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Characteristics of the sea breeze in Attica, Greece

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Abstract

The characteristics of the sea breeze in the Attica region of Greece, in which Athens is located, have been studied for occasions of weak synoptic-scale pressure gradient. The analysis is based on synoptic observations from six meteorological stations, three on the coast and three inland. The three inland stations and one of the coastal stations lie almost in a straight line at different distances from the coast. For each meteorological station, the basic characteristics of the sea breeze were determined, i.e.,

  1. (1)

    The mean number of sea-breeze days for each calendar month.

  2. (2)

    The monthly mean wind speed for each synoptic hour.

  3. (3)

    The times of onset and cessation of the sea breeze.

  4. (4)

    The monthly vector mean wind, and its constancyFootnote 1 for each synoptic hour.

  5. (5)

    For days on which there was a sea breeze at Helliniko (the coastal reference station), the percentage number of days on which there was also a sea breeze at the given station.

An attempt was also made to determine further characteristics, such as the inland penetration of the sea breeze, its depth, the spatial and temporal variation of wind speed and direction, and the existence of the return flow.

Finally, the properties of the land breeze are briefly outlined.

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Notes

  1. ‘Constancy’ is defined as 100{itV{inr}/V{ins}}, where {itV{inr}} is the magnitude of the vector mean wind, and {itV{ins}} is the scalar mean wind speed. See Brooks and Carruthers (1953). (In this paper, the factor 100 is not used.)

References

  • Adreakos, K., Prezerakos, N. G., and Xirakis, P.: 1984, Analysis of the Air Field in Athens, final report of B6612/9 contract number project prepared for Hellenic Ministry of Physical Planning-housing and the environment, Athens.

  • Brittain, O. W.: 1966, A Method of Forecasting Sea Breezes at Manby, Met Office Forecasting Techniques Memorandum, No. 12, pp. 9–16.

    Google Scholar 

  • Brittain, O. W.: 1970, Forecasting the Inland Penetration of a Sea Breeze over Lincolnshire, Met Office Forecasting Techniques Memorandum, No. 20.

  • Brooks, C. E. P. and Carruthers, N.: 1953, Handbook of Statistical Methods in Meteorology, Her Majesty's Stationary Office, London, p. 198.

    Google Scholar 

  • Carapiperis, L. N. and Catsoulis, V. D.: 1977, ‘Contribution to the Study of Sea Breeze in Athens Area During the Winter’, Bul. Hell. Meteorol. Soc. 2, 1–18.

    Google Scholar 

  • Estoque, M. A.: 1961, ‘A Theoretical Investigation of the Sea Breeze’, Quart. J. R. Meteorol. Soc. 87, 136–146.

    Google Scholar 

  • Estoque, M. A.: 1962, ‘The Sea Breeze as a Function of the Prevailing Synoptic Situation’, J. Atmos. Sci. 19, 244–250.

    Google Scholar 

  • Haurwitz, B.: 1947, ‘Comments on the Sea Breeze Circulation’, J. Meteorol. 4, 1–8.

    Google Scholar 

  • Koschmieder, H.: 1935, ‘Der Seewinde von Danzig’, Meteorol. Z. 52, 491.

    Google Scholar 

  • Koschmieder, H.: 1936, ‘Danziger Seewindstudien’, Forsch. Arb. Met. Inst. Danzig 8, 1–44.

    Google Scholar 

  • Metaxas, D. A.: 1966, Temperature Variation at Helliniko Airport and Athens During Summer, National Met. Service, Study No. 1, pp. 1–31 (in Greek).

  • Pearce, R. P.: 1962, ‘A Simplified Theory of the Generation of Sea Breezes’, Quart. J. R. Meteorol. Soc. 88, 20–29.

    Google Scholar 

  • Pearson, R. A.: 1980, ‘Local Flows’, in Atmospheric Planetary Boundary Layer Physics, Elsevier Sci. Publ. Co., Amsterdam, Oxford, New York, pp. 95–156.

  • Peters, S. P.: 1938, The Sea Breeze at Worthy Down, Winchester Met. Off. Prof. Notes, No. 86.

  • Pikros, K.: 1979, ‘Visible Sea Breeze Front’, Athletic Aviation 9, 53–55 (in Greek).

    Google Scholar 

  • Prezerakos, N. G.: 1984, ‘Synoptic Scale Meteorological Conditions in Cases of Long Duration Temperature Inversions at Helliniko Upper Air Station’, Proceedings of ‘Fluid Mechanics and Environment’ Second Congress, Technical University of Athens, pp. 41–66 (in Greek).

  • Sahsamanoglou, C. S.: 1976, ‘The Sea Breeze in Thessaloniki’, Bull. Hell. Meteorol. Soc. 1, 19–33 (in Greek).

    Google Scholar 

  • Simpson, J. E.: 1966, The Sea Breeze at Lasham, Met. Office, Forecasting Techniques Memorandum, No. 12, pp. 3–7.

    Google Scholar 

  • Sutcliffe, R. C.: 1937, ‘The Sea Breeze at Felixstows. A Statistical Investigation of Pilot Balloon Ascent up to 5500 Feet’, Quart. J. R. Meteorol. Soc. 63, 137–148.

    Google Scholar 

  • Van der Hoven, I.: 1967, ‘Atmsopheric Transport and Diffusion at Coastal Site’, Nuclear Safety, pp. 490–499.

  • Zambakas, J. D.: 1973, ‘The Diurnal Variation and Duration of the Sea Breeze at the National Observatory of Athens, Greece’, Meteorol. Mag. 102, 224–228.

    Google Scholar 

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Prezerakos, N.G. Characteristics of the sea breeze in Attica, Greece. Boundary-Layer Meteorol 36, 245–266 (1986). https://doi.org/10.1007/BF00118663

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