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Judul Energy and Water Cycles in the Third Pole / Yaoming Ma (editor); Zhongbo Su (editor); Lei Zhong (editor)
Pengarang Ma, Yaoming
Su, Zhongbo
Zhong, Lei
Penerbitan Basel : MDPI, 2022
Deskripsi Fisik 218 p. :ill.
ISBN 978-3-0365-3927-0
Subjek SURFACE CHARACTERISTIC PARAMETER
LAND-ATMOSPHERE INTERACTION
WATER
Catatan "Analysis of long-term, ground-based observation data on the Tibetan Plateau help to enhance our understanding of land-atmosphere interactions and their influence on weather and climate in this region. In this paper, the daily, monthly, and annual averages of radiative fluxes, surface albedo, surface temperature, and air temperature were calculated for the period of 2006 to 2019 at six research stations on the Tibetan Plateau. The surface energy balance characteristics of these six stations, which include alpine meadow, alpine desert, and alpine steppe, were then compared. The downward shortwave radiation at stations BJ, QOMS, and NAMORS was found to decrease during the study period, due to increasing cloudiness. Meanwhile, the upward shortwave radiation and surface albedo at all stations were found to have decreased overall. Downward longwave radiation, upward longwave radiation, net radiation, surface temperature, and air temperature showed increasing trends on inter-annual time scales at most sta
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Lokasi Akses Online https://www.mdpi.com/books/book/5407-energy-and-water-cycles-in-the-third-pole

 
No Barcode No. Panggil Akses Lokasi Ketersediaan
164425192 551.46 Ma, e Baca di tempat Perpustakaan Pusat - Online Resources
Ebook
Tersedia
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020 # # $a 978-3-0365-3927-0
035 # # $a 0010-0825000377
082 # # $a 551.46
084 # # $a 551.46 Ma, e
100 1 # $a Ma, Yaoming
245 1 # $a Energy and Water Cycles in the Third Pole /$c Yaoming Ma (editor); Zhongbo Su (editor); Lei Zhong (editor)
260 # # $a Basel :$b MDPI,$c 2022
300 # # $a 218 p. : $b ill.
505 # # $a "Analysis of long-term, ground-based observation data on the Tibetan Plateau help to enhance our understanding of land-atmosphere interactions and their influence on weather and climate in this region. In this paper, the daily, monthly, and annual averages of radiative fluxes, surface albedo, surface temperature, and air temperature were calculated for the period of 2006 to 2019 at six research stations on the Tibetan Plateau. The surface energy balance characteristics of these six stations, which include alpine meadow, alpine desert, and alpine steppe, were then compared. The downward shortwave radiation at stations BJ, QOMS, and NAMORS was found to decrease during the study period, due to increasing cloudiness. Meanwhile, the upward shortwave radiation and surface albedo at all stations were found to have decreased overall. Downward longwave radiation, upward longwave radiation, net radiation, surface temperature, and air temperature showed increasing trends on inter-annual time scales at most stations. Downward shortwave radiation was maximum in spring at BJ, QOMS, NADORS, and NAMORS, due to the influence of the summer monsoon. Upward shortwave radiation peaked in October and November due to the greater snow cover. BJ, QOMS, NADORS, and NAMORS showed strong sensible heat fluxes in the spring while MAWORS showed strong sensible heat fluxes in the summer. The monthly and diurnal variations of surface albedo at each station were “U” shaped. The diurnal variability of downward longwave radiation at each station was small, ranging from 220 to 295 W·m?2.The diurnal variation in surface temperature at each station slightly lagged behind changes in downward shortwave radiation, and the air temperature, in turn, slightly lagged behind the surface temperature."
650 # # $a LAND-ATMOSPHERE INTERACTION
650 # # $a SURFACE CHARACTERISTIC PARAMETER
650 # # $a WATER
700 1 # $a Su, Zhongbo
700 1 # $a Zhong, Lei
856 # # $a https://www.mdpi.com/books/book/5407-energy-and-water-cycles-in-the-third-pole
990 # # $a 164425192
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