Jets Under Rigid Body Rotation,” Combust. Sci. Tech., Vol. 51, pp. 39-50. 

  8. Chiang G. H. , RajuM. S., and SirignanoW. A., 1991, “Numerical Analysis of Converting, Vaporizing fuel Droplets With Variable Properties,” Int. J. Heat Mass Transfer, Vol. XX, pp. XX-XXXX-XX. 

  9. 10.1002/cjce.5450490403 Clift R. , and GrauvinW. H., 1971, “Motion of Entrained Particles in Gas Stream,” Can. J. Chem. Eng., Vol. 49, p. 439439. 

  10. Clift, R., Grace, J. R., and Weber, M. E., 1978, Bubbles, Drops and Particles, Academic Press, New York. 

  11. 10.1007/BF03185030 Corrsin S. , and LumleyJ., 1956, “On the Equation of Motion for a Particle in Turbulent Fluid,” Appl. Sci. Res. A, Vol. 6, pp. 114-116. 

  12. 10.1017/S0022112090000477 Dandy D. A. , and DwyerH. A., 1990, “A Sphere in Shear Flow at Finite Reynolds Number: Effect of Shear on Particle Lift, Drag and Heat Transfer,” J. Fluid Mech., Vol. 216, pp. 318-410. 

  13. 10.1017/S0022112078002177 Drew D. A. , 1978, “The Force on a Small Sphere in Slow Viscous Flow,” J. Fluid Mech., Vol. 88, pp. 393-400. 

  14. 10.1016/S0082-0784(88)80294-7 Dwyer, H. A., and Sanders, B. R., 1986, “A Detailed Study of Burning Droplets,” Twenty-First Symposium (International) on Combustion, The Combustion Institute, Pittsburgh, PA, p. 633. 

  15. 10.1016/S0082-0784(89)80207-3 Dwyer, H. A., and Sanders, B. R., 1988, “Calculations of Unsteady Reacting Droplet Flows,” Twenty-Second Symposium (International) on Combustion, The Combustion Institute, Pittsburgh, PA, p. 1923. 

  16. 10.1017/S0022112064001380 Eichhorn R. , and SmallS., 1964, “Experiments on the Lift and Drag of Spheres Suspended in a Poiseuille Flow,” J. Fluid Mech., Vol. 20, pp. 513-527. 

  17. 10.1016/S0082-0784(67)80197-8 Eisenklam, P., Arunchalam, S. A., and Weston, J. A., 1967, “Evaporation Rates and Drag Resistance of Burning Drops,” Proc. 11th Symp. (Int.) Symp. on Combustion, Butterworths, London, pp. 715-728. 

  18. 10.1016/0360-1285(77)90012-0 Faeth G. M. , 1977, “Current Status of Droplet and Liquid Combustion,” Prog. Energy Combust. Sci., Vol. 3, pp. 191-224. 

  19. Flatbush, E. K., “Computer Simulation of the Burning of a Multicomponent Droplet,” M. S. Thesis, University of California, Davis, 1987. 

  20. 10.1016/S0082-0784(53)80107-4 Godsave, G. A. E., 1953, “Studies of the Combustion of Drops in a Fuel Spray: The Burning of Single Drops of Fuel,” Fourth Symposium (International) on Combustion, Williams and Wilkins, Baltimore, pp. 818-830. 

  21. 10.2514/8.6508 Goldsmith M. , and PennerS. S., 1954, “On the Burning of Single Drops of Fuel in an Oxidizing Atmosphere,” Jet Propul., Vol. 24, pp. 245-251. 

  22. Haywood R. J. , NafzigerR., and RenksizbulutM., 1989, “A Detailed Examination of Gas and Liquid Phase Transient Processes in Convective Droplet Evaporation,” ASME Journal of Heat Transfer, Vol. I11, p. 495495. 

  23. 10.1061/JMCEA3.0000922 Hjelmfelt, A. T., Jr., and Mockros, L. F., 1967, “Stokes Flow Behavior of an Accelerating Sphere,” J. Engng. Mech. Div. (Proc. ASCE), Vol. 93, No. EM687. 

  24. Hughes R. R. , and GilliandE. R., 1952, “The Mechanics of Drops,” Chem. Engng. Prog., Vol. 48, p. 497497. 

  25. Ingebo, R. D., 1956, “Drag Coefficients for Droplets and Solid Spheres in Clouds Accelerating in Air Streams,” NACA Technical Note, TN 3762. 

  26. 10.1016/0360-1285(86)90014-6 Jarosinski J. , 1986, “A Survey of Recent Studies on Flame Extinction,” Prog. Energy Combust. Sci., Vol. 12, p. 8181. 

  27. 10.1016/0010-2180(76)90053-5 Law C. K. , 1976, “Unsteady Droplet Vaporization With Droplet Heating,” Combustion and Flame, Vol. 26, pp. 17-22. 

  28. 10.1016/0010-2180(77)90023-2 Law C. K. , and SirignanoW. A., 1977, “Unsteady Droplet Combustion With Droplet Heating. II, Conduction Limit,” Combustion and Flame, Vol. 29, pp. 175-186. 

  29. 10.1016/0360-1285(82)90011-9 Law C. K. , 1982, “Recent Advances in Droplet Vaporization and Combustion,” Prog. Energy Combust. Sci., Vol. 8, pp. 171-201. 

  30. 10.1146/annurev.fl.12.010180.002251 Leal L. G. , 1980, “Particle Motions in a Viscous Fluid,” Ann. Rev. Fluid Mech., Vol. 12, pp. 435-476. 

  31. 10.1063/1.864230 Maxey R. M. , and RileyJ. J., 1983, “Equation of Motion for a Small Rigid Sphere in a Nonuniform Flow,” Phys. Fluids, Vol. 26, pp. 883-889. 

  32. 10.1017/S0022112091001751 McLaughlin J. B. , 1991, “Inertial Migration of a Small Sphere in Linear Shear Flows,” J. Fluid Mech., Vol. 224, pp. 261-274. 

  33. 10.1016/0301-9322(92)90012-6 Mei R. , 1992, “An Approximate Expression for the Shear Lift Force on a Spherical Particle at Finite Reynolds Number,” Int. J. Multiphase Flow, Vol. 18, No. 1, pp. 145-147. 

  34. 10.1017/S0022112064000210 Odar F. , and HamiltonW. S., 1964, “Forces on a Sphere Accelerating in a Viscous Fluid,” J. Fluid Mech., Vol. 18, pp. 302-314. 

  35. 10.1017/S0022112066000272 Odar F. , 1966, “Verification on the Proposed Equation for Calculation of the Forces on a Sphere Accelerating in a Viscous Fluid,” J. Fluid Mech., Vol. 25, pp. 591-592. 

  36. 10.1115/1.3601287 Odar F. , 1968, “Unsteady Motion of a Sphere Along a Circular Path in a Viscous Fluid,” ASME Journal of Applied Mechanics, Vol. 35, pp. 652-654. 

  37. Oseen, C. W., 1927, Hydrodynamik, Akademische Verlagsgesellschaft, Leipzig. 

  38. Peng, F., and Aggarwal, S. K., 1993, “Droplet Motion Under the Influence of Flow Nonuniformity and Relative Acceleration,” presented at the 206th ACS National Meeting. 

  39. 10.1016/0017-9310(78)90180-1 Prakash S. , and SirignanoW. A., 1978, “Liquid Fuel Droplet Heating With Internal Circulation,” International Journal of Heat and Mass Transfer, Vol. 21, pp. 885-895. 

  40. 10.1016/0017-9310(80)90113-1 Prakash S. , and SirignanoW. A., 1980, “Theory of Convective Droplet Vaporization With Unsteady Heat Transfer in the Circulating Liquid Phase,” International Journal of Heat and Mass Transfer, Vol. 23, No. 3, 1980, pp. 253-268. 

  41. Putnam A. , 1961, “Integratable Form of Droplet Drag Coefficient,” ARS J., Vol. 31, pp. 1467-68. 

  42. 10.1080/00102208908947154 Puri I. K. , and LibbyP. A., 1989, “Droplet Behavior in Counterflowing Streams,” Combust. Sci. and Tech., Vol. 66, pp. 267-292. 

  43. 10.1063/1.857627 Puri I. K. , and LibbyP. A., 1990, “On the Forces of Droplets in Poiseuille Flow,” Phys. Fluids A, Vol. 2, No. 7, pp. 1281-1284. 

  44. Ranz W. E. , and MarshallW. R., 1952, “Evaporation From Drops,” Chem. Engng. Prog., Vol. 48, pp. 141-173. 

  45. 10.1016/0301-9322(88)90005-5 Renksizbulut M. , and HaywoodR. J., 1988, “Transient Droplet Evaporation With Variable Properties and Internal Circulation at Intermediate Reynolds Numbers,” Int. J. Multiphase Flow, Vol. 14, pp. 189-202. 

  46. 10.1016/0301-9322(88)90005-5 Renksizbulut M. , and YuenM. C., 1983a, “Experimental Study of Droplet Evaporation With Variable Properties and Internal Circulation at Intermediate Reynolds Numbers,” Int. J. Multiphase Flow, Vol. 14, p. 189189. 

  47. 10.1115/1.3245591 Renksizbulut M. , and YuenM. C., 1983b, “Numerical Study of Droplet Evaporation in a Viscous Fluid,” ASME Journal of Heat Transfer, Vol. 105, p. 389389. 

  48. Riley, J. J., 1971, Ph.D. Thesis, The Johns Hopkins University, Baltimore, MD. 

  49. Rivero, M., 1991, “Etude Par Simulation Nume´rique des Forces Exerce´s Sur Une Inclusion Sphe´rique Par un E´coulement Acce´le´re´,” These de Doctorat, I.N.P.T. 

  50. 10.1017/S0022112065000824 Saffman P. G. , 1965, “The Life on a Small Sphere in a Slow Shear Flow,” J. Fluid Mech., Vol. 22, pp. 385-400. 

  51. Shuen, J.-S., and Chen, K.-H., 1993, “A Multi-block 2-D Computer Code for Chemically Reacting Flows With Sprays at All Speeds,” User’s Manual, NASA Lewis Research Center, Cleveland, OH. 

  52. 10.2514/6.1992-3639 Shuen, J. S., Chen, K. H., and Choi, Y., 1993, “A Time-Accurate Algorithm for Chemical Non-equilibrium Viscous Flow at All Speeds,” AIAA Paper No. 92-3639; also to appear in J. Comput. Phys. 

  53. 10.1016/0360-1285(83)90011-4 Sirignano W. A. , 1983, “Fuel Vaporization and Spray Combustion Theory,” Prog. in Energy and Comb. Sci., Vol. 9, p. 291291. 

  54. 10.1016/S0082-0784(53)80110-4 Spalding, D. B., 1953, “The Combustion of Liquid Fuels,” in: Proc. 4th Symp. (Int.) on Combustion, Williams and Wilkins, Baltimore, MD, pp. 847-864. 

  55. Tchen, C. M., 1947, “Mean Value and Correlation Problems Connected With the Motion of Small Particles Suspended in a Turbulent Fluid,” Ph.D. Thesis, Delft, The Netherlands. 

  56. 10.1017/S0022112080002054 Temkin S. , and KimS. S., 1980, “Droplet Motion Induced by Weak Shock Waves,” J. Fluid Mech., Vol. 96, pp. 133-157. 

  57. 10.1017/S0022112082000470 Temkin S. , and MehtaH. K., 1982, “Droplet Drag in an Accelerating and Decelerating Flow,” J. Fluid Mech., Vol. 116, pp. 297-313. 

  58. Tong, A. Y., and Sirignano, W. A., 1983, “Analysis of Vaporizing Droplet With Slip, Internal Circulation and Unsteady Liquid Phase Heat Transfer,” JSME-ASME Thermal Engineering Joint Conference, Honolulu, HI, Mar. 

  59. Tong, A. Y., and Sirignano, W. A., 1984, “Multicomponent Droplet Vaporization in a High Temperature Gas,” ASME Winter Annual Meeting, Paper No. 84-WA/HT-17. 

  60. 10.1016/0301-9322(91)90004-M Tsuji Y. , KatoN., and TanakaT., 1990, “Experiments on the Unsteady Drag and Wake of a Sphere at High Reynolds Number,” J. Multiphase Flow, Vol. 17, No. 3, pp. 343-354. 

  61. 10.1016/0010-2180(73)90002-3 Williams A. , 1973, “Combustion of Droplets of Liquid Fuels: A Review,” Combust. Flame, Vol. 21, pp. 1-31. 

  62. 10.1016/S0082-0784(55)80020-3 Wise, H., Lorell, J., and Wood, B. J., 1955, “The Effects of Chemical and Physical Parameters on the Burning Rate of a Liquid Droplet,” Fifth Symposium (International) on Combustion, Reinhold, NY, pp. 132-141. 

  63. 10.1080/00102207608547524 Yuen M. C. , and ChenL. W., 1976, “On Drag of Evaporating Droplets,” Combust. Sci. Tech., Vol. 14, p. 147147. 

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