Precipitation Dominates Long-Term Water Storage Changes in Nam Co Lake (Tibetan Plateau) Accompanied by Intensified Cryosphere Melts Revealed by a Basin-Wide Hydrological Modelling
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Jia Qi | Jing Zhou | Lei Wang | Xiuping Li | Lei Song | Yuanwei Wang | Xiaoyang Zhong | Lei Wang | Yuanwei Wang | Jia Qi | Jing Zhou | Lei Song | Xiuping Li | Xiaoyang Zhong
[1] Bo Huang,et al. Modeling and analysis of lake water storage changes on the Tibetan Plateau using multi-mission satellite data , 2013 .
[2] Toshio Koike,et al. Improving the snow physics of WEB-DHM and its point evaluation at the SnowMIP sites , 2010 .
[3] Shi-chang Kang,et al. Simulation and Analysis of the Water Balance of the Nam Co Lake Using SWAT Model , 2019, Water.
[4] Yanhong Wu,et al. The response of lake-glacier variations to climate change in Nam Co Catchment, central Tibetan Plateau, during 1970–2000 , 2008 .
[5] Hongbo Wu,et al. Variations in water level and glacier mass balance in Nam Co lake, Nyainqentanglha range, Tibetan Plateau, based on ICESat data for 2003-09 , 2014, Annals of Glaciology.
[6] Di Long,et al. High-temporal-resolution water level and storage change data sets for lakes on the Tibetan Plateau during 2000–2017 using multiple altimetric missions and Landsat-derived lake shoreline positions , 2019, Earth System Science Data.
[7] Yongwei Sheng,et al. Coherent lake growth on the central Tibetan Plateau since the 1970s: Characterization and attribution , 2013 .
[8] Jie He,et al. Improving land surface temperature modeling for dry land of China , 2011 .
[9] Zhongbo Yu,et al. Climate change driven water budget dynamics of a Tibetan inland lake , 2017 .
[10] Xin Li,et al. Evaluation of four remote sensing based land cover products over China , 2010 .
[11] A. Bliss,et al. Global response of glacier runoff to twenty‐first century climate change , 2014 .
[12] Lei Wang,et al. Exploring the water storage changes in the largest lake (Selin Co) over the Tibetan Plateau during 2003–2012 from a basin‐wide hydrological modeling , 2015 .
[13] D. Randall,et al. A Revised Land Surface Parameterization (SiB2) for Atmospheric GCMS. Part I: Model Formulation , 1996 .
[14] Dawen Yang,et al. Comparison of different distributed hydrological models for characterization of catchment spatial variability , 2000 .
[15] Shi-chang Kang,et al. Modeling hydrological process in a glacier basin on the central Tibetan Plateau with a distributed hydrology soil vegetation model , 2016 .
[16] W. Bastiaanssen,et al. Evaluation of three energy balance-based evaporation models for estimating monthly evaporation for five lakes using derived heat storage changes from a hysteresis model , 2017 .
[17] Shi-chang Kang,et al. Water balance observations reveal significant subsurface water seepage from Lake Nam Co, south-central Tibetan Plateau , 2013 .
[18] Dawen Yang,et al. Improving the hydrology of the Simple Biosphere Model 2 and its evaluation within the framework of a distributed hydrological model , 2009 .
[19] J. Pu,et al. Modeling the runoff and glacier mass balance in a small watershed on the Central Tibetan Plateau, China, from 1955 to 2008 , 2012 .
[20] Keith Richards,et al. Seasonal and abrupt changes in the water level of closed lakes on the Tibetan Plateau and implications for climate impacts , 2014 .
[21] Toshio Koike,et al. Assessment of a distributed biosphere hydrological model against streamflow and MODIS land surface temperature in the upper Tone River Basin , 2009 .
[22] Binbin Wang,et al. Evaporation variability of Nam Co Lake in the Tibetan Plateau and its role in recent rapid lake expansion , 2016 .
[23] Massimo Menenti,et al. CESat derived elevation changes of Tibetan lakes between 2003 and 2009 u , 2012 .
[24] Yaoming Ma,et al. Significant differences exist in lake-atmosphere interactions and the evaporation rates of high-elevation small and large lakes , 2019, Journal of Hydrology.
[25] Bing Zhang,et al. Long-Term Changes of Lake Level and Water Budget in the Nam Co Lake Basin, Central Tibetan Plateau , 2014 .
[26] Lei Wang,et al. Coupled Snow and Frozen Ground Physics Improves Cold Region Hydrological Simulations: An Evaluation at the upper Yangtze River Basin (Tibetan Plateau) , 2019, Journal of Geophysical Research: Atmospheres.
[27] Chen Feng,et al. Analysis of lake level changes in Nam Co in central Tibet utilizing synergistic satellite altimetry and optical imagery , 2012, Int. J. Appl. Earth Obs. Geoinformation.
[28] Junfeng Wei,et al. Surface-area changes of glaciers in the Tibetan Plateau interior area since the 1970s using recent Landsat images and historical maps , 2014 .
[29] Katumi Musiake,et al. A hillslope-based hydrological model using catchment area and width functions , 2002 .
[30] T. Yao,et al. Recent Glacial Retreat and Its Impact on Hydrological Processes on the Tibetan Plateau, China, and Surrounding Regions , 2007 .
[31] R. Armstrong,et al. Snow depth derived from passive microwave remote-sensing data in China , 2008, Annals of Glaciology.
[32] M. Bierkens,et al. Climate Change Will Affect the Asian Water Towers , 2010, Science.
[33] T. Jackson,et al. Development of a distributed biosphere hydrological model and its evaluation with the Southern Great Plains Experiments (SGP97 and SGP99) , 2009 .
[34] H. Savenije,et al. The importance of aspect for modelling the hydrological response in a glacier catchment in Central Asia , 2017 .
[35] Lei Wang,et al. Development of a land surface model with coupled snow and frozen soil physics , 2017 .
[36] Jindi Wang,et al. Use of General Regression Neural Networks for Generating the GLASS Leaf Area Index Product From Time-Series MODIS Surface Reflectance , 2014, IEEE Transactions on Geoscience and Remote Sensing.
[37] Yanhong Wu,et al. Quantitative analysis of lake area variations and the influence factors from 1971 to 2004 in the Nam Co basin of the Tibetan Plateau , 2010 .
[38] M. Xie,et al. Temporal Variations in the Quantity of Groundwater Flow in Nam Co Lake , 2018, Water.
[39] Thomas Foken,et al. Response of hydrological cycle to recent climate changes in the Tibetan Plateau , 2011 .
[40] J. Qin,et al. Quantifying evaporation and its decadal change for Lake Nam Co, central Tibetan Plateau , 2016 .
[41] Yaoming Ma,et al. Modeling the land surface water and energy cycles of a mesoscale watershed in the central Tibetan Plateau during summer with a distributed hydrological model , 2013 .
[42] C. Justice,et al. A Revised Land Surface Parameterization (SiB2) for Atmospheric GCMS. Part II: The Generation of Global Fields of Terrestrial Biophysical Parameters from Satellite Data , 1996 .
[43] P. Krause,et al. A test of J2000 model in a glacierized catchment in the central Tibetan Plateau , 2012, Environmental Earth Sciences.
[44] M. Pelto,et al. Linking the Recent Glacier Retreat and Depleting Streamflow Patterns with Land System Changes in Kashmir Himalaya, India , 2020, Water.
[45] Yongwei Sheng,et al. Response of inland lake dynamics over the Tibetan Plateau to climate change , 2014, Climatic Change.
[46] M. Sillanpää,et al. Summer hydrological characteristics in glacier and non-glacier catchments in the Nam Co Basin, southern Tibetan Plateau , 2015, Environmental Earth Sciences.
[47] H. L. Penman. Natural evaporation from open water, bare soil and grass , 1948, Proceedings of the Royal Society of London. Series A. Mathematical and Physical Sciences.
[48] M. Sillanpää,et al. Simulation and analysis of glacier runoff and mass balance in the Nam Co basin, southern Tibetan Plateau , 2015 .
[49] Peter Krause,et al. Hydrological system analysis and modelling of the Nam Co basin in Tibet , 2010 .
[50] T. McMahon,et al. Estimating actual, potential, reference crop and pan evaporation using standard meteorological data: a pragmatic synthesis , 2013 .
[51] Jeffrey P. Walker,et al. THE GLOBAL LAND DATA ASSIMILATION SYSTEM , 2004 .
[52] Chunqiao Song,et al. Shifts in water-level variation of Namco in the central Tibetan Plateau from ICESat and CryoSat-2 altimetry and station observations , 2015 .
[53] Hongjie Xie,et al. Water balance estimates of ten greatest lakes in China using ICESat and Landsat data , 2013 .
[54] Bo Huang,et al. Heterogeneous change patterns of water level for inland lakes in High Mountain Asia derived from multi‐mission satellite altimetry , 2015 .
[55] Bing Zhang,et al. Estimation and trend detection of water storage at Nam Co Lake, central Tibetan Plateau , 2011 .
[56] Bin Zhao,et al. The Modern-Era Retrospective Analysis for Research and Applications, Version 2 (MERRA-2). , 2017, Journal of climate.
[57] Tao Che,et al. Lake ice phenology of Nam Co, Central Tibetan Plateau, China, derived from multiple MODIS data products , 2017 .
[58] H. Yao. Long-Term Study of Lake Evaporation and Evaluation of Seven Estimation Methods: Results from Dickie Lake, South-Central Ontario, Canada , 2009 .
[59] Hongjie Xie,et al. Estimating surface temperature changes of lakes in the Tibetan Plateau using MODIS LST data , 2014 .
[60] Jingshi Liu,et al. Growth of a high-elevation large inland lake, associated with climate change and permafrost degradation in Tibet , 2009 .
[61] Jie He,et al. On downward shortwave and longwave radiations over high altitude regions: Observation and modeling in the Tibetan Plateau , 2010 .