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Land-Atmosphere Interactions and Effects on the Climate of the Tibetan Plateau and Surrounding Regions III by Yaoming Ma, Li Jia, Massimo Menenti, Lei Zhong ISBN 9783725833726, 9783725833719, 3725833729, 3725833710 instant download

  • SKU: EBN-235993946
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Instant download (eBook) Land-Atmosphere Interactions and Effects on the Climate of the Tibetan Plateau and Surrounding Regions III after payment.
Authors:Yaoming Ma, Li Jia, Massimo Menenti, Lei Zhong
Pages:332 pages
Year:2025
Publisher:MDPI
Language:english
File Size:90.88 MB
Format:pdf
ISBNS:9783725833726, 9783725833719, 3725833729, 3725833710
Categories: Ebooks

Product desciption

Land-Atmosphere Interactions and Effects on the Climate of the Tibetan Plateau and Surrounding Regions III by Yaoming Ma, Li Jia, Massimo Menenti, Lei Zhong ISBN 9783725833726, 9783725833719, 3725833729, 3725833710 instant download

As the world's highest and most expansive plateau, the Tibetan Plateau (TP) is often hailed as the 'Asian Water Tower' and the 'Third Pole of the Earth'. 
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Gaining a deeper insight into the water and energy cycles within the TP is crucial, not only for uncovering the dynamics of regional land-atmosphere interactions but also for evaluating the factors influencing alterations in the cryosphere and hydrosphere, in connection with atmospheric changes over the plateau within the Asian monsoon framework. Given that the TP is an ecologically delicate area that is highly responsive to climate variations, a systematic analysis of the land-atmosphere interactions here is instrumental in fostering a quantitative comprehension of climate change. 
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This Special Issue showcases the latest progress in the quantitative analyses of the various factors related to land-atmosphere interactions, including surface heat fluxes, atmospheric boundary layer characteristics, soil moisture, precipitation, cloud, thunderstorm, radiation, and albedo over the Tibetan Plateau, along with their unique climate effects on surrounding regions.
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The selected contributions are both innovative and timely, enriching our understanding of land-atmosphere interactions propelled by global warming. We are confident that this compilation of research will serve as a valuable quantitative resource for enhancing the assessment and forecasting of land-atmosphere interactions in the 'Third Pole'.
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