001     810740
005     20240712100913.0
020 _ _ |a 978-3-95806-142-2
024 7 _ |2 Handle
|a 2128/12139
024 7 _ |2 ISSN
|a 1866-1793
037 _ _ |a FZJ-2016-03332
041 _ _ |a English
100 1 _ |0 P:(DE-Juel1)156119
|a Tao, Mengchu
|b 0
|e Corresponding author
|u fzj
245 _ _ |a Atmospheric Mixing in a Lagrangian Framework
|f - 2016-08-08
260 _ _ |a Jülich
|b Forschungszentrum Jülich GmbH Zentralbibliothek, Verlag
|c 2016
300 _ _ |a 146 S.
336 7 _ |2 DataCite
|a Output Types/Dissertation
336 7 _ |2 ORCID
|a DISSERTATION
336 7 _ |2 BibTeX
|a PHDTHESIS
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|a Thesis
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|2 PUB:(DE-HGF)
|a Dissertation / PhD Thesis
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|m phd
|s 1470660159_24959
336 7 _ |2 DRIVER
|a doctoralThesis
490 0 _ |a Schriften des Forschungszentrums Jülich Reihe Energie & Umwelt / Energy & Environment
|v 320
502 _ _ |a Universität Wuppertal, Diss., 2016
|b Dr.
|c Universität Wuppertal
|d 2016
520 _ _ |a Inaccurate representation of mixing in chemistry transport models strongly influence the time evolution of all relevant trace gases and, in particular, the qualitative determination of the stratosphere-troposphere exchange (STE). For this reason, a physics-based numerical representation of mixing is required but remains an uncertain piece for the atmospheric transport models. However, the Lagrangian view of transport offers an alternative to exploit the numerical diffusion for parametrization of the physical mixing rather than to find ways of avoiding this effect. Using the standard version of the Chemical Lagrangian Model of the Stratosphere(CLaMS) with mixing parametrization triggered by strong flow deformations, a remarkable Sudden Stratospheric Warming (SSW) case is investigated to reexamine transport, especially mixing, through analyzing the variation of stratospheric composition and of the tracer-tracer correlations. The case study of SSW demonstrates the intensified sub-seasonal variability of polar descent and tropical upwelling, which further motivates the study of the long-term impact of SSWs on the variability of the water vapor in the tropical lower stratosphere based on a CLaMS 35-year run. A sub-seasonal SSW-associated dehydration effect in the tropical lower stratosphere modulated by the two quasi-biennial oscillation(QBO) phases is found. The cooling and drying at the tropical tropopause, as a result of enhanced breaking of planetary waves in the subtropics during SSWs, is more intensive in the easterly QBO phase than in the westerly QBO phase. [...]
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|a HITEC - Helmholtz Interdisciplinary Doctoral Training in Energy and Climate Research (HITEC) (HITEC-20170406)
650 _ 7 |x Diss.
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