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Titlebook: Boundary-Layer Meteorology 25th Anniversary Volume, 1970–1995; Invited Reviews and J. R. Garratt,P. A. Taylor Book 1996 Springer Science+B

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Childhood, Youth and University Studies,es is possible. The horizontal sizes of the most rapidly growing modes, as a rule, are an order of magnitude larger than the vertical sizes. The possibility of observing this instability under natural conditions is discussed.
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Ground-Based Remote Sensing of the Atmospheric Boundary Layer: 25 Years of Progress,then discussed, including the sea breeze, convergence boundaries, dispersion, and boundary-layer cloud systems. The review concludes with a discussion of the likely future role of remote sensors in boundary-layer research.
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Book 1996R.E. Munn served as Editor-in-Chiefuntil recently. The special 25th Anniversary volume, on which thisbook is based, was compiled from review and other articles solicitedand selected as a `Festschrift‘ to honour Ted Munn‘s achievement aseditor of the journal over that time. .Articles by leading contr
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https://doi.org/10.1007/978-3-031-66123-5 evaporation coefficient at wind speeds above 15 m s. have not been substantiated. Wind stress measurements showed a relationship with wave age. New methods were developed for coping with flow distortion.
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https://doi.org/10.1007/978-94-017-0489-2f and is related to similar studies conducted in the early 1980s. Data limitations are discussed and applications of numerical and wind-tunnel models to Askervein are outlined. Problems associated with model simulations are noted and model results are compared with the field measurements.
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,The Atmospheric Boundary Layer — Advances in Knowledge and Application,odelling of selected phenomena; (ii) numerical weather prediction; and (iii) climate simulations. Future trends are identified, including the incorporation into models of advanced cloud schemes and interactive canopy schemes, and the nesting of high resolution boundary-layer schemes in global climate models.
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