화학공학소재연구정보센터
HWAHAK KONGHAK, Vol.38, No.4, 523-528, August, 2000
난류유동층으로의 전이속도 및 흐름영역
Transition Velocity to Turbulent Fluidized Bed and Flow Regime
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초록
기체 유동층(직경 0.1m, 높이 5.3m)에서 FCC 입자를 유동화시킬 때의 압력변동을 측정하여 기포 유동층에서 난류 유동층으로의 전이속도(Uc를 측정하였다. 또한 기상유속에 따른 고체 체류량 기울기의 변화로부터 전이속도를 결정하였다. 층 팽창을 이용하여 (Uc)를 예측할 수 있는 모델을 제시하였으며 이 모델에 의하여 예측된 값은 실험값과 잘 일치하였다. Archimedes number와 Reynolds number를 이용하여 유동층 내 각각의 영역을 예측할 수 있는 흐름 영역도를 제시하였다.
Transition velocity (Uc)from bubbling to turbulent fluidized bed has been determined by pressure fluctuation in a gas fluidized bed(0.1 m i.d. and 5.3 m high)of FCC particles with variation of gas velocity. Also, the transition velocity(Ucto turbulent fluidized bed is determined from the gradient variation of solid holdup with gas velocity. A model based on the bed expansion is proposed to predict Uc
  1. Arnaldos J, Casal J, Powder Technol., 86(3), 285 (1996) 
  2. Yerushalmi J, Cankurt NT, Powder Technol., 24, 187 (1979) 
  3. Rhodes M, Powder Technol., 88(1), 3 (1996) 
  4. Bi HT, Grace JR, Int. J. Multiph. Flow, 21(6), 1229 (1995) 
  5. Cai P, Jin Y, Yu ZQ, Fan LS, Ind. Eng. Chem. Res., 31, 632 (1992) 
  6. LEE GS, KIM SD, Korean J. Chem. Eng., 6(4), 338 (1989)
  7. Rhodes MJ, Geldart D, "Fluidization V," edited by Ostergaard, K. and Sorensen, A., Engineering Foundation, New York, 281 (1986)
  8. Namkung W, Kim SD, HWAHAK KONGHAK, 36(5), 797 (1998)
  9. Namkung W, Kim SD, Korean J. Chem. Eng., 16(4), 456 (1999)
  10. Ryu HJ, Choi JH, Kim SD, Son JE, Shun DW, Yi CK, HWAHAK KONGHAK, 37(2), 178 (1999)
  11. Lee GS, Kim SD, J. Chem. Eng. Jpn., 21, 515 (1988)
  12. Lee GS, Kim SD, Powder Technol., 62, 207 (1990) 
  13. Bai D, Shibuya E, Nakagawa N, Kato K, Powder Technol., 87(2), 105 (1996) 
  14. Harrison D, Davidson JF, deKock JW, Trans. Inst. Chem. Eng., 39, 202 (1961)
  15. Sun G, Chen G, "Fluidization VI," edited by Grace, J.R., Shemilt, L.W. and Bergougnou, M.A., Engineering Foundation, New York, 33 (1989)
  16. Wen CY, Yu YH, AIChE J., 12, 610 (1966) 
  17. Abed R, "Fluidization IV," edited by Kunii, D. and Toei, R., Engineering Foundation, New York, 137 (1984)
  18. Avidan AA, Yerushalmi J, Powder Technol., 32, 223 (1982) 
  19. Avidan AA, Gould RM, Kam AY, "Circulating Fluidized Bed Technology," edited by Basu, P., Pergamon press, Canada, 287 (1986)
  20. Cai P, Chen SP, Jin Y, Yu ZQ, Wang ZW, AIChE Symp. Ser., 85, 37 (1989)
  21. Cai P, Jin Y, Yu ZQ, Wang ZW, AIChE J., 36, 955 (1990) 
  22. Carotenuto L, Crescitelli S, Donsi G, Quad. Ing. Chim. Ital., 10, 185 (1974)
  23. Chehbouni A, Chaouki J, Guy C, Klvana D, Can. J. Chem. Eng., 73(1), 41 (1995)
  24. Gonzalez A, Chaouki J, Chehbouni A, Guy C, Klavana D, "Preprints Eighth Engineering Foundation Conf. Fluidization," Engineering Foundation, 681 (1995)
  25. Han GY, Lee GS, Kim SD, Korean J. Chem. Eng., 2(2), 141 (1985)
  26. Horio M, Ishii H, Nishimuro M, Powder Technol., 70, 229 (1992) 
  27. Jin Y, Yu ZQ, Wang Z, Cai P, "Fluidization V," edited by Ostergaard, K. and Sorensen, A., Engineering Foundation, New York, 289 (1986)
  28. Kehoe PWK, Davidson JF, Chemica 70, Inst. Chem. Eng. Symp. Ser. Butterworths, Australia, 33, 97 (1970)
  29. Massimilla L, AIChE Symp. Ser., 69(128), 11 (1973)
  30. Perales JF, Coll T, Llop MF, Arnaldos J, Casal J, "Recent progres en genie des procedes: la fluidisation," edited by Laguerie, C. and Guigon, P., Lavoisier Industrie, Paris, 11, 47 (1991)
  31. Schnitzlein MG, Weinstein H, Chem. Eng. Sci., 43, 2605 (1988) 
  32. Son JE, Choi JH, Lee CK, "Circulating Fluidized Bed Technology II," edited by Basu, P. and Large, J.F., Pergamon, Oxford, 113 (1988)
  33. Thiel WJ, Potter OE, Ind. Eng. Chem. Fundam., 16, 242 (1977) 
  34. Davidson JF, Clift R, Harrison D, "Fluidization," Chapter 3, 2nd ed., Academic press, London, 122 (1985)
  35. Li Y, Kwauk M, "Fluidization," edited by Grace, J.R. and Masten, J.M., Plenum Press, New York, 537 (1980)
  36. Grace JR, Can. J. Chem. Eng., 64, 353 (1986)
  37. Takeuchi H, Hirama T, Chiba T, Biswas T, Leung LS, Powder Technol., 47, 195 (1986) 
  38. Namkung W, Kim SW, Kim SD, Chem. Eng. J., 72(3), 245 (1999) 
  39. Ryu HJ, Choi JH, Yi CK, Shun DW, Son JE, Kim SD, HWAHAK KONGHAK, 37(3), 472 (1999)
  40. Zenz FA, Weil NA, AIChE J., 4, 472 (1958) 
  41. Reh L, Chem. Eng. Prog., 62, 58 (1971)
  42. Catipovic NM, Javanovic GN, Fitzgerald TJ, AIChE J., 24, 543 (1978) 
  43. Matsen JM, "Fluidization IV," edited by Kunii, D. and Toei, R., Engineering Foundation, 225 (1984)
  44. Squires AM, Kwauk M, Avidan AA, Science, 230, 1329 (1985) 
  45. Horio M, J. Soc. Powder Technol., 23, 80 (1986)
  46. Rhodes MJ, Chem. Eng. Res. Des., 67, 30 (1989)
  47. Bai DL, Kato K, J. Chem. Eng. Jpn., 28(2), 179 (1995) 
  48. Bi HT, Fan LS, AIChE Annual Meeting, Los Angeles, 17-22 November (1991)
  49. Kunii D, Levenspiel O, "Fluidization Engineering," 1st ed. John Wiley and Son (1969)
  50. Bi HT, Fan LS, AIChE J., 38, 297 (1992) 
  51. Adanez J, deDiego LF, Gayan P, Powder Technol., 77, 61 (1993) 
  52. Reddy Karri SB, Knowlton TM, "Circulating Fluidized Bed Technol. III," edited by Basu, P., Horio, M. and Hasatani, M., Pergamon Press, New York, 67 (1991)
  53. Namkung W, Cho YJ, Kim SD, HWAHAK KONGHAK, 32(2), 241 (1994)
  54. Leung LS, "Fluidization," edited by Grace, J.R. and Matsen, J.M., Plenum Press, New York, 25 (1980)