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Satellite Monitoring of the Surface Water and Energy Budget in the Central Tibetan Plateau
Authors:YANG Kun and Toshio KOIKE
Institution:[1]Institute of Tibetan Plateau Research, Chinese Academy of Sciences, P. O. 2871, Beijing 100085 [2]Department of Civil Engineering, The University of Tokyo, Tokyo 113-8656, Japan
Abstract:The water and energy cycle in the Tibetan Plateau is an important component of Monsoon Asia and the global energy and water cycle. Using data at a CEOP (Coordinated Enhanced Observing Period)-Tibet site, this study presents a first-order evaluation on the skill of weather forecasting from GCMs and satellites in producing precipitation and radiation estimates. The satellite data, together with the satellite leaf area index, are then integrated into a land data assimilation system (LDAS-UT) to estimate the soil moisture and surface energy budget on the Plateau. The system directly assimilates the satellite microwave brightness temperature, which is strongly affected by soil moisture but not by cloud layers, into a simple biosphere model. A major feature of this system is a dual-pass assimilation technique, which can auto-calibrate model parameters in one pass and estimate the soil moisture and energy budget in the other pass. The system outputs, including soil moisture, surface temperature, surface energy partition, and the Bowen ratio, are compared with observations, land surface models, the Global Land Data Assimilation System, and four general circulation models. The results show that this satellite data-based system has a high potential for a reliable estimation of the regional surface energy budget on the Plateau.
Keywords:Tibetan Plateau  CEOP  microwave land data assimilation  surface energy budget  satellite products
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