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Titel Elevation-dependent reductions in wind speed over and around the Tibetan Plateau
VerfasserIn Xiaoyu Guo, Lei Wang, Lide Tian, Xiuping Li
Konferenz EGU General Assembly 2016
Medientyp Artikel
Sprache en
Digitales Dokument PDF
Erschienen In: GRA - Volume 18 (2016)
Datensatznummer 250126714
Publikation (Nr.) Volltext-Dokument vorhandenEGU/EGU2016-6475.pdf
 
Zusammenfassung
The Tibetan Plateau (TP) affects its surroundings significantly through thermal and dynamic processes. Reductions in near-surface wind speed (Ws) have been observed from ground measurements but how the trends of Ws vary with the elevation is less clear. Using long-term daily records (1970–2012) of Ws and maximum (Tmax), minimum (Tmin), and mean (Tmean) air temperatures from 139 stations over and around the TP, trends of Ws with respect to elevation were investigated. The major findings are as follows. (1) Pronounced reductions in Ws can be observed in all seasons and annually across the TP, and spring demonstrates the most prominent weakening. The rate of reductions in Ws was amplified with elevation, and higher-elevation environments experienced greater changes in Ws than lower-elevation areas. Elevation-dependent reductions in Ws have become enhanced from 1970 to 2012. (2) Statistically significant negative correlations between Ws and corresponding near-surface temperatures were detected. We suggested that the elevation dependent warming and thereby the increased surface roughness at higher-elevation environments may contribute to the elevation dependent reductions in Ws over and around TP. More detailed mechanisms causing this pattern are to be further explored.