Complementary use of multi-model climate ensemble and Bayesian model averaging for projecting river hydrology in the Himalaya
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[1] A. Alam,et al. Assessing the groundwater spring potential of Sindh basin in the Kashmir Himalaya , 2022, Arabian Journal of Geosciences.
[2] L. Leolini,et al. Projections of Climate Change Impacts on Flowering-Veraison Water Deficits for Riesling and Müller-Thurgau in Germany , 2022, Remote. Sens..
[3] Jonathan D. Cryer,et al. Time Series Analysis , 1986 .
[4] M. J. Booij,et al. Attribution of Changes in Streamflow to Climate Change and Land Cover Change in Yangtze River Source Region, China , 2022 .
[5] M. Cutler,et al. Modelling climate change impact on water resources of the Upper Indus Basin , 2021, Journal of Water and Climate Change.
[6] A. Alam,et al. Evaluating the impact of climate change on extreme temperature and precipitation events over the Kashmir Himalaya , 2021, Climate Dynamics.
[7] A. Alam,et al. Assessment of trends in climatic extremes from observational data in the Kashmir basin, NW Himalaya , 2021, Environmental Monitoring and Assessment.
[8] I. Rashid,et al. Time series analysis of climate variability and trends in Kashmir Himalaya , 2021, Ecological Indicators.
[9] H. Karambiri,et al. Impacts of climate and environmental changes on water resources: A multi-scale study based on Nakanbé nested watersheds in West African Sahel , 2021, Journal of Hydrology: Regional Studies.
[10] Muhammad Touseef,et al. Assessment of Surface Water Availability under Climate Change Using Coupled SWAT-WEAP in Hongshui River Basin, China , 2021, ISPRS Int. J. Geo Inf..
[11] H. Karambiri,et al. Spatial and transient modelling of land use/land cover (LULC) dynamics in a Sahelian landscape under semi-arid climate in northern Burkina Faso , 2021 .
[12] J. Pilz,et al. Evaluation of CMIP5 models and ensemble climate projections using a Bayesian approach: a case study of the Upper Indus Basin, Pakistan , 2021, Environmental and Ecological Statistics.
[13] A. N. Engida,et al. Hydrological modeling in the Upper Blue Nile basin using soil and water analysis tool (SWAT) , 2021, Modeling Earth Systems and Environment.
[14] A. S. Jasrotia,et al. Hydrological modeling to simulate stream flow under changing climate conditions in Jhelum catchment, western Himalaya , 2020 .
[15] H. Karambiri,et al. A dynamic land use/land cover input helps in picturing the Sahelian paradox: Assessing variability and attribution of changes in surface runoff in a Sahelian watershed. , 2020, The Science of the total environment.
[16] C. A. Jones,et al. Climate change impact assessment on water resources under RCP scenarios: A case study in Mundaú River Basin, Northeastern Brazil , 2020, International Journal of Climatology.
[17] Muhammad Izhar Shah,et al. Predicting hydrologic responses to climate changes in highly glacierized and mountainous region Upper Indus Basin , 2020, Royal Society Open Science.
[18] S. Chou,et al. Climate change impacts under representative concentration pathway scenarios on streamflow and droughts of basins in the Brazilian Cerrado biome , 2020, International Journal of Climatology.
[19] I. Rashid,et al. Jammu and Kashmir State: An Overview , 2020 .
[20] N. Addor,et al. Hydrological Modeling of Climate Change Impacts , 2019 .
[21] Usman,et al. Simulating the Impact of Climate Change on the Hydrological Regimes of a Sparsely Gauged Mountainous Basin, Northern Pakistan , 2019, Water.
[22] Sangam Shrestha,et al. Evaluation and application of a SWAT model to assess the climate change impact on the hydrology of the Himalayan River Basin , 2019, CATENA.
[23] F. Brient. Reducing Uncertainties in Climate Projections with Emergent Constraints: Concepts, Examples and Prospects , 2019, Advances in Atmospheric Sciences.
[24] A. Alam,et al. Using Landsat satellite data for assessing the land use and land cover change in Kashmir valley , 2019, GeoJournal.
[25] Anming Bao,et al. Identifying climate change impacts on water resources in Xinjiang, China. , 2019, The Science of the total environment.
[26] Shabir Ahmad,et al. Flood frequency analysis of river Jhelum in Kashmir basin , 2019, Quaternary International.
[27] G. Ren,et al. Unravelling Climate Change in the Hindu Kush Himalaya: Rapid Warming in the Mountains and Increasing Extremes , 2019, The Hindu Kush Himalaya Assessment.
[28] A. Shrestha,et al. Climate change impact assessment on the hydrological regime of the Kaligandaki Basin, Nepal. , 2018, The Science of the total environment.
[29] A. P. Dimri,et al. Future changes over the Himalayas: Mean temperature , 2018 .
[30] T. V. Reshmidevi,et al. Estimation of the climate change impact on a catchment water balance using an ensemble of GCMs , 2018 .
[31] S. B. Pereira,et al. CALIBRATION AND VALIDATION OF THE SWAT HYDROLOGICAL MODEL FOR THE MUCURI RIVER BASIN , 2018 .
[32] R. Srinivasan,et al. Assessment of climate change impacts on streamflow and hydropower potential in the headwater region of the Grande river basin, Southeastern Brazil , 2017 .
[33] M. Romagnoli,et al. Assessment of the SWAT model to simulate a watershed with limited available data in the Pampas region, Argentina. , 2017, The Science of the total environment.
[34] Shabir Ahmad,et al. Coexistent pre-existing extensional and subsequent compressional tectonic deformation in the Kashmir basin, NW Himalaya , 2017 .
[35] Zulkifli Yusop,et al. Climate change impacts under CMIP5 RCP scenarios on water resources of the Kelantan River Basin, Malaysia , 2017 .
[36] S. Jain,et al. Hydrologic modeling of a Himalayan mountain basin by using the SWAT mode , 2017 .
[37] Valentina Krysanova,et al. Intercomparison of climate change impacts in 12 large river basins: overview of methods and summary of results , 2017, Climatic Change.
[38] Jun Xia,et al. Effect of projected climate change on the hydrological regime of the Yangtze River Basin, China , 2017, Stochastic Environmental Research and Risk Assessment.
[39] Buda Su,et al. Evaluation of sources of uncertainty in projected hydrological changes under climate change in 12 large-scale river basins , 2017, Climatic Change.
[40] Reimund P. Rötter,et al. Lessons from climate modeling on the design and use of ensembles for crop modeling , 2016, Climatic Change.
[41] S. Romshoo,et al. Recent glacier changes in the Kashmir Alpine Himalayas, India , 2015 .
[42] I. Rashid,et al. Implications of Shrinking Cryosphere Under Changing Climate on the Streamflows in the Lidder Catchment in the Upper Indus Basin, India , 2015 .
[43] Shabir Ahmad,et al. Tectonic evolution of Kashmir basin in northwest Himalayas , 2015 .
[44] K. Abbaspour,et al. A continental-scale hydrology and water quality model for Europe: Calibration and uncertainty of a high-resolution large-scale SWAT model , 2015 .
[45] Laura Uusitalo,et al. An overview of methods to evaluate uncertainty of deterministic models in decision support , 2015, Environ. Model. Softw..
[46] C. Zammit,et al. Comparing bias correction methods in downscaling meteorological variables for a hydrologic impact study in an arid area in China , 2014 .
[47] Yongtai Huang. Comparison of general circulation model outputs and ensemble assessment of climate change using a Bayesian approach , 2014, GPC 2014.
[48] Marc F. P. Bierkens,et al. Consistent increase in High Asia's runoff due to increasing glacier melt and precipitation , 2014 .
[49] Marc F. P. Bierkens,et al. Rising river flows throughout the twenty-first century in two Himalayan glacierized watersheds , 2013 .
[50] B. Narsimlu,et al. Assessment of Future Climate Change Impacts on Water Resources of Upper Sind River Basin, India Using SWAT Model , 2013, Water Resources Management.
[51] F. Brissette,et al. Performance and uncertainty evaluation of empirical downscaling methods in quantifying the climate change impacts on hydrology over two North American river basins , 2013 .
[52] J. Freer,et al. Modelling climate impact on floods with ensemble climate projections , 2013 .
[53] G. Huang,et al. Development of climate change projections for small watersheds using multi-model ensemble simulation and stochastic weather generation , 2013, Climate Dynamics.
[54] Johannes J. Feddema,et al. Role of snow and glacier melt in controlling river hydrology in Liddar watershed (western Himalaya) under current and future climate , 2012 .
[55] J. Seibert,et al. Bias correction of regional climate model simulations for hydrological climate-change impact studies: Review and evaluation of different methods , 2012 .
[56] Karl E. Taylor,et al. An overview of CMIP5 and the experiment design , 2012 .
[57] Ivan Güttler,et al. RegCM4 : model description and preliminary tests over multiple CORDEX domains , 2012 .
[58] H. Kling,et al. Runoff conditions in the upper Danube basin under an ensemble of climate change scenarios , 2012 .
[59] Ying Xu,et al. Hydrological impacts of climate change in the Yellow River Basin for the 21st century using hydrological model and statistical downscaling model , 2011 .
[60] K. Calvin,et al. The RCP greenhouse gas concentrations and their extensions from 1765 to 2300 , 2011 .
[61] K. Y. Raneesh,et al. A study on the impact of climate change on streamflow at the watershed scale in the humid tropics , 2011 .
[62] Gabriel A. Vecchi,et al. Greenhouse warming and the 21st century hydroclimate of southwestern North America , 2010, Proceedings of the National Academy of Sciences.
[63] Reto Knutti,et al. Challenges in Combining Projections from Multiple Climate Models , 2010 .
[64] Sarah Praskievicz,et al. A review of hydrological modelling of basin-scale climate change and urban development impacts , 2009 .
[65] Jery R. Stedinger,et al. Appraisal of the generalized likelihood uncertainty estimation (GLUE) method , 2008 .
[66] Charles Doutriaux,et al. Performance metrics for climate models , 2008 .
[67] T. Oki,et al. The implications of projected climate change for freshwater resources and their management , 2008 .
[68] H. Fowler,et al. Estimating change in extreme European precipitation using a multimodel ensemble , 2007 .
[69] M. Meybeck,et al. Mountains of the world, water towers for humanity: Typology, mapping, and global significance , 2007 .
[70] Jeffrey G. Arnold,et al. Model Evaluation Guidelines for Systematic Quantification of Accuracy in Watershed Simulations , 2007 .
[71] T. Huntington. Evidence for intensification of the global water cycle: Review and synthesis , 2006 .
[72] T. Barnett,et al. Potential impacts of a warming climate on water availability in snow-dominated regions , 2005, Nature.
[73] C. Schär,et al. Soil Control on Runoff Response to Climate Change in Regional Climate Model Simulations , 2005 .
[74] A. Raftery,et al. Using Bayesian Model Averaging to Calibrate Forecast Ensembles , 2005 .
[75] E. Salathe,et al. Downscaling simulations of future global climate with application to hydrologic modelling , 2005 .
[76] Dimitrios Gyalistras,et al. Differential impacts of climate change on the hydrology of two alpine river basins , 2004 .
[77] U. Willén,et al. European climate in the late twenty-first century: regional simulations with two driving global models and two forcing scenarios , 2004 .
[78] K. Taylor. Summarizing multiple aspects of model performance in a single diagram , 2001 .
[79] George H. Hargreaves,et al. Reference Crop Evapotranspiration from Temperature , 1985 .
[80] J. Nash,et al. River flow forecasting through conceptual models part I — A discussion of principles☆ , 1970 .