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Turbulent measurements in the stable atmospheric boundary layer during SHEBA: ten years after

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EN
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This paper surveys results of the comprehensive turbulent measurements in the stable boundary layer (SBL) made over the Arctic pack ice during the Surface Heat Budget of the Arctic Ocean experiment (SHEBA) in the Beaufort Gyre from October 1997 through September 1998. Turbulent fluxes and mean meteorological data were continuously measured and reported hourly at five levels on a 20-m main SHEBA tower. Eleven months of measurements during SHEBA cover a wide range of stability conditions, from the weakly unstable regime to very stable stratification, and allow studying the SBL in detail. A brief overview of the SBL regimes, the fluxprofile relationships, the turbulent Prandtl number, and other parameters obtained during SHEBA is given. The traditional Monin-Obukhov approach, z-less scaling, and gradient-based scaling are evaluated and discussed based on the data from SHEBA.
Czasopismo
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142--166
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Bibliografia
  • Andreas, E.L, and B.B. Hicks (2002), Comments on "Critical test of the validity of Monin-Obukhov similarity during convective conditions", J. Atmos. Sci. 59, 2605-2607.
  • Andreas, E.L, C.W. Fairall, P.S. Guest, and P.O.G. Persson (1999), An overview of the SHEBA atmospheric surface flux program, Proc. Fifth Conf. Polar Meteorology and Oceanography, Dallas, TX, Amer. Meteorol. Soc. 550-555.
  • Andreas, E.L, K.J. Claffey, and A.P. Makshtas (2000), Low-level atmospheric jets and inversions over the Western Weddell Sea, Bound.-Layer Meteor. 97, 459-486.
  • Andreas, E.L, P.S. Guest, P.O.G. Persson, C.W. Fairall, T.W. Horst, R.E. Moritz, and S.R. Semmer (2002), Near-surface water vapor over sea ice is always near ice saturation, J. Geophys. Res. 107, C10, DOI: 10.1029/2000JC000411.
  • Andreas, E.L, C.W. Fairall, A.A. Grachev, P.S. Guest, T.W. Horst, R.E. Jordan, and P.O.G. Persson (2003), Turbulent transfer coefficients and roughness lengths over sea ice: the SHEBA results, Seventh Conf. Polar Meteorology and Oceanography and Joint Symposium on High-Latitude Climate Variations, 12-16 May 2003, Hyannis, Massachusetts,Amer. Meteorol. Soc. (preprint CD-ROM).
  • Andreas, E.L, K.J. Claffey, R.E. Jordan, C.W. Fairall, P.S. Guest, P.O.G. Persson, and A.A. Grachev (2006), Evaluations of the von Kármán constant in the atmospheric surface layer, J. Fluid Mech. 559, 117-149.
  • Banta, R.M., L. Mahrt, D. Vickers, J. Sun, B.B. Balsley, Y.L. Pichugina, and E.J. Williams (2007), The very stable boundary layer on nights with weak low-level jets, J. Atmos. Sci. 64, 9, 3068-3090.
  • Baas, P., G.J. Steeneveld, B.J.H. van de Wiel, and A.A.M. Holtslag (2006), Exploring selfcorrelation in flux-gradient relationships for stably stratified conditions, J. Atmos. Sci. 63, 11, 3045-3054.
  • Beljaars, A.C.M., and A.A.M. Holtslag (1991), Flux parameterization over land surfaces for atmospheric models, J. Appl. Meteor. 30, 3, 327-341.
  • Beyrich, F. (1997), Mixing height estimation from sodar - a critical discussion, Atm. Environ. 21, 3941-3953.
  • Businger, J.A., J.C. Wyngaard, Y. Izumi, and E.F. Bradley (1971), Flux-profile relationships in the atmospheric surface layer, J. Atmos. Sci. 28, 181-189.
  • Cheng, Y., and W. Brutsaert (2005), Flux-profile relationships for wind speed and temperature in the stable atmospheric boundary layer, Bound.-Layer Meteor. 114, 3, 519-538.
  • Claffey, K.A., E.L Andreas, D.K. Perovich, C.W. Fairall, P.S. Guest, and P.O.G. Persson (1999), Surface temperature measurements at SHEBA, Proc. Fifth Conf. Polar Meteorology and Oceanography, Dallas, TX, Amer. Meteorol. Soc., 327-332.
  • Dabberdt, W.F. (1970), A selective climatology of Plateau Station, Antarctica, J. Appl. Meteor. 9, 2, 311-315.
  • Dyer, A.J. (1974), A review of flux-profile relationships, Bound.-Layer Meteor. 7, 363-372. Dyer, A.J., and E.F. Bradley (1982), An alternative analysis of flux-gradient relationships at the 1976 ITCE, Bound.-Layer Meteor. 22, 3-19.
  • Forrer, J., and M.W. Rotach (1997), On the turbulence structure in the stable boundary layer over the Greenland ice sheet, Bound.-Layer Meteor. 85, 111-136.
  • Garratt, J.R. (1992), The Atmospheric Boundary Layer, Cambridge University Press, Cambridge, 316 pp.
  • Grachev, A.A., C.W. Fairall, P.O.G. Persson, E.L Andreas, and P.S. Guest (2002), Stable boundary-layer regimes observed during the SHEBA experiment, Proc. 15th Symp. Boundary Layers and Turbulence, Wageningen, The Netherlands, Amer. Meteorol. Soc., 374-377.
  • Grachev, A.A., C.W. Fairall, P.O.G. Persson, E.L Andreas, P.S. Guest, and R.E. Jordan (2003), Turbulence decay in the stable arctic boundary layer, Seventh Conf. Polar Meteorology and Oceanography and Joint Symp. High-Latitude Climate Variations, Hyannis, Massachusetts, Amer. Meteorol. Soc. (preprint CD-ROM).
  • Grachev, A.A., C.W. Fairall, P.O.G. Persson, E.L Andreas, and P.S. Guest (2005), Stable boundary-layer scaling regimes: the SHEBA data, Bound.-Layer Meteor. 116, 2, 201-235.
  • Grachev, A.A., E.L Andreas, C.W. Fairall, P.S. Guest, and P.O.G. Persson (2007a), SHEBA flux-profile relationships in the stable atmospheric boundary layer, Bound.-Layer Meteor. 124, 3, 315-333.
  • Grachev, A.A., E.L Andreas, C.W. Fairall, P.S. Guest, and P.O.G. Persson (2007b), On the turbulent Prandtl number in the stable atmospheric boundary layer, Bound.-Layer Meteor. 125, 2, 329-341.
  • Hicks, B.B. (1978a), Some limitations of dimensional analysis and power laws, Bound.-Layer Meteor. 14, 4, 567-569.
  • Hicks, B.B. (1978b), Comments on "The characteristics of turbulent velocity components in the surface layer under convective conditions" by H.A. Panofsky et al., Bound.-Layer Meteor. 15, 2, 255-258.
  • Högström, U. (1988), Non-dimensional wind and temperature profiles in the atmospheric surface layer: a re-evaluation, Bound.-Layer Meteor. 42, 55-78.
  • Holtslag, A.A.M., and F.T.M. Nieuwstadt (1986), Scaling the atmospheric boundary layer, Bound.-Layer Meteor. 36, 201-209.
  • Howell, J.F., and J. Sun (1999), Surface-layer fluxes in stable conditions, Bound.-Layer Meteor. 90, 495-520.
  • Huwald, H., L.-B. Tremblay, and H. Blatter (2005), Reconciling different observational data sets from surface heat budget of the Arctic Ocean (SHEBA) for model validation purposes, J. Geophys. Res. 110, C5, C05009, DOI: 10.1029/2003JC002221.
  • Intrieri, J.M., C.F. Fairall, M.D. Shupe, O.G.P. Persson, E.L Andreas, P. Guest, and R.M. Moritz (2002), Annual cycle of cloud forcing over the Arctic, J. Geophys. Res. 107, C10, DOI: 10.1029/2000JC000439.
  • King, J.C. (1990), Some measurements of turbulence over an Antarctic shelf, Quart. J. Roy. Meteor. Soc. 116, 379-400.
  • Klipp, C.L., and L. Mahrt (2004), Flux-gradient relationship, self-correlation and intermittency in the stable boundary layer, Quart. J. Roy. Meteor. Soc. 130, 601, 2087-2103.
  • Klipp, C.L., and L. Mahrt (2006), Response to "Comments on "Flux-gradient relationship, selfcorrelation and intermittency in the stable boundary layer", Quart. J. Roy. Meteor. Soc. 132, 617B, 1375.
  • Lange, B., H.K. Johnson, S. Larsen, J. Hojstrup, H. Kofoed-Hansen, and M.J. Yelland (2004), On detection of a wave age dependency for the sea surface roughness, J. Phys. Oceanogr. 34, 6, 1441-1458.
  • Lettau, H.H., and W.F. Dabberdt (1970), Variangular wind spirals, Bound.-Layer Meteor. 1, 1, 64-79.
  • Lettau, H., A. Riordan, and M. Kuhn (1977), Air temperature and two-dimensional wind profiles in the lowest 32 meters as a function of bulk stability. In: J.A. Businger (ed.), Meteorological Studies at Plateau Station, Antarctica, Antarctic Research Series, Amer. Geophys. Union 25, 77-91.
  • Mahrt, L. (1998), Stratified atmospheric boundary layers and breakdown of models, Theor. Comp. Fluid. Dynam. 11, 263-279.
  • Mahrt, L. (1999), Stratified atmospheric boundary layers, Bound.-Layer Meteor. 90, 3, 375-396.
  • Mahrt, L., and D. Vickers (2002), Contrasting vertical structures of nocturnal boundary layers, Bound.-Layer Meteor. 105, 2, 351-363.
  • Mahrt, L., and D. Vickers (2006), Extremely weak mixing in stable conditions, Bound.-Layer Meteor. 119, 1, 19-39.
  • Mahrt, L., J. Sun, W. Blumen, T. Delany, and S. Oncley (1998), Nocturnal boundary-layer regimes, Bound.-Layer Meteor. 88, 255-278.
  • Mauritsen, T., and G. Svensson (2007), Observations of stably stratified shear-driven atmospheric turbulence at low and high Richardson numbers, J. Atmos. Sci. 64, 2, 645-655.
  • Monin, A.S., and A.M. Obukhov (1954), Basic laws of turbulent mixing in the surface layer of the atmosphere, Trudy Geofiz. Inst. Acad. Nauk SSSR 24, 163-187.
  • Monin, A.S., and A.M. Yaglom (1971), Statistical Fluid Mechanics: Mechanics of Turbulence, Vol. 1, MIT Press, Cambridge, MA, 769 pp.
  • Nieuwstadt, F.T.M. (1984), The turbulent structure of the stable, nocturnal boundary layer, J. Atmos. Sci. 41, 14, 2202-2216.
  • Obukhov, A.M. (1946), Turbulence in an atmosphere with a non-uniform temperature, Trudy Inst. Teoret. Geofiz. Akad. Nauk SSSR 1, 95-115.
  • Obukhov, A.M. (1971), Turbulence in an atmosphere with a non-uniform temperature, Bound.-Layer Meteor. 2, 2-29.
  • Pahlow, M., M.B. Parlange, and F. Porté-Agel (2001), On Monin-Obukhov similarity in the stable atmospheric boundary layer, Bound.-Layer Meteor. 99, 225-248.
  • Pardyjak, E.R., P. Monti, and H.J.S. Fernando (2002), Flux Richardson number measurements in stable atmospheric shear flows, J. Fluid Mech. 449, 1, 307-316.
  • Persson, P.O.G., T. Uttal, J. Intrieri, C.W. Fairall, E.L Andreas, and P.S. Guest (1999), Observations of large thermal transitions during the Arctic night from a suite of sensors at SHEBA, Proc. Fifth Conf. Polar Meteorology and Oceanography, Dallas, TX, Amer. Meteorol. Soc., 306-309.
  • Persson, P.O.G., C.W. Fairall, E.L Andreas, P.S. Guest, and D.K. Perovich (2002), Measurements near the Atmospheric Surface Flux Group tower at SHEBA: near-surface conditions and surface energy budget, J. Geophys. Res. 107, C10, 8045, DOI: 10.1029/2000JC000705.
  • Russell, C.A., C.W. Fairall, P.O.G. Persson, E.L Andreas, P.S. Guest, R. Lindsay, H.A. Eide, and T. Horst (1999), Intercomparison of downward longwave flux measurements during the first two months of SHEBA, Proc. Fifth Conf. Polar Meteorology and Oceanography, Dallas, TX, Amer. Meteorol. Soc., 314-318.
  • Smedman, A.-S. (1988), Observations of a multi-level turbulence structure in a very stable atmospheric boundary layer, Bound.-Layer Meteor. 44, 231-253.
  • Sorbjan, Z. (1989), Structure of the Atmospheric Boundary Layer, Prentice-Hall, NJ, 317 pp.
  • Sorbjan, Z. (2006a), Local structure of turbulence in stably-stratified boundary layers, J. Atmos. Sci. 63, 5, 1526-1537.
  • Sorbjan, Z. (2006b), Comments on "Flux-gradient relationship, self-correlation and intermittency in the stable boundary layer", Quart. J. Roy. Meteor. Soc. 132, 617B, 1371-1373.
  • Sorbjan, Z. (2008), Gradient-based similarity in the atmospheric boundary layer, Acta Geophys. (this issue).
  • Uttal, T., and 27 co-authors (2002), Surface heat budget of the Arctic Ocean, Bull. Amer. Meteor. Soc. 83, 2, 255-276.
  • Webb, E.K. (1970), Profile relationships: the log-linear range, and extension to strong stability, Quart. J. Roy. Meteor. Soc. 96, 67-90.
  • Wyngaard, J.C. (1973), On surface-layer turbulence. In: D.A. Haugen (ed.), Workshop on Micrometeorology, Boston, Mass., Amer. Meteorol. Soc. 101-149.
  • Wyngaard, J.C., and O.R. Coté (1972), Cospectral similarity in the atmospheric surface layer, Quart. J. Roy. Meteor. Soc. 98, 590-603.
  • Yaglom, A.M. (1977), Comments on Wind and Temperature Flux-Profile Relationships, Bound.-Layer Meteor. 11, 89-102.
  • Yagüe, C., G. Maqueda, and J.M. Rees (2001), Characteristics of turbulence in the lower atmosphere at Halley IV Station, Antarctica, Dyn. Atmos. Ocean. 34, 205-223.
  • Yagüe, C., S. Viana, G. Maqueda, and J.M. Redondo (2006), Influence of stability on the fluxprofile relationships for wind speed, ?m, and temperature, ?h, for the stable atmospheric boundary layer, Nonlin. Processes Geophys. 13, 2, 185-203.
  • Zilitinkevich, S.S., and D.V. Chalikov (1968), Determining the universal wind-velocity and temperature profiles in the atmospheric boundary layer, Izv. Acad. Sci. USSR, Atmos. Oceanic Phys. 4, 165-170 (English edition).
  • Zilitinkevich, S.S., T. Elperin, N. Kleeorin, I. Rogachevskii, I. Esau, and T. Mauritsen (2006), Turbulent energies and Richardson numbers in stably stratified sheared flows, NATO ARWorkshop "Atmospheric planetary boundary layers (PBLs): nature, theory and application to environmental modelling and security", 17-25 April, Dubrovnik, Croatia, available at http://pbl-nato-arw.dmi.dk/Presentations/Zilitinkevich.pdf.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BSL7-0023-0022
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