64
Views
21
CrossRef citations to date
0
Altmetric
Original Articles

Diabatic initialization using recursive filters

&
Pages 583-597 | Received 22 Jun 1993, Accepted 22 Nov 1993, Published online: 15 Dec 2016

References

  • Ballish, B., Cao, X., Kalnay, E. and Kanamitsu, M. 1992. Incremental nonlinear normal-mode initialization. Mon. Wea. Rev. 120, 1723–1734.
  • Huang, X.-Y. and Lynch, P. 1993. Diabatic digital filtering initialization: Application to the HIRLAM model. Mon. Wea. Rev. 121, 589–603.
  • Huang, X.-Y. and Sundqvist, H. 1993. Initialization of cloud water content and cloud cover for numerical prediction models. Mon. Wea. Rev. 121, 2719–2726.
  • Kulhánek, O. 1976.Introduction to digital filtering in geophysics. Elsevier Sci. Publ. Co., Amsterdam, 168 pp.
  • Kållberg, P. ( ed.) 1989. The HIRLAM level 1 system. Documentation manual. Available from SMHI, S-601 76 Norrköping, Sweden.
  • Lynch, P. 1993a. Digital filters for numerical weather prediction. HIRLAM Technical Report no. 10. (Available from FMI, PB 503, SF-00101 Helsinki, Finland.)
  • Lynch, P. 1993b. Initialization using a recursive digital filter. In: Research activities in atmospheric and ocean modeling, CAS/JSC Working Group on Numerical Experimentation. Report No. 18, WMO Secretariat, Geneva, pp. 1.21–1.22.
  • Lynch, P. and Huang, X.-Y. 1992. Initialization of the HIRLAM model using a digital filter. Mon. Wea. Rev. 120, 1019–1034.
  • Oppenheim, A. V. and Schafer, R. W. 1989. Discrete — time signal processing. Prentice-Hall International, Inc., 879 pp.
  • Puri, K., Bourke, W. and Seaman, R. 1982. Incremental linear normal mode initialization in four-dimensional data assimilation. Mon. Wea. Rev. 110, 1773–1785.