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19
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Abedi Koupai, J.; Golabchian, M.; (1) ·
Abraham, Marykutty; Mohan, S.; (1) ·
Ansari, Tabish Umar; Wild, Oliver; Li, Jie; Yang, Ting; Xu, Weiqi; Sun, Yele; Wang, Zifa; (1) ·
Arumugam, K.; Karthika, T.; Elangovan, K.; Sangeetha, R.K.; Vikashini, S.; (1) ·
Behrooz-Koohenjani, Siavash; Samani, Nozar; Kompani-Zare, Mazda; (1) ·
Chen, Lei; Zhu, Jia; Liao, Hong; Gao, Yi; Qiu, Yulu; Zhang, Meigen; Liu, Zirui; Li, Nan; Wang, Yuesi; (1) ·
Chen, Ziyue; Chen, Danlu; Kwan, Mei-Po; Chen, Bin; Gao, Bingbo; Zhuang, Yan; Li, Ruiyuan; Xu, Bing; (1) ·
Dowlatabadi, S.; Zomorodian, S. M. A.; (1) ·
Du, Mei; Hou, Yijun; Guo, Yunxia; Wang, Kai; (1) ·
Gaaloul, N.; (1) ·
Hashemi, H.; Uvo, C. B.; Berndtsson, R.; (1) ·
Heikenfeld, Max; White, Bethan; Labbouz, Laurent; Stier, Philip; (1) ·
Kambhammettu, Bvn. P.; King, James P.; Schmid, Wolfgang; (1) ·
Mekpruksawong, Phattaporn; Ichikawa, Tsutomu; Yamada, Tadashi; (1) ·
Neupane, P. K.; Mondal, N. C.; Manglik, A.; (1) ·
Neupane, Rabindra; (1) ·
Saghravani, Seyed Reza; Mustapha, Sa’ari B.; Ibrahim, Shaharin B.; Yusoff, Mohd. Kamil; Saghravani, Seyed Fazlolah; (1) ·
Santos, Manoel Roberval Pimentel; Santiago, Maria Marlucia Freitas; Mendonça, Luiz Alberto Ribeiro; Frischkorn, Horst; Mendes Filho, Josué; (1) ·
Schuyler, Travis J.; Gohari, S. M. Iman; Pundsack, Gary; Berchoff, Donald; Guzman, Marcelo I.; (1) ·
Xue, Chen; Chen, Bing; Wu, Hongjing; (1) ·
Zhang, Jing; Ross, Mark; Trout, Ken; (1)
Aerosol effects on deep convection: the propagation of aerosol perturbations through convective cloud microphysics (1) ·
Assessing the formation and evolution mechanisms of severe haze pollution in the Beijing–Tianjin–Hebei region using process analysis (1) ·
Certification Tests of MODFLOW Implementation in the Integrated Hydrologic Model (1) ·
Combination of Tank Model and 3-D Unconfined Groundwater Flow (GWF) Simulation in Tropical Floodplain, THAILAND (1) ·
Coupled modeling approach to assess climate change impacts on groundwater recharge and adaptation in arid areas (1) ·
Effectiveness of check dam and percolation pond with percolation wells for artificial groundwater recharge using groundwater models (1) ·
Effectiveness of short-term air quality emission controls: a high-resolution model study of Beijing during the Asia-Pacific Economic Cooperation (APEC) summit period (1) ·
Envisaging the Sustainability of an Aquifer by Developing Groundwater Flow Model for a Part of ChoutuppalMandal, Nalgonda District, Telangana, India (1) ·
Estimation of Hydrodynamic Parameters of Groundwater Resources in Kouhpayeh- Segzi Watershed Using MODFLOW (1) ·
GIS-Based Numerical Modeling of Aquifer Recharge and Saltwater Intrusion in Arid Southeastern Tunisia (1) ·
GROUNDWATER FLOW AND MULTI-COMPONENT REACTIVE TRANSPORT SIMULATION OF ACID MINE DRAINAGE AT A FORMER MINE SITE (1) ·
Grid-Size Dependency of Evapotranspiration Simulations in Shallow Aquifers: An Optimal Approach (1) ·
Groundwater Modelling Using Visual Modflow in Tirupur Region, Tamilnadu, India (1) ·
Modelagem do transporte de cloreto proveniente de esgoto urbano em um aquífero sedimentar usando MT3D: o caso da bateria de poços de Juazeiro do Norte (CE) (1) ·
Numerical Simulation and Risk Analysis of Coastal Inundation in Land Reclamation Areas: A Case Study of the Pearl River Estuary (1) ·
PHOSPHORUS MIGRATION IN AN UNCONFINED AQUIFER USING MODFLOW AND MT3DMS / FOSFORO PERNAŠOS VANDENINGAJAME HORIZONTE MODELIAVIMAS MODFLOW IR MT3DMS PROGRAMOMIS / МОДЕЛИРОВАНИЕ ПЕРЕНОСА ФОСФОРА С ПОДЗЕМНЫМИ ВОДАМИ С ПОМОЩЬЮ ПРОГРАММ MODFLOW И MT3DMS (1) ·
Parameter Uncertainty Analysis of Surface Flow and Sediment Yield in the Huolin Basin, China (1) ·
Steady flow rate to a partially penetrating well with seepage face in an unconfined aquifer (1) ·
The control of anthropogenic emissions contributed to 80 % of the decrease in PM<sub>2.5</sub> concentrations in Beijing from 2013 to 2017 (1) ·
Using a Balloon-Launched Unmanned Glider to Validate Real-Time WRF Modeling (1) ·
Utilization of Recharge Values Derived from SWAT Model in Mathematical Model of MODFLOW to Simulate Groundwater Flow of Firoozabad Plain (1)
Atmospheric Chemistry and Physics (4) ·
Engenharia Sanitaria e Ambiental (1) ·
Hydrogeology Journal (1) ·
Hydrology and Earth System Sciences (1) ·
International Journal of GEOMATE (1) ·
JOURNAL OF JAPAN SOCIETY OF HYDROLOGY & WATER RESOURCES (1) ·
Journal of Environmental Engineering and Landscape Management (1) ·
Journal of Hydrologic Engineering (4) ·
Journal of Ocean University of China (1) ·
Journal of Water and Soil Science (2) ·
Nature Environment and Pollution Technology (1) ·
Nepal Journal of Science and Technology (1) ·
Sensors (1) ·
Water Supply (1)
None (1) ·
04014018 (1) ·
10845–10864 (1) ·
1221–1234 (1) ·
1224–1236 (1) ·
13519–13533 (1) ·
1423–1433 (1) ·
1914 (1) ·
2107–2115 (1) ·
222–233 (1) ·
2601–2627 (1) ·
271–277 (1) ·
281–293 (1) ·
283–292 (1) ·
337–348 (1) ·
372–382 (1) ·
4165–4181 (1) ·
643–648 (1) ·
777–789 (1) ·
811–821 (1) ·
8651–8668 (1)
http://ascelibrary.org/doi/10.1061/%28ASCE%29HE.1943-5584.0000648 (1) ·
http://ascelibrary.org/doi/10.1061/%28ASCE%29HE.1943-5584.0000822 (1) ·
http://ascelibrary.org/doi/10.1061/%28ASCE%29HE.1943-5584.0000909 (1) ·
http://ascelibrary.org/doi/10.1061/%28ASCE%29HE.1943-5584.0000957 (1) ·
http://jstnar.iut.ac.ir/article-1-3024-en.html (1) ·
http://jstnar.iut.ac.ir/article-1-3082-en.html (1) ·
http://link.springer.com/10.1007/s10040-011-0717-2 (1) ·
http://link.springer.com/10.1007/s11802-020-4426-0 (1) ·
http://neptjournal.com/upload-images/(8)B-3683.pdf (1) ·
http://www.jstage.jst.go.jp/article/jjshwr/19/5/19_5_372/_article (1) ·
http://www.scielo.br/scielo.php?script=sci_arttext&pid=S1413-41522014000300283&lng=pt&tlng=pt (1) ·
https://acp.copernicus.org/articles/19/10845/2019/ (1) ·
https://acp.copernicus.org/articles/19/13519/2019/ (1) ·
https://acp.copernicus.org/articles/19/2601/2019/ (1) ·
https://acp.copernicus.org/articles/19/8651/2019/ (1) ·
https://geomatejournal.com/geomate/article/view/1105/949 (1) ·
https://hess.copernicus.org/articles/19/4165/2015/ (1) ·
https://iwaponline.com/ws/article/19/7/2107/68069/Effectiveness-of-check-dam-and-percolation-pond (1) ·
https://journals.vgtu.lt/index.php/JEELM/article/view/5346 (1) ·
https://www.mdpi.com/1424-8220/19/8/1914 (1) ·
https://www.nepjol.info/index.php/NJST/article/view/29824 (1)
10.1007/s10040-011-0717-2 (1) ·
10.1007/s11802-020-4426-0 (1) ·
10.1061/(ASCE)HE.1943-5584.0000648 (1) ·
10.1061/(ASCE)HE.1943-5584.0000822 (1) ·
10.1061/(ASCE)HE.1943-5584.0000909 (1) ·
10.1061/(ASCE)HE.1943-5584.0000957 (1) ·
10.1590/S1413-41522014019000000698 (1) ·
10.18869/acadpub.jstnar.19.71.337 (1) ·
10.18869/acadpub.jstnar.19.72.24 (1) ·
10.2166/ws.2019.091 (1) ·
10.21660/2020.76.48092 (1) ·
10.3126/njst.v19i1.29824 (1) ·
10.3178/jjshwr.19.372 (1) ·
10.3390/s19081914 (1) ·
10.3846/16486897.2011.634053 (1) ·
10.46488/NEPT.2020.v19i04.008 (1) ·
10.5194/acp-19-10845-2019 (1) ·
10.5194/acp-19-13519-2019 (1) ·
10.5194/acp-19-2601-2019 (1) ·
10.5194/acp-19-8651-2019 (1) ·
10.5194/hess-19-4165-2015 (1)
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