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, ; (1) ·
Abdul-Wahab, Sabah; Sappurd, Ali; Al-Damkhi, Ali; (1) ·
Feng, Jianlong; Jiang, Wensheng; Bian, Changwei; (1) ·
Flesch, Thomas K.; Reuter, Gerhard W.; (1) ·
Gallagher, Sarah; Gleeson, Emily; Tiron, Roxana; McGrath, Ray; Dias, Frédéric; (1) ·
Gaur, Shishir; Chahar, B.R.; Graillot, Didier; (1) ·
Guo, H.; Ling, Z. H.; Cheung, K.; Jiang, F.; Wang, D. W.; Simpson, I. J.; Barletta, B.; Meinardi, S.; Wang, T. J.; Wang, X. M.; Saunders, S. M.; Blake, D. R.; (1) ·
Harding, Keith J.; Snyder, Peter K.; (1) ·
Hayashi, Seiji; Murakami, Shogo; Kai-Qin, Xu; Watanabe, Masataka; Bao-Hua, Xu; (1) ·
Hussain, Jamshad; Khaliq, Tasneem; Ahmad, Ashfaq; Akhtar, Javed; Lightfoot, David A.; (1) ·
Lee, Junhong; Hong, Jinkyu; Noh, Yign; Jiménez, Pedro A.; (1) ·
Li, Jiangyu; Zhang, Shaoqing; (1) ·
Li, M.; Ma, Y.; Hu, Z.; Ishikawa, H.; Oku, Y.; (1) ·
Li, Nan; Lu, Yilei; Liao, Hong; He, Qingyang; Li, Jingyi; Long, Xin; Ko, Fung-Chi; (1) ·
Liou, K. N.; Gu, Y.; Leung, L. R.; Lee, W. L.; Fovell, R. G.; (1) ·
Reynolds, Jennifer; Clarizia, Maria Paola; Santi, Emanuele; (1) ·
Song, Youhong; Birch, Colin; Qu, Shanshan; Dohert, Al; Hanan, Jim; (1) ·
Steele, C. J.; Dorling, S. R.; von Glasow, R.; Bacon, J.; (1) ·
Wang, Zhifeng; Zhou, Liangming; Dong, Sheng; Wu, Lunyu; Li, Zhanbin; Mou, Lin; (1) ·
Wen, Xiaohang; Lu, Shihua; Jin, Jiming; (1) ·
Xu, Xiyan; Riley, William J.; Koven, Charles D.; Billesbach, Dave P.; Chang, Rachel Y.-W.; Commane, Róisín; Euskirchen, Eugénie S.; Hartery, Sean; Harazono, Yoshinobu; Iwata, Hiroki; McDonald, Kyle C.; Miller, Charles E.; Oechel, Walter C.; Poulter, Benjamin; Raz-Yaseef, Naama; Sweeney, Colm; Torn, Margaret; Wofsy, Steven C.; Zhang, Zhen; Zona, Donatella; (1) ·
You, Y.Y.; Jin, W.B.; Xiong, Q.X.; Xue, L.; Ai, T.C.; Li, B.L.; (1)
A WRF simulation of the impact of 3-D radiative transfer on surface hydrology over the Rocky Mountains and Sierra Nevada (1) ·
A multi-scale comparison of modeled and observed seasonal methane emissions in northern wetlands (1) ·
Analysis and Modelling of the Effects of Water Stress on Maize Growth and Yield in Dryland Conditions (1) ·
Application of California Puff (CALPUFF) model: a case study for Oman (1) ·
Characterization of photochemical pollution at different elevations in mountainous areas in Hong Kong (1) ·
Combined use of groundwater modeling and potential zone analysis for management of groundwater (1) ·
Daily Runoff Simulation by an Integrated Catchment Model in the Middle and Lower Regions of the Changjiang Basin, China (1) ·
Idealized WRF model sensitivity simulations of sea breeze types and their effects on offshore windfields (1) ·
Implementation of a roughness sublayer parameterization in the Weather Research and Forecasting model (WRF version 3.7.1) and its evaluation for regional climate simulations (1) ·
Integrating Remote Sensing Data with WRF for Improved Simulations of Oasis Effects on Local Weather Processes over an Arid Region in Northwestern China (1) ·
Mitigation of model bias influences on wave data assimilation with multiple assimilation systems using WaveWatch III v5.16 and SWAN v41.20 (1) ·
Modeling the Atmospheric Response to Irrigation in the Great Plains. Part II: The Precipitation of Irrigated Water and Changes in Precipitation Recycling (1) ·
Numerieal prediction of storm surge in the Qingdao area under the impact of climate change (1) ·
Performance of four crop model for simulations of wheat phenology, leaf growth, biomass and yield across planting dates (1) ·
Prediction of Cohesive Sediment Transport and Flow Resistance Around Artificial Structures of the Beolgyo Stream Estuary (1) ·
Simulation and Validation of Non-point Source Nitrogen and Phosphorus Loads under Different Land Uses in Sihu Basin, Hubei Province, China (1) ·
Snow distribution over the Namco lake area of the Tibetan Plateau (1) ·
Twenty-first century wave climate projections for Ireland and surface winds in the North Atlantic Ocean (1) ·
WRF Model Simulation of Two Alberta Flooding Events and the Impact of Topography (1) ·
WRF-Chem modeling of particulate matter in the Yangtze River Delta region: Source apportionment and its sensitivity to emission changes (1) ·
Wind Speed Estimation From CYGNSS Using Artificial Neural Networks (1) ·
Wind wave characteristics and engineering environment of the South China Sea (1)
Advances in Science and Research (1) ·
Atmospheric Chemistry and Physics (3) ·
Biogeosciences (1) ·
Clean Technologies and Environmental Policy (1) ·
Fisheries and aquatic sciences (1) ·
Geoscientific Model Development (2) ·
Hydrology and Earth System Sciences (1) ·
IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing (1) ·
International Journal of Applied Earth Observation and Geoinformation (1) ·
Journal of Hydrologic Engineering (1) ·
Journal of Hydrometeorology (3) ·
Journal of Ocean University of China (2) ·
PLOS ONE (2) ·
Plant Production Science (1) ·
Procedia Environmental Sciences (1)
1035–1054 (1) ·
11709–11721 (1) ·
127–139 (1) ·
167–181 (1) ·
1687–1703 (1) ·
177–189 (1) ·
1781–1797 (1) ·
199–208 (1) ·
2023–2030 (1) ·
3881–3898 (1) ·
443–461 (1) ·
5043–5056 (1) ·
521–536 (1) ·
539–551 (1) ·
573–587 (1) ·
695–708 (1) ·
708–716 (1) ·
75–80 (1) ·
846–862 (1) ·
893–900 (1) ·
e0197546 (1) ·
e0208944 (1)
http://ascelibrary.org/doi/10.1061/%28ASCE%291084-0699%282008%2913%3A9%28846%29 (1) ·
http://link.springer.com/10.1007/s10098-010-0283-7 (1) ·
http://link.springer.com/10.1007/s11802-014-2222-4 (1) ·
http://link.springer.com/10.1007/s11802-014-2331-0 (1) ·
https://asr.copernicus.org/articles/13/75/2016/ (1) ·
https://doi.org/10.5657/FAS.2010.13.2.167 (1) ·
https://dx.plos.org/10.1371/journal.pone.0197546 (1) ·
https://dx.plos.org/10.1371/journal.pone.0208944 (1) ·
https://gmd.copernicus.org/articles/13/1035/2020/ (1) ·
https://ieeexplore.ieee.org/document/8984235/ (1) ·
https://journals.ametsoc.org/jhm/article/13/2/573/70191/Integrating-Remote-Sensing-Data-with-WRF-for (1) ·
https://journals.ametsoc.org/jhm/article/13/2/695/70223/WRF-Model-Simulation-of-Two-Alberta-Flooding (1) ·
https://journals.ametsoc.org/jhm/article/13/6/1687/5745/Modeling-the-Atmospheric-Response-to-Irrigation-in (1) ·
https://linkinghub.elsevier.com/retrieve/pii/S0303243410001042 (1) ·
https://linkinghub.elsevier.com/retrieve/pii/S1878029612001739 (1) ·
https://www.atmos-chem-phys.net/13/11709/2013/ (1) ·
https://www.atmos-chem-phys.net/13/3881/2013/ (1) ·
https://www.atmos-chem-phys.net/13/443/2013/ (1) ·
https://www.biogeosciences.net/13/5043/2016/ (1) ·
https://www.geosci-model-dev.net/13/521/2020/ (1) ·
https://www.hydrol-earth-syst-sci.net/13/2023/2009/ (1) ·
https://www.tandfonline.com/doi/full/10.1626/pps.13.199 (1)
10.1007/s10098-010-0283-7 (1) ·
10.1007/s11802-014-2222-4 (1) ·
10.1007/s11802-014-2331-0 (1) ·
10.1016/j.jag.2010.09.001 (1) ·
10.1016/j.proenv.2012.01.172 (1) ·
10.1061/(ASCE)1084-0699(2008)13:9(846) (1) ·
10.1109/JSTARS.2020.2968156 (1) ·
10.1175/JHM-D-10-05001.1 (1) ·
10.1175/JHM-D-11-035.1 (1) ·
10.1175/JHM-D-11-099.1 (1) ·
10.1371/journal.pone.0197546 (1) ·
10.1371/journal.pone.0208944 (1) ·
10.1626/pps.13.199 (1) ·
10.5194/acp-13-11709-2013 (1) ·
10.5194/acp-13-3881-2013 (1) ·
10.5194/acp-13-443-2013 (1) ·
10.5194/asr-13-75-2016 (1) ·
10.5194/bg-13-5043-2016 (1) ·
10.5194/gmd-13-1035-2020 (1) ·
10.5194/gmd-13-521-2020 (1) ·
10.5194/hess-13-2023-2009 (1) ·
10.5657/FAS.2010.13.2.167 (1)
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