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Title:Študij atmosferskih procesov v Vipavski dolini na podlagi razširjanja aerosolov
Authors:ID Stanič, Samo (Copyright holder)
ID Mole, Maruška, Univerza v Novi Gorici (Author)
ID Wang, Longlong, Univerza v Novi Gorici (Author)
ID Gregorič, Asta, Univerza v Novi Gorici (Author)
ID Bergant, Klemen, Univerza v Novi Gorici, Agencija RS za okolje (Author)
ID Drinovec, Luka, Aerosol d.o.o., Institut Jožef Stefan (Author)
ID Močnik, Griša, Aerosol d.o.o., Institut Jožef Stefan (Author)
ID Stanič, Samo, Univerza v Novi Gorici (Author)
ID Vaupotič, Janja, Institut Jožef Stefan (Author)
ID Vučković, Marko, Univerza v Novi Gorici (Author)
Files: This document has no files that are freely available to the public. This document may have a physical copy in the library of the organization, check the status via COBISS. Link is opened in a new window
Language:Slovenian
Work type:Not categorized
Typology:1.08 - Published Scientific Conference Contribution
Organization:UNG - University of Nova Gorica
Abstract:Vipavska dolina je geomorfološko dokaj zaprta, kar po eni strani omogoča pojav močne burje, po drugi strani pa ob stabilnih meteoroloških razmererah ugodne pogoje za kopičenje aerosolov znotraj prizemne mejne plasti. Poznavanje dinamike višinske porazdelitve aerosolov s sočasno uporabo prizemnih meritev omogoča raziskave lokalnih emisij aerosolov, transporta aerosolov na daljše razdalje ter značilnih atmosferskih struktur, ki se pojavijo v različnih vremenskih pogojih. Pri meritvah smo uporabili metode daljinskega zaznavanja z lidarjem, ki omogočajo opazovanje časovnega in prostorskega spreminjanja koncentracij aerosolov, ter točkovne meritve, ki omogočajo njihovo prepoznavanje in določanje njihovih lastnosti. Ugotovili smo, da je mogoče lidarske meritve uporabiti za študij vrste atmosferskih procesov in struktur v zelo različnih vremenskih pogojih. Opazili smo manjše konvekcijske strukture znotraj prizemne mejne plasti in gravitacijske valove nad njo. Meritve vsebnosti in lastnosti aerosolov pri tleh kažejo, da se lahko ob stabilnih atmosferskih pogojih v primerih povečanja lokalnih emisij njihove koncentracije hitro povečajo. Dinamiko in strukturo razširjanja aerosolov znotraj Vipavske doline bomo v prihodnje podrobneje raziskali s sočasnim prostorskim pregledovanjem z metodami daljinskega zaznavanja.
Keywords:aerosoli, atmosferski procesi, daljinsko zaznavanje, Vipavska dolina
Publication status:Published
Year of publishing:2016
Number of pages:15
PID:20.500.12556/RUNG-2078 New window
COBISS.SI-ID:4122619 New window
UDC:550.3(497.4)(082), 528(497.4)(082)
DOI:/ New window
NUK URN:URN:SI:UNG:REP:D08YDU70
Publication date in RUNG:25.01.2016
Views:6802
Downloads:9
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Record is a part of a monograph

Title:RAZISKAVE S PODROČJA GEODEZIJE IN GEOFIZIKE 2015
Editors:Miran Kuhar, Rudi Čop, Andrej Gosar, Mira Kobold, Polona Kralj, Matjaž Ličer, Gregor Skok, Bojan Stopar, Polona Vreča, Martina Čarman
Place of publishing:Ljubljana
Publisher:Univerza v Ljubljani, Fakulteta za gradbeništvo in geodezijo Jamova 2, Ljubljana
Year of publishing:2016
ISBN:978-961-6884-34-1
Conference organizer:Univerza v Ljubljani, Fakulteta za gradbeništvo in geodezijo

Document is financed by a project

Funder:ARRS - Slovenian Research Agency
Project number:P1-0385
Name:Daljinsko zaznavanje atmosferskih lastnosti

Licences

License:CC BY-ND 4.0, Creative Commons Attribution-NoDerivatives 4.0 International
Link:http://creativecommons.org/licenses/by-nd/4.0/
Description:Under the NoDerivatives Creative Commons license one can take a work released under this license and re-distribute it, but it cannot be shared with others in adapted form, and credit must be provided to the author.
Licensing start date:25.01.2016

Secondary language

Language:English
Title:Study of atmospheric processes in the Vipava valley based on aerosol transport
Abstract:Vipava valley is geomorphologically relatively closed, which on one hand gives rise to strong Bora events and on the other hand in the case of stable meteorological conditions leads to high aerosol loading within the planetary boundary layer. Together with point measurements at the ground, understanding of the dynamics of the spatial distribution of aerosols enables the study of local aerosol sources, the effects of long range aerosol transport and atmospheric structures, that appear in specific conditions. We report on the results obtained from lidar based remote sensing and ground based meteorological and environmental measurements.
Keywords:aerosols, atmospheric processes, remote sensing, Vipava valley


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