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TZID:Europe/Berlin
TZUNTIL:20211031T010000Z
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TZNAME:CET
DTSTART:20181028T030000
TZOFFSETFROM:+0200
TZOFFSETTO:+0100
RDATE:20191027T030000
RDATE:20201025T030000
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DTSTART:20190331T020000
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RDATE:20200329T020000
RDATE:20210328T020000
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UID:www.bayceer.uni-bayreuth.de-bayceer-t150114id
DTSTAMP:20260813T130102Z
DESCRIPTION:Fog as a meteorological phenomenon can have a high impact on th
 e economy but also on personal safety. The estimated total economic losses
  associated with fog events on aviation\, marine and land transportation t
 o be comparable to those of winter storms. There is thus increasing demand
  for precise fog forecasting. Despite the improvements in numerical weathe
 r prediction models over recent years\, accurate forecasting of fog is sti
 ll challenging. The main reason is fog&rsquo\;s considerable variability i
 n space and time as a result of the nonlinear interaction between several 
 processes\, such as radiation\, turbulent mixing\, cloud microphysics\, an
 d energy transfer in the atmosphere&ndash\;surface&ndash\;soil continuum. 
 Turbulence-resolving simulations (so-calledlarge-eddy simulations\, LES) p
 rovide an ideal framework for studying these processes and their interacti
 on. This talk provides an introduction into the fog physics and its life c
 ycle and outline recent advancements in fog research using high-resolution
  LES at Leibniz University Hannover.\nInvited by Christoph Thomas\, Microm
 eteorology
DTSTART;TZID=Europe/Berlin:20191024T120000
DTEND;TZID=Europe/Berlin:20191024T133000
SUMMARY:Dr. Björn Maronga\, Institute of Meteorology and Climatology\, Leib
 niz University Hannover (Homepage): Inside the fog: towards an improved fo
 recasting of nocturnal fog by using turbulence-resolving simulations
TRANSP:TRANSPARENT
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