TURBULENT ATMOSPHERIC DIFFUSION
23
Reynolds, 0. (1883). An experimental investigation of the circumstances which determine
whether the motion of water shall be direct or sinuous and of the law of resistance in
parallel channels. Phil. Trarts. Roy. Soc. Loridon, Ser. A 174. 935-982.
Reynolds, 0. (1895). On the dynamical theory of incompressible viscous fluids and the determination of the criterion. Phil. Traris. Roy. Soc. Londori, Ser. A 186. 123-164.
Richardson, L. F. (1920a). The supply ofenergy from and to atmospheric eddies. Proc. Ror. Soc.
Ser. A 97. 354.
Richardson, L. F. (l920b). Some measurements of atmospheric turbulence. Phil. Trtrris. Ror.
Soc. Loridori. Ser. A 221, 28.
Richardson, L. F. (1925). Turbulence and vertical temperature near trees. Phil. Mug. 49. 81.
Richardson, L. F. (1926). Atmospheric diffusion on a distance neighbour graph. Proc. Ro!,. Soc..
Roberts. P. F. T. (1923). The theoretical scattering of smoke in a turbulent atmosphere. Proc.
Rossby, C. G.. and Montgomery, R. B. (1935). The layer of frictional influence in wind and
Sauvegrain. J. (1934). Sur une mkthode d’etude de la structure du vent au voisinage du sol. C . R.
Schmidt, W. (1925). “Der Massenaustausch in freier Luft und verwandte Erscheinungen.”
Schmidt. W. (1929). Die Struktur des Windes. Weir. Sirzrrngsber. M. N. KI.. .4h. 2 138, 85.
Scrase, F. J. (1930). Some characteristics of eddy motion in the atmosphere. Meteorol. Qfl
Sutton, 0. G . (1932). Eddy diffusion in the atmosphere. Proc. Roy. Soc.. Srr. .A 135. 143-165.
Taylor, G. 1. (1915a). Eddy motion in thqatmosphere. Phil. Traris. Roy. Soc. Loritlori, Ser. A 125,
Taylor, G. 1. (1915b). Skin friction of wind at the earths surface. Proc. Roy. Soc.. Ser. A 92, 196.
Taylor, G. 1. (1917). Phenomena connected with the turbulence in the lower atmosphere. Proc.
Taylor. G . 1. (1921). Diffusion by continuous mouvements. Proc. Loritloit Math. Soc. 20.
Taylor, G. I. (1927). Turbulence. Quart. J . ROJ: Mrreorol. Soc. 53. 201-213.
Taylor. G. 1. (1931). Effect of variation in density on the stability of superposed streams of fluid.
Taylor, G. I. (1932). The transport of vorticity and heat through fluids. in turbulent motion.
Taylor. G. 1. (1935). Statistical theory of tprbulence. Proc. Roy. Soc.. Srr. A ISI. 421-478.
Taylor. G. 1. (1938). The spectrum of turbulence. Proc. Roy. Soc.. Ser. A 164. 476-490.
von KBrmBn. 7. (1930). Mechanische ahnlichkeit und Turbulenz. .4ppl. A4ec.h.. Proc. / ! i f .
von KBrmBn, T.. and Howarth, L. (1938). On the statistical theory of isotropic turbulence. Proc.
Wenk. F. (1930). Aenderung der StabilitLt atmospharischer Schichtungen bei adiabatischer
Wiener. N. (1923). Differential space. J . Math. PAys. (Ctiriihritlgr, Mass.) 2, 131- 174.
Wiener, N. (1930). Generalized harmonic analysis. Actu Moth. 55.. 117-258.
Wiener, N. (1933). “The Fourier Integral and Some of Its Applications.” Cambridge Univ.
Wiener. N.. Paley, R. E. A. C.. and Zygmund. A. Z. (1933). Notes on random functions. .bftrtli. 2.
Ser. A 110. 709-737.
ROY. SOC.. SW. A 104. 640-654.
ocean currents. Mass. Inst. Technol. Mercorol. No. 3(3).
.Ioirrrires Mec. Fliiitles. Lille.
Hamburg.
Geophys. Merii., Lorirlori No. 52.
1-26.
Roy. Soc.. Ser. A 94, 137.
196-21 I.
Proc. Roy. Soc., Ser. A 132. 499-523.
Proc. Roy. Soc., Ser. A 135, 685-705.
Cortgr., 3 r d Stockholrii pp. 85-93.
Roy. Soc., Ser. A 164. 192-215.
Hebung. Beitr. Pliys. Freieri Atrnos. 16, 298-304.
Press, London and New York.
37. 647 -668.
23
Reynolds, 0. (1883). An experimental investigation of the circumstances which determine
whether the motion of water shall be direct or sinuous and of the law of resistance in
parallel channels. Phil. Trarts. Roy. Soc. Loridon, Ser. A 174. 935-982.
Reynolds, 0. (1895). On the dynamical theory of incompressible viscous fluids and the determination of the criterion. Phil. Traris. Roy. Soc. Londori, Ser. A 186. 123-164.
Richardson, L. F. (1920a). The supply ofenergy from and to atmospheric eddies. Proc. Ror. Soc.
Ser. A 97. 354.
Richardson, L. F. (l920b). Some measurements of atmospheric turbulence. Phil. Trtrris. Ror.
Soc. Loridori. Ser. A 221, 28.
Richardson, L. F. (1925). Turbulence and vertical temperature near trees. Phil. Mug. 49. 81.
Richardson, L. F. (1926). Atmospheric diffusion on a distance neighbour graph. Proc. Ro!,. Soc..
Roberts. P. F. T. (1923). The theoretical scattering of smoke in a turbulent atmosphere. Proc.
Rossby, C. G.. and Montgomery, R. B. (1935). The layer of frictional influence in wind and
Sauvegrain. J. (1934). Sur une mkthode d’etude de la structure du vent au voisinage du sol. C . R.
Schmidt, W. (1925). “Der Massenaustausch in freier Luft und verwandte Erscheinungen.”
Schmidt. W. (1929). Die Struktur des Windes. Weir. Sirzrrngsber. M. N. KI.. .4h. 2 138, 85.
Scrase, F. J. (1930). Some characteristics of eddy motion in the atmosphere. Meteorol. Qfl
Sutton, 0. G . (1932). Eddy diffusion in the atmosphere. Proc. Roy. Soc.. Srr. .A 135. 143-165.
Taylor, G. 1. (1915a). Eddy motion in thqatmosphere. Phil. Traris. Roy. Soc. Loritlori, Ser. A 125,
Taylor, G. 1. (1915b). Skin friction of wind at the earths surface. Proc. Roy. Soc.. Ser. A 92, 196.
Taylor, G. 1. (1917). Phenomena connected with the turbulence in the lower atmosphere. Proc.
Taylor. G . 1. (1921). Diffusion by continuous mouvements. Proc. Loritloit Math. Soc. 20.
Taylor, G. I. (1927). Turbulence. Quart. J . ROJ: Mrreorol. Soc. 53. 201-213.
Taylor. G. 1. (1931). Effect of variation in density on the stability of superposed streams of fluid.
Taylor, G. I. (1932). The transport of vorticity and heat through fluids. in turbulent motion.
Taylor. G. 1. (1935). Statistical theory of tprbulence. Proc. Roy. Soc.. Srr. A ISI. 421-478.
Taylor. G. 1. (1938). The spectrum of turbulence. Proc. Roy. Soc.. Ser. A 164. 476-490.
von KBrmBn. 7. (1930). Mechanische ahnlichkeit und Turbulenz. .4ppl. A4ec.h.. Proc. / ! i f .
von KBrmBn, T.. and Howarth, L. (1938). On the statistical theory of isotropic turbulence. Proc.
Wenk. F. (1930). Aenderung der StabilitLt atmospharischer Schichtungen bei adiabatischer
Wiener. N. (1923). Differential space. J . Math. PAys. (Ctiriihritlgr, Mass.) 2, 131- 174.
Wiener, N. (1930). Generalized harmonic analysis. Actu Moth. 55.. 117-258.
Wiener, N. (1933). “The Fourier Integral and Some of Its Applications.” Cambridge Univ.
Wiener. N.. Paley, R. E. A. C.. and Zygmund. A. Z. (1933). Notes on random functions. .bftrtli. 2.
Ser. A 110. 709-737.
ROY. SOC.. SW. A 104. 640-654.
ocean currents. Mass. Inst. Technol. Mercorol. No. 3(3).
.Ioirrrires Mec. Fliiitles. Lille.
Hamburg.
Geophys. Merii., Lorirlori No. 52.
1-26.
Roy. Soc.. Ser. A 94, 137.
196-21 I.
Proc. Roy. Soc., Ser. A 132. 499-523.
Proc. Roy. Soc., Ser. A 135, 685-705.
Cortgr., 3 r d Stockholrii pp. 85-93.
Roy. Soc., Ser. A 164. 192-215.
Hebung. Beitr. Pliys. Freieri Atrnos. 16, 298-304.
Press, London and New York.
37. 647 -668.
