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BibEntryCargo > Year: 2012 & Journal : Climate Dynamics or Hydrological Processes

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Firstname:
Casado, M. J.; Pastor, M. A.; (1) · Crétat, Julien; Pohl, Benjamin; Richard, Yves; Drobinski, Philippe; (1) · Dessu, Shimelis Behailu; Melesse, Assefa M.; (1) · Endreny, T. A.; Lautz, L. K.; (1) · Evans, Jason P.; Ekström, Marie; Ji, Fei; (1) · Flaounas, Emmanouil; Janicot, Serge; Bastin, Sophie; Roca, Rémy; (1) · Gao, Hongkai; He, Xiaobo; Ye, Baisheng; Pu, Jianchen; (1) · Hancock, G. R.; Coulthard, T. J.; (1) · Heikkilä, U.; Sorteberg, A.; (1) · Krause, S.; Munz, M.; Tecklenburg, C.; Binley, A.; (1) · Liakka, Johan; Nilsson, Johan; Löfverström, Marcus; (1) · Lin, Hsien-Tsung; Tan, Yih-Chi; Chen, Chu-Hui; Lin, Wen-Sheng; Liu, Chen-Wuing; (1) · Liu, Buchun; Mei, Xurong; Lv, Guohua; Yang, Youlu; Bai, Meilan; Wu, Yongfeng; Song, Jiqing; Bai, Wenbo; (1) · Liu, Jia; Bray, Michaela; Han, Dawei; (1) · Marshall, Michael; Funk, Christopher; Michaelsen, Joel; (1) · Pulido-Velazquez, David; Sahuquillo, Andrés; Andreu, Joaquín; (1) · Ratnam, J. V.; Behera, S. K.; Masumoto, Y.; Takahashi, K.; Yamagata, T.; (1) · Safeeq, Mohammad; Fares, Ali; (1) · Shrestha, Rajesh R.; Schnorbus, Markus A.; Werner, Arelia T.; Berland, Anne J.; (1) · Silva, Roberto Valmir; Yamashiki, Yosuke; Takara, Kaoru; (1) · Singh, Shailesh Kumar; Bárdossy, András; Götzinger, J.; Sudheer, K. P.; (1) · Smaoui, Hassan; Zouhri, Lahcen; Ouahsine, Abdellatif; Carlier, Erick; (1) · Soares, Pedro M. M.; Cardoso, Rita M.; Miranda, Pedro M. A.; de Medeiros, Joana; Belo-Pereira, Margarida; Espirito-Santo, Fátima; (1) · Vigaud, N.; Pohl, B.; Crétat, J.; (1) · Wang, Yuankun; Xia, Ziqiang; Wang, Dong; (1) · Wang, Zhonggen; Ficklin, Darren L.; Zhang, Yongyong; Zhang, Minghua; (1) · Xia, Youlong; Ek, Mike; Wei, Helin; Meng, Jesse; (1) · Xu, Yiwen; Castel, Thierry; Richard, Yves; Cuccia, Cédric; Bois, Benjamin; (1) · Yang, Hongwei; Wang, Bin; (1) · Yuan, Xing; Liang, Xin-Zhong; Wood, Eric F.; (1)
Title:
A conceptual-numerical model to simulate hydraulic head in aquifers that are hydraulically connected to surface water bodies (1) · A simple regional coupled model experiment for summer-time climate simulation over southern Africa (1) · Burgundy regional climate change and its potential impact on grapevines (1) · Channel movement and erosion response to rainfall variability in southeast Australia (1) · Characteristics of autumn-winter extreme precipitation on the Norwegian west coast identified by cluster analysis (1) · Characterization of hydraulic suitability of Chinese sturgeon ( Acipenser sinensis ) spawning habitat in the Yangtze River: HYDRAULIC SUITABILITY OF CHINESE STURGEON (1) · Comment on ‘Munz M, Krause S, Tecklenburg C, Binley A. Reducing monitoring gaps at the aquifer-river interface by modelling groundwater-surfacewater exchange flow patterns. Hydrological Processes. DOI: 10.1002/hyp.8080’: COMMENTS ON ‘REDUCING MONITORING GAPS AT THE AQUIFER-RIVER INTERFACE’ (1) · Comparative analysis of relationships between NLDAS-2 forcings and model outputs (1) · Constraining saturated hydraulic transmissivity values by means of maximum saturated area mapping and maximum subsurface discharge: long-term simulation in the Amazon basin: CONSTRAINING SATURATED HYDRAULIC TRANSMISSIVITY VALUES (1) · Effect of spatial resolution on regionalization of hydrological model parameters: EFFECT OF SPATIAL RESOLUTION ON REGIONALIZATION (1) · Evaluating the performance of a WRF physics ensemble over South-East Australia (1) · Examining evapotranspiration trends in Africa (1) · Hydrologic response of a Hawaiian watershed to future climate change scenarios: HYDROLOGIC RESPONSE OF A HAWAIIAN WATERSHED TO CLIMATE CHANGE (1) · Impact of climate change on streamflow in the arid Shiyang River Basin of northwest China: IMPACT OF CLIMATE CHANGE (1) · Interactions between stationary waves and ice sheets: linear versus nonlinear atmospheric response (1) · Modeling the runoff and glacier mass balance in a small watershed on the Central Tibetan Plateau, China, from 1955 to 2008: MODELING RUNOFF AND GLACIER VARIATION IN A BASIN ON TIBETAN PLATEAU (1) · Modelling of groundwater flow in heterogeneous porous media by finite element method (1) · Modelling spatial and temporal variability of hydrologic impacts of climate change in the Fraser River basin, British Columbia, Canada: HYDROLOGIC IMPACTS OF CLIMATE CHANGE IN THE FRASER RIVER BASIN (1) · Modelling the rainfall-runoff process of the Mara River basin using the Soil and Water Assessment Tool: MARA RIVER BASIN: RAINFALL-RUNOFF PROCESS (1) · Multivariate approaches optimize locations of groundwater pumping facilities for different hydrogeological scales: Multivariate Approaches Optimize Locations (1) · Reduction of systematic biases in regional climate downscaling through ensemble forcing (1) · Sensitivity of the Weather Research and Forecasting (WRF) model to downscaling ratios and storm types in rainfall simulation: SENSITIVITY OF WRF MODEL IN RAINFALL SIMULATION (1) · The West African monsoon onset in 2006: sensitivity to surface albedo, orography, SST and synoptic scale dry-air intrusions using WRF (1) · The effect of groundwater forcing on hyporheic exchange: Reply to comment on ‘Munz M, Krause S, Tecklenburg C, Binley A. Reducing monitoring gaps at the aquifer-river interface by modelling groundwater-surfacewater exchange flow patterns. Hydrological Pro: THE EFFECT OF GROUNDWATER FORCING ON HYPORHEIC EXCHANGE (1) · The maize evapotranspiration in the background of climate change: a case study in arid area (1) · Tropical-temperate interactions over southern Africa simulated by a regional climate model (1) · Uncertainties in simulating regional climate of Southern Africa: sensitivity to physical parameterizations using WRF (1) · Use of variability modes to evaluate AR4 climate models over the Euro-Atlantic region (1) · WRF ensemble downscaling seasonal forecasts of China winter precipitation during 1982–2008 (1) · WRF high resolution dynamical downscaling of ERA-Interim for Portugal (1)
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http://doi.wiley.com/10.1002/hyp.8156 (1) · http://doi.wiley.com/10.1002/hyp.8166 (1) · http://doi.wiley.com/10.1002/hyp.8240 (1) · http://doi.wiley.com/10.1002/hyp.8247 (1) · http://doi.wiley.com/10.1002/hyp.8256 (1) · http://doi.wiley.com/10.1002/hyp.8307 (1) · http://doi.wiley.com/10.1002/hyp.8328 (1) · http://doi.wiley.com/10.1002/hyp.8378 (1) · http://doi.wiley.com/10.1002/hyp.8407 (1) · http://doi.wiley.com/10.1002/hyp.8424 (1) · http://doi.wiley.com/10.1002/hyp.9205 (1) · http://doi.wiley.com/10.1002/hyp.9283 (1) · http://doi.wiley.com/10.1002/hyp.9343 (1) · http://link.springer.com/10.1007/s00382-011-1004-6 (1) · http://link.springer.com/10.1007/s00382-011-1006-4 (1) · http://link.springer.com/10.1007/s00382-011-1055-8 (1) · http://link.springer.com/10.1007/s00382-011-1190-2 (1) · http://link.springer.com/10.1007/s00382-011-1241-8 (1) · http://link.springer.com/10.1007/s00382-011-1244-5 (1) · http://link.springer.com/10.1007/s00382-011-1255-2 (1) · http://link.springer.com/10.1007/s00382-011-1277-9 (1) · http://link.springer.com/10.1007/s00382-011-1284-x (1) · http://link.springer.com/10.1007/s00382-012-1299-y (1) · http://link.springer.com/10.1007/s00382-012-1314-3 (1) · http://link.springer.com/10.1007/s00382-012-1315-2 (1) · https://doi.org/10.1007/s00382-011-1077-2 (1) · https://onlinelibrary.wiley.com/doi/10.1002/hyp.8161 (1) · https://onlinelibrary.wiley.com/doi/10.1002/hyp.8214 (1) · https://onlinelibrary.wiley.com/doi/10.1002/hyp.8410 (1) · https://onlinelibrary.wiley.com/doi/10.1002/hyp.9271 (1)
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