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2017 | OriginalPaper | Buchkapitel

1. Introduction

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Abstract

In the Introduction the planetary boundary layer (PBL) is described in general, as the part of the atmosphere where turbulence acts driving exchange processes and dispersion. Attention is paid to field and laboratory measurements, as well as to the use of numerical experiments as a further tool for knowledge.

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Literatur
Zurück zum Zitat H. Aref, The numerical experiment in fluid mechanics. J. Fluid Mech. 173, 15–41 (1986)ADSCrossRef H. Aref, The numerical experiment in fluid mechanics. J. Fluid Mech. 173, 15–41 (1986)ADSCrossRef
Zurück zum Zitat E. Barberis, Analisi statistiche nello strato limite turbolento, thesis. Univ. Torino, Dip. Fisica (2007) E. Barberis, Analisi statistiche nello strato limite turbolento, thesis. Univ. Torino, Dip. Fisica (2007)
Zurück zum Zitat S.F. Clifford, J.C. Kaimal, R.J. Lataitis, R.G. Strauch, Ground-based remote profiling in the atmospheric studies: an overview. Proc. IEEE 82, 313–355 (1994)CrossRef S.F. Clifford, J.C. Kaimal, R.J. Lataitis, R.G. Strauch, Ground-based remote profiling in the atmospheric studies: an overview. Proc. IEEE 82, 313–355 (1994)CrossRef
Zurück zum Zitat J. Cuxart, C. Yagüe, G. Morales, E. Terradellas, J. Orbe, J. Calvo, A. Fernandez, M.R. Soler, C. Infante, P. Buenestado, A. Espinalt, H.E. Joergensen, J.M. Rees, J. Vila, J.M. Redondo, I.R. Cantalapiedra, L. Conangla, Stable atmospheric boundary-layer experiment in Spain (SABLES 98): a report. Bound.-Layer Meteorol. 96, 337–370 (2000) J. Cuxart, C. Yagüe, G. Morales, E. Terradellas, J. Orbe, J. Calvo, A. Fernandez, M.R. Soler, C. Infante, P. Buenestado, A. Espinalt, H.E. Joergensen, J.M. Rees, J. Vila, J.M. Redondo, I.R. Cantalapiedra, L. Conangla, Stable atmospheric boundary-layer experiment in Spain (SABLES 98): a report. Bound.-Layer Meteorol. 96, 337–370 (2000)
Zurück zum Zitat F. Durst, J. Jovanovic, L.J. Kanevce, Probability density distribution in turbulent wall boundary-layer flows, in Turbulent Shear Flows, vol. 5, ed. by F. Durst, B.E. Launder, J.L. Lumley, F.W. Schmidt, J.H. Whitelaw (Springer, Berlin, 1987) F. Durst, J. Jovanovic, L.J. Kanevce, Probability density distribution in turbulent wall boundary-layer flows, in Turbulent Shear Flows, vol. 5, ed. by F. Durst, B.E. Launder, J.L. Lumley, F.W. Schmidt, J.H. Whitelaw (Springer, Berlin, 1987)
Zurück zum Zitat U. Frisch, Turbulence (Cambridge University Press, Cambridge, 1995), 296 p.MATH U. Frisch, Turbulence (Cambridge University Press, Cambridge, 1995), 296 p.MATH
Zurück zum Zitat A.A. Grachev, E.L. Andreas, C.W. Fairall, P.S. Guest, P.O.G. Persson, The critical Richardson number and limits of applicability of local similarity theory in the stable boundary layer. Bound.-Layer Meteorol. 147, 51–82 (2013)ADSCrossRef A.A. Grachev, E.L. Andreas, C.W. Fairall, P.S. Guest, P.O.G. Persson, The critical Richardson number and limits of applicability of local similarity theory in the stable boundary layer. Bound.-Layer Meteorol. 147, 51–82 (2013)ADSCrossRef
Zurück zum Zitat V. Gryanik, J. Hartmann, A turbulence closure for the convective boundary layer based on a two-scale mass-flux approach. J. Atmos. Sci. 59, 2729–2744 (2002) V. Gryanik, J. Hartmann, A turbulence closure for the convective boundary layer based on a two-scale mass-flux approach. J. Atmos. Sci. 59, 2729–2744 (2002)
Zurück zum Zitat J. Hartmann et al., Arctic radiation and turbulence interaction study, Polar Res. Report. 305. Alfred Wegener Institute for Polar and Marine Sciences (1999) J. Hartmann et al., Arctic radiation and turbulence interaction study, Polar Res. Report. 305. Alfred Wegener Institute for Polar and Marine Sciences (1999)
Zurück zum Zitat D.A. Haugen, J.C. Kaimal, E.F. Bradley, An experimental study of the Reynolds stress and heat flux in the atmospheric surface layer. Q. J. R. Meteorol. Soc. 97, 168–180 (1971)ADSCrossRef D.A. Haugen, J.C. Kaimal, E.F. Bradley, An experimental study of the Reynolds stress and heat flux in the atmospheric surface layer. Q. J. R. Meteorol. Soc. 97, 168–180 (1971)ADSCrossRef
Zurück zum Zitat G.D. Hess, B.B. Hicks, T. Yamada, The impact of the Wangara experiment. Bound.-Layer Meteorol. 20, 135–174 (1981) G.D. Hess, B.B. Hicks, T. Yamada, The impact of the Wangara experiment. Bound.-Layer Meteorol. 20, 135–174 (1981)
Zurück zum Zitat C.W. Higgins, C. Meneveau, M. Parlange, The effect of filter dimension on the subgrid-scale stress, heat flux, and tensor alignements in the atmospheric surface layer. J. Atmos. Ocean. Technol. 24, 360–375 (2007) C.W. Higgins, C. Meneveau, M. Parlange, The effect of filter dimension on the subgrid-scale stress, heat flux, and tensor alignements in the atmospheric surface layer. J. Atmos. Ocean. Technol. 24, 360–375 (2007)
Zurück zum Zitat V.A. Kovalev, W.E. Eichinger, Elastic Lidar: Theory, Practice, and Analysis Methods (Wiley, New York, 2004)CrossRef V.A. Kovalev, W.E. Eichinger, Elastic Lidar: Theory, Practice, and Analysis Methods (Wiley, New York, 2004)CrossRef
Zurück zum Zitat D.H. Lenschow (ed.), Probing the Atmospheric Boundary Layer (American Meteorological Society, Boston, 1986) D.H. Lenschow (ed.), Probing the Atmospheric Boundary Layer (American Meteorological Society, Boston, 1986)
Zurück zum Zitat D.K. Lilly, On the numerical simulation of buoyant convection. Tellus 14, 148–172 (1962)ADSCrossRef D.K. Lilly, On the numerical simulation of buoyant convection. Tellus 14, 148–172 (1962)ADSCrossRef
Zurück zum Zitat S.P. Malinowski, K.E. Haman, M.K. Kopec, W. Kumala, H. Gerber, Small-scale turbulent mixing at stratocumulus top observed by means of high resolution airborne temperature and LWC measurements. J. Phys. Conf. Ser. 318, 072013.1–072013.7 (2011) S.P. Malinowski, K.E. Haman, M.K. Kopec, W. Kumala, H. Gerber, Small-scale turbulent mixing at stratocumulus top observed by means of high resolution airborne temperature and LWC measurements. J. Phys. Conf. Ser. 318, 072013.1–072013.7 (2011)
Zurück zum Zitat H.K. Moffatt, G.K. Batchelor and the homogenization of turbulence. Ann. Rev. Fluid Mech. 34, 19–35 (2002) H.K. Moffatt, G.K. Batchelor and the homogenization of turbulence. Ann. Rev. Fluid Mech. 34, 19–35 (2002)
Zurück zum Zitat A.S. Monin, A.M. Yaglom, Statistical Fluid Mechanics vol. I (MIT Press, Cambridge, 1971), 769 pp. A.S. Monin, A.M. Yaglom, Statistical Fluid Mechanics vol. I (MIT Press, Cambridge, 1971), 769 pp.
Zurück zum Zitat A.S. Monin, A.M. Yaglom, Statistical Fluid Mechanics, vol. II (MIT Press, Cambridge, 1975), 874 pp. A.S. Monin, A.M. Yaglom, Statistical Fluid Mechanics, vol. II (MIT Press, Cambridge, 1975), 874 pp.
Zurück zum Zitat G.S. Poulos, W. Blumen, D.C. Fritts, J.K. Lundquist, J. Sun, S.P. Burns, C. Nappo, R.M. Banta, R.K. Newsom, J. Cuxart, E. Terradellas, B.B. Balsley, M. Jensen, CASES-99: a comprehensive investigation of the stable nocturnal boundary layer. Bull. Am. Meteorol. Soc. 83, 555–581 (2002) G.S. Poulos, W. Blumen, D.C. Fritts, J.K. Lundquist, J. Sun, S.P. Burns, C. Nappo, R.M. Banta, R.K. Newsom, J. Cuxart, E. Terradellas, B.B. Balsley, M. Jensen, CASES-99: a comprehensive investigation of the stable nocturnal boundary layer. Bull. Am. Meteorol. Soc. 83, 555–581 (2002)
Zurück zum Zitat W.H. Snyder, R.E. Lawson Jr., M.S. Shipman, J. Lu, Fluid modelling of atmospheric dispersion in the convective boundary layer. Bound.-Layer Meteorol. 102, 335–366 (2002) W.H. Snyder, R.E. Lawson Jr., M.S. Shipman, J. Lu, Fluid modelling of atmospheric dispersion in the convective boundary layer. Bound.-Layer Meteorol. 102, 335–366 (2002)
Zurück zum Zitat H. Tennekes, J.L. Lumley, A First Course in Turbulence (MIT Press, Cambridge, 1972)MATH H. Tennekes, J.L. Lumley, A First Course in Turbulence (MIT Press, Cambridge, 1972)MATH
Zurück zum Zitat F. Toschi, E. Bodenschatz, Lagrangian properties of particles in turbulence. Ann. Rev. Fluid Mech. 41, 375–404 (2009) F. Toschi, E. Bodenschatz, Lagrangian properties of particles in turbulence. Ann. Rev. Fluid Mech. 41, 375–404 (2009)
Zurück zum Zitat T. Uttal et al., Surface heat budget of the arctic ocean. Bull. Am. Meteorol. Soc. 83, 255–275 (2002) T. Uttal et al., Surface heat budget of the arctic ocean. Bull. Am. Meteorol. Soc. 83, 255–275 (2002)
Zurück zum Zitat R.J.E. Walpot, C.W.M. van der Geld, J.G.M. Kuerten, Determination of the coefficients of Langevin models for inhomogeneous turbulent flows by three-dimensional particle tracking velocimetry and direct numerical simulation. Phys. Fluids 19, 0451021–04510213 (2007) R.J.E. Walpot, C.W.M. van der Geld, J.G.M. Kuerten, Determination of the coefficients of Langevin models for inhomogeneous turbulent flows by three-dimensional particle tracking velocimetry and direct numerical simulation. Phys. Fluids 19, 0451021–04510213 (2007)
Zurück zum Zitat J.C. Wyngaard, Changing the face of small-scale meteorology, in Atmospheric Turbulence and Mesoscale Meteorology, ed. by E. Fedorovich, R. Rotunno, B. Stevens (Cambridge University Press, Cambridge, 2004), pp. 17–34 J.C. Wyngaard, Changing the face of small-scale meteorology, in Atmospheric Turbulence and Mesoscale Meteorology, ed. by E. Fedorovich, R. Rotunno, B. Stevens (Cambridge University Press, Cambridge, 2004), pp. 17–34
Zurück zum Zitat J.C. Wyngaard, Turbulence in the Atmosphere (Cambridge University Press, Cambridge, 2010)CrossRefMATH J.C. Wyngaard, Turbulence in the Atmosphere (Cambridge University Press, Cambridge, 2010)CrossRefMATH
Zurück zum Zitat C. Yagüe, S. Viana, G. Maqueda, J.M. Redondo, Influence of stability on the flux-profile relationships for wind speed, ϕ m , and temperature, ϕ h , for the stable atmospheric boundary layer. Nonlinear Process. Geophys. 13, 185–203 (2006) C. Yagüe, S. Viana, G. Maqueda, J.M. Redondo, Influence of stability on the flux-profile relationships for wind speed, ϕ m , and temperature, ϕ h , for the stable atmospheric boundary layer. Nonlinear Process. Geophys. 13, 185–203 (2006)
Metadaten
Titel
Introduction
verfasst von
Francesco Tampieri
Copyright-Jahr
2017
DOI
https://doi.org/10.1007/978-3-319-43604-3_1