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Original Articles

Fine-scale model simulation of gravity waves generated by Basen nunatak in Antarctica

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Pages 319-332 | Received 16 Jun 2009, Accepted 05 Mar 2010, Published online: 15 Dec 2016

References

  • Agustsson, H. and Olafsson, H. 2004. Mean gust factors in complex terrain. Meteorologische Zeitschrift 13, 149–155.
  • Alexander, M. J. and Teitelbaum, H. 2007. Observation and analysis of a large amplitude mountain wave event over the Antarctic peninsula. J. Geophys. Res. 112(D21103). 10.1029/2006JDO08368.
  • Bacmeister, J. T., Newman, P. A., Gary, B. L. and Chan, K. R. 1994. An algorithm for forecasting mountain wave-related turbulence in the stratosphere. Wea. Forecast. 9, 241–253.
  • Bacmeister, J. T., Schoeberl, M. R., Lait, L. R., Newman, P. A. and Gary, B. 1990. ER-2 mountain wave encounter over Antarctica: Evidence for blocking. Geophys. Res. Lett 17, 241–253.
  • Baines, P. G. 1995. Topographic Effects in Stratified Flow. Cambridge University Press, Cambridge, 482 pp.
  • Barry, R. G. 2008. Mountain Weather and Climate. Cambridge University Press, Cambridge, 506 pp.
  • Baumgaertner, A. J. G. and McDonald, A. J. 2007. A gravity wave climatology for Antarctica compiled from Challenging Minisatellite Pay-load/Global Positioning System (CHAMP/GPS) radio occultations. J. Geophys. Res. 112(D05103). 10.1029/2006JD007504.
  • Brasseur, O. 2001. Development and application of a physical approach to estimating wind gusts. Mon. Wea. Rev. 129 (1), 5–25.
  • Briggs, B. H. 1984. The analysis of spaced sensor records by correlation techniques, Handbook for MAP, Vol. 13, SCOSTEP Seer. Univ. of Ill., Urbana, pp. 166–186.
  • Dudhia, J. 1989. Numerical study of convection observed during the winter monsoon experiment using a mesoscale two-dimensional model. J. Atmos. Sci. 46, 3077–3107.
  • Egger, J., Wamser, C. and Kottmeier, C. 1993. Internal atmospheric gravity waves near the coast of Antarctica. Bound.-Layer Meteor 66, 1–17.
  • Fritts, D. C. and Alexander, M. J. 2003. Gravity wave dynamics and effects in the middle atmosphere. Rev. Geophys. 41 (1), 1003. 10.1029/2001RG000106.
  • Haynes, P. 2005. Stratospheric dynamics. Annu. Rev. Fluid Mech. 37, 263–293.
  • Holdsworth, D. A. and Reid, I. M. 2004. Comparisons of full correlation analysis (FCA) and imaging Doppler interferometry (IDI) winds using the Buckland Park MF radar. Ann. Geophys. 22, 3829–3842.
  • Holdsworth, D. A., Vincent, R. A. and Reid, I. M. 2001. Mesospheric turbulent velocity estimation using the Buckland Park ME radar. Ann. Geophys. 19, 1007–1017.
  • Holton, J. R. 1992. An Introduction to Dynamic Meteorology. 3rd Edition, Academic Press, London, 511 pp.
  • Hong, S.-Y., Noh, Y. and Dudhia, J. 2006. A new vertical diffusion package with an explicit treatment of entrainment processes. Mon. Wea. Rev. 134, 2318–2341.
  • Höpfner, M., Larsen, N., Spang, R., Luo, B. P., Ma, J., and co-authors. 2006. MIPAS detects Antarctic stratospheric belt of NAT PSCs caused by mountain waves. Atmos. Chem. Phys. 6, 1221–1230.
  • Jiang, Q. and Doyle, J. D. 2008. On the diurnal variation of mountain waves. J. Atmos. Sci. 65, 1360–1377. 10.1175/2007JA52460.1.
  • Jiang, Q., Smith, R. B. and Doyle, J. D. 2008. Impact of the atmospheric boundary layer on mountain waves. J. Atmos. Sci. 65, 592–608. 10.1175/2007JA52376.1.
  • Kärkäs, E. 2004. Meteorological conditions of the Basen nunatak in Western Dronning Maud Land, Antarctica, during the years 1989-2001. Geophysica 40(1-2), 39–52.
  • Kikuchi, T. 1988. A case study of a wave-like cloud and gravity wave in the lower troposphere in Mizuho Plateau Antarctica. Bound.-Layer Meteor 43, 403–409.
  • King, J. C., Mobbs, S. D., Darby, M. S. and Rees, J. M. 1987. Observations of an internal gravity wave in the lower troposhere at Halley, Antarctica. Bound.-Layer Meteor. 39, 1–13.
  • King, J. C. and Turner, J. 1997. Antarctic Meteorology and Climatology. Cambridge Univ. Press, New York, 409pp.
  • Kirkwood, S., Nilsson, H., Morris, R. J., Klekociuk, A. R., Holdsworth, D. A., and co-authors. 2008. A new height for the summer mesopause-Antarctica, December 2007. Geophys. Res. Lett. 35 ( L23810). 10.1029/2008GL035915.
  • Kirkwood, S., Wolf, I., Dalin, P., Nilsson, H., Mikhailova, D., and co-authors. 2007. Polar mesosphere summer echoes at Wasa, Antarctica (73° s)-first observations and comparison with 68° n. Geophys. Res. Lett. 34 (L15803). 10.1029/2007GL030516.
  • Launiainen, J., Uotila, J., Vihma, T., Taalas, P., Karlsson, K., and co-authors. 1995. Meteorological observations at the Aboa station. Antarctic Rep. Finland 5, 30.
  • Liu, H., Jezek, K., Li, B. and Zhao, Z. 2001. Radarsat antarctic mapping project digital elevation model version 2. Digital media.
  • Mercer, A., Richman, M., Bluestein, H. and Brown, J. 2008. Statistical modeling of downslope windstorms in Boulder, Colorado. Wea. Forecast. 23, 1176–1194. 10.1175/2008WAF2007067.1.
  • Mlawer, E. J., Taubman, S. J., Brown, P. D., Iacono, M. J. and Clough, S. A. 1997. Radiative transfer for inhomogeneous atmosphere: RRTM, a validated correlated-k model for the long-wave. J. Geophys. Res. 102 (014), 16663–16682.
  • Nappo, C. J. 2002. An Introduction to Atmospheric Gravity Waves. Academic Press, San Diego, 276 pp.
  • Noh, Y., Cheon, W., Hong, S.-Y. and Raasch, S. 2003. Improvement of the K-profile model for the planetary boundary layer based on large eddy simulation data. Bound.-Layer Meteor 107, 401–427.
  • Olafsson, H. and Bougeault, P. 1997. The effect of rotation and surface friction on orographic drag. J. Atmos. Sci. 54, 193–210.
  • Peng, S. and Thompson, W. T. 2003. Some aspects of the effect of surface friction on flows over mountains. Quart. J. Roy. Meteor Soc. 129, 2527–2557.
  • Plougonven, R., Hertzog, A. and Teitelbaum, H. 2008. Observation and simulations of a large-amplitude mountain wave breaking over the Antarctic Peninsula. J. Geophys. Res. 113(D16113). 10.1029/2007JD009739.
  • Preusse, P., Eckermann, S. and Ern, M. 2008. Transparency of the atmosphere to short horizontal wavelength gravity waves. J. Geophys. Res. 113(D24104). 10.1029/2007/JDO09682
  • Rees, J. M., Denholm-Price, J. C. W., King, J. C. and Anderson, P. S. 2000. A climatological study of internal gravity waves in the atmospheric boundary layer overlying the Brund Ice Shelf, Antarctica. J. Atmos. Sci. 57, 511–526.
  • Richard, E., Mascart, P. and Nickerson, E. C. 1989. The role of surface friction in downslope windstorms. J. AppL Meteor. 28, 241–251.
  • Scorer, R. S. 1949. Theory of waves in the lee of mountains. Quart. J. Roy. MeteoroL Soc. 74, 41–56.
  • Skamarock, W. C., Klemp, J. B., Dudhia, J., Gill, D. O., Barker, D. M., and co-authors. 2007. A description of the advanced research wrf version 2. NCAR7N-468±STR NCAR TECHNICAL NOTE. June 2005, Last revision: January 2007.
  • Smith, R. 1985. On severe downslope winds. J. Atmos. Sci. 42, 2597–2603.
  • Thompson, G., Rasmussen, R. M. and Manning, K. 2004. Explicit forecasts of winter precipitation using an improved bulk microphysics scheme. Part I: description and sensitivity analysis. Mon. Wea. Rev. 132, 519–542.
  • Tietäväinen, H. and Vihma, T. 2008. Atmospheric moisture budget over antarctica and southern ocean on the basis of era-40 reanalysis. Int. J. Climatol 28, 1977–1995. 10.1002/joc.1684.
  • Virkkula, A., Asmi, E., Teinild, K., Frey, A., Aurela, M., and co-authors. 2009. Review of aerosol research in Aboa and the surroundings. Geo-physica 45 (1-2), 163–181.
  • Wacker, U., Ries, H. and Schttler, U. 2009. Precipitation simulation for Dronning Maud Land using the COSMO Model. Antarctic Sci. 21, 643–662.
  • Watanabe, S., Sato, K. and Takahashi, M. 2006. A general circulation model study of the orographic gravity waves over Antarctica excited by katabatic winds. J. Geophys. Res. 111(D18104). 10.1029/2005JD006851.
  • Whiteway, J. A. and Duck, T. J. 1996. Evidence for critical level filtering of atmospheric gravity waves. Geophys. Res. Lett. 23 (2), 145–148.
  • Yoshilci, M. and Sato, K. 2000. A statistical study of gravity waves in the polar regions based on operational radiosonde data. J. Geophys. Res. 105(D14), 17995–18011.
  • Zilitinkevich, S. S. and Esau, I. 2005. Resistance and heat transfer laws for stable and neutral planetary boundary layers: Old theory, advanced and re-evaluated. Quart. J. Roy. MeteoroL Soc. 131, 1863–1892. 10.1256/qj.04.143.