Numerical Investigation of Flowing Process for Regenerative Beat Exchanger of a Gas Turbine Engine

가스터빈 리제너레이토 내부유동에 관한 수치해석적 연구

  • Published : 2004.12.01

Abstract

A distributed nonlinear mathematical model for investigation of regenerative heat exchangers of both a continuous and periodic operation is described in the paper. The non-iterative numerical integration scheme for conjugate unsteady heat exchange problem of one dimensional flows and two dimensional matrix wall conductivity is developed. Case study of a regenerative heat exchanger with a rotary ceramic matrix is presented. The range of optimum rotation rates of the regenerator providing the greatest calorific efficiency is determined.

본 논문에는 열교환기로서의 재색기내부에서 발생하는 주기적 및 연속적 유동을 조사하기 위한 분산, 비선형 수학적 모델이 제시되어 있다. 일차원 유동 및 2차원 격벽 내 비정상 열교환 문제를 해결하기 위한 비 반복적 수치적분 방법이 개발되었다. 제안된 방법에 대한 검증을 위하여 회전 세라믹 매트릭스 재생기에 대한 예가 제시되었으며 재생기가 최고의 열역학적 효율을 각기 위한 최적의 회전수를 계산하였다.

Keywords

References

  1. Hausen. H., Heat Transfer in Counterflow, Parallel Flow and Cross Flow, 2nd ed., McGraw Hill. New York, 1983
  2. Smidt. F. W. and Willmott. A. J., Thermal Energy Storage and Regeneration, Chapters. 5-9. Hemisphere/McGraw - Hill. Washington. DC, 1981
  3. Shach. R. K. and Seculic. D. P., Heat Exchangers in Handbook of Heat Transfer. 3rd ed., Roshenow. W. M., Hartnet. J. p., Cho Y. I.(Eds.), McGraw - Hill. 1998, Chapter 17. pp.1-169
  4. Johnson. R. A., The AGT 100 Automotive Gas Turbine. Allison Gas Turbine Operations General Motors Corp. Indianapolis Ind. Mechanical Engineering, May. 1984. pp.36-43
  5. Migay. V. K., Regenerative Rotating Airheater - L: Energija. 1971
  6. Kribanin, B. A., Nebedomskaya, I. N. and Kobahidge, B. B., Metallurgical Technology T.2., Design and Construction of Boiler. Metallurgy. 1986
  7. Pereletov, I. I., Brovkin. L. A., Rozengart, J. I., High-temperature Thermal and Technological Processes and Units: Editor. Kljuchnikov - M.: Energoatomizdat. 1989
  8. Nusselt W., Die Theorie des Winderhitzers. VDI-Zeitung. Vol. 71. 1927. pp.85-91
  9. Hill. A., Willmott. A. J., Modelling the Temperature Dependence of Thermophysical Properties in a Closed Method for Regenerative Heat Exchanger Simulations. Proc. Instn. Mech. Eng., Vol. 202, 1991. pp.195-206
  10. Scaricabarozzi. R. 'Simple Particular Solutions and Ppeed Calculation of Regenerators,' Heat Recovery Syst., CHP, Vol. 9, 1989. pp. 421-432 https://doi.org/10.1016/0890-4332(89)90145-2
  11. Atthey, D. R.,'An Approximate Thermal Analysis for a Regenerative Heat Exchanger.' Int. J. Heat Mass Transfer, vol. 31. 1989. pp.1431-1441
  12. Monte. F. de., 'Cyclic Steady Thermal Response of Rapidly Switched Fixed-bed Heat Regenerators in Counterflow.' Int. J. Heat and Mass Transfer. 1999. Vol. 42. pp.2591-2604 https://doi.org/10.1016/S0017-9310(98)00344-5
  13. Klein. H. and Eigenberger. G.,'Approximate Solutions for Metallic Regenerative Heat Exchangers.' Int. J. Heat Mass Transfer. Vol. 44. 2001. pp.3553-3563 https://doi.org/10.1016/S0017-9310(01)00010-2
  14. Bachnke, G. D. and Howard, C. P., 'The Effect of Longitudinal Heat Conduction on Periodic Flow Heat Exchanger Performance,' ASME J. Eng. Power. Vol. 86. 1964. pp.105-120 https://doi.org/10.1115/1.3677551
  15. Shah, R K., 'A Correlation for Longitudinal Heat Conduction Effects in Periodic Flow Heat Exchanger,' ASME J. Eng. Power, Vol. 97, 1975, pp.453-454 https://doi.org/10.1115/1.3446030
  16. Willmott, A. J., 'The Regenerative Heat Exchanger Computer Representation,' Int. J. Heat Mass Transfer, Vol. 12, 1969, pp.997-1013 https://doi.org/10.1016/0017-9310(69)90111-2
  17. Heggs, P. J. et al., 'Thermal Regenerator Design Charts Including Intra-conduction Effects,' Trans. Inst. Chem. Eng.. Vol. 58. 1980. pp.265-270
  18. Chen, C. M. and Worek, W. M., 'The effect of Wall Conduction on the Performance of Regenerative Heat Exchangers,' Energy, Vol. 17. 1992. pp.1199-1213 https://doi.org/10.1016/0360-5442(92)90009-O
  19. Willmott, A. J. and Hinchcliffe, C., 'The Effect of Gas Heat Storage Regenerator Calculations,' Int. J. Heat Mass Transfer. Vol. 19, 1976, pp.821-826 https://doi.org/10.1016/0017-9310(76)90194-0
  20. Ren, Z. and Wang, S., 'A Theoretical and Experimental Investigation of Heat Transfer Performance of Rotary Regenerative Heat Exchanger,' International Symposium on Heat Transfer, Vol. 15-18, Oct. 1985, Tsinghua University, pp.89-97
  21. Shah, R. K. and Skiepko, T. 'Influence of Leakage Distribution on the thermal Performance of a Rotary Regenerator,' Experimental Heat Transfer, Fluid Mechanics and Thermodynamics, 1997, Giot M., Mayinger E. X., and Gelata G. P. (Eds.) Edizioni ETS, Pisa, Italy, 1997
  22. Ebadian, M. A. and Dong, Z. F. 'Forced Convection,' Internal Flow in Ducts in Handbook of Heat Transfer, 3rd ed., Roshenow, W. M., Hartnet. J. P., Cho, Y.I. (Eds,), Mc. Craw- Hill, 1998. Chapter 17, pp.1-169
  23. Marchuk, G. I. Methods of Calculus Mathematics - M.: Nauka, 1989
  24. Paskonov, V. M., Polejaev, V. I., Tchudov, L. A. L.A. The Numerical Modeling of Processes of Heat and Mass Transfer - M.: Science, 1984
  25. Kovalevski, V. P. 'Calculation of Nonstationary Temperature Fields of Complex Rotating Bodies With Imperfect Thermal Contact Between Compound Materials,' The Engineering-Physics Journal, XL, No.5, 1981, pp.925-926