2023
DOI: 10.1029/2022jd037615
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Large Uncertainties in Precipitation Exert Considerable Impact on Land Surface Temperature Modeling Over the Tibetan Plateau

Abstract: The Tibetan Plateau (TP) is known as the "Third Pole" with average elevation of more than 4, 000 m above sea level (Qiu, 2008). The large uplift of TP forms source of mechanical forcing into the free atmosphere and influences the upper airflow across the Eurasian continent (Molnar et al., 2010;Son et al., 2019;Yuan et al., 2023). Meanwhile, large amount of incoming solar radiation absorbed by plateau surface in daytime induced strong thermal effect, directly heating the middle of troposphere above it (

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Cited by 5 publications
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“…However, they have limitations in providing spatial distribution of vegetation cover over a large area [5]. Satellite-based remote sensing images with high relationships between spectral bands and vegetation parameters have the potential to estimate vegetation area for a large geographical region with a high spatial and temporal resolution, especially in rugged inaccessible terrain [6,7].…”
Section: Introductionmentioning
confidence: 99%
“…However, they have limitations in providing spatial distribution of vegetation cover over a large area [5]. Satellite-based remote sensing images with high relationships between spectral bands and vegetation parameters have the potential to estimate vegetation area for a large geographical region with a high spatial and temporal resolution, especially in rugged inaccessible terrain [6,7].…”
Section: Introductionmentioning
confidence: 99%