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Barros Atuesta, Yennis Yulieth; Saavedra Mejia, Victor Jose; Álvarez-Silva, Óscar; Cardona Orozco, Yuley; Cáceres-Euse, Alejandro; Osorio, Andres F; Arbeláez Salazar, Felipe; (1) ·
Bista, Sunil; Singh, Umesh; Kayastha, Nagendra; Ghimire, Bhola NS; Talchabhadel, Rocky; (1) ·
Butakov, N.Y.; Rubinstein, K.G.; (1) ·
Dinan, T.A.; Virgianto, R.H.; Ferdiansyah, E.; Veanti, D.P.O.; (1) ·
Duong, Trang Minh; Meynadier, Remi; Ranasinghe, Roshanka; Loaiza, Manuel Andres Diaz; Bricker, Jeremy D.; Reyns, Johan; Luijendijk, Arjen; Bamunawala, Janaka; (1) ·
Gamarro, Harold; Ortiz, Luis; González, Jorge E.; (1) ·
Guo, Hao; Huang, Zhigang; Tan, Mengchao; Ruan, Hongyan; Awe, Gabriel Oladele; Are, Kayode Steven; Abegunrin, Toyin Peter; Hussain, Zahid; Kuang, Zhaomin; Liu, Deli; (1) ·
Gusalim, Lili; Asbar, Asbar; Danial, Danial; (1) ·
Ivan Aliyatul Humam; Abdul Chalid; Bagus Prasetyo; (1) ·
Ivanov, Vladimir; Dimitrova, Reneta; Georgieva, Ivelina; Gadzhev, Georgi; Ganev, Kostadin; Miloshev, Nikolay; (1) ·
Kovalets, I.V.; Khalchenkov, O.V.; Maystrenko, S.Ya.; Dontsov-Zahreba, T.O.; Khurtsylava, K.V.; Synkevych, R.O.; Udovenko, O.I.; (1) ·
Kpaikpai, B.; Sun, J.; Zhu, J.; Banna, M.; Ogou, F.K.; Vuguziga, F.; Ntwali, D.; (1) ·
Lai, Chengguang; Liao, Yaoxing; Wang, Zhaol; Chen, Xiaohong; (1) ·
Li, Chengzhe; Wang, Jun; Zhang, Huanxin; Diner, David J.; Hasheminassab, Sina; Janechek, Nathan; (1) ·
Liu, Hao‐Yan; Tan, Zhe‐Min; Wang, Yuqing; Tang, Jianping; Satoh, Masaki; Lei, Lili; Gu, Jian‐Feng; Zhang, Yi; Nie, Gao‐Zhen; Chen, Qi‐Zhi; (1) ·
Maharjan, Ashish; Shakya, Ashish; (1) ·
McCandless, Tyler C; Kosovic, Branko; Petzke, William; (1) ·
McGuire, Mary Pat; Grimley, David A; Phillips, Andrew C; Stillwell, Ashlynn S; William, Reshmina; Shen, Jinyu; Schneemann, Margaret; (1) ·
Meech, Scott; Alessandrini, Stefano; Chapman, William; Delle Monache, Luca; (1) ·
Mosaddad, Seyed Majid; (2) ·
Mulyadi, Dodi; Rosadi, Peter Eka; (1) ·
Myslenkov ., S.A; (1) ·
Nesterov, E.S.; Zhupanov, V.D.; Fedorenko, A.V.; (1) ·
Nguyen, Thao Bach; Duc, Nhan Dang; Dao, Bang Duc; (1) ·
Placide, Gatoto; Lollchund, Michel Roddy; (1) ·
Pokhrel, Rabindra; Walker, Andy; González, Jorge E.; (1) ·
Rybalko, A.D.; Myslenkov, S.A.; Arkhipkin, V.S.; (1) ·
Suciaty, Fitri; Dharmawan, Zuriat; Nugroho, Eka Oktariyanto; (1) ·
Vega, M.J.M.; Atencia, J.D. de la; Corrales, L.M.G.; (1) ·
Wang, Yanping; Jiang, Wensheng; Liu, Xing; Liao, Qi; Yu, Ge; Bian, Changwei; (1) ·
Wróbel, Michał; Brandyk, Andrzej; Tereba, Anna; (1) ·
Xue, Lulin; Wang, Yaping; Newman, Andrew J.; Ikeda, Kyoko; Rasmussen, Roy M.; Giambelluca, Thomas W.; Longman, Ryan J.; Monaghan, Andrew J.; Clark, Martyn P.; Arnold, Jeffrey R.; (1) ·
Yulizar, Yulizar; Kumar Singh, Shailesh; (3)
A Hybrid Machine Learning/Physics‐Based Modeling Framework for 2‐Week Extended Prediction of Tropical Cyclones (1) ·
A New Methodology to Assess Building Integrated Roof Top Photovoltaic Installations at City Scales: The Tropical Coastal City Case (1) ·
Adapting to Extreme Heat: Social, Atmospheric, and Infrastructure Impacts of Air-Conditioning in Megacities—The Case of New York City (1) ·
An evaluation of the reliability of the Weather Research Forecasting (WRF) model in predicting wind data: a case study of Burundi (1) ·
Analisis Potensi Energi Angin Menggunakan Model Weather Research Forecasting – Advanced Research WRF (WRF-ARW) di Rote Ndao (1) ·
Analysis of seasonal variability in wind wave spectra in the Black and Azov Seas based on classification (1) ·
Crop resilience to climate change: A study of spatio-temporal variability of sugarcane yield in a subtropical region, China (1) ·
Effects of source digital elevation models in assessment of gross runoff-river hydropower potential: A case study of West Rapti Basin, Nepal (1) ·
Enhancement of WRF Model Using CUDA (1) ·
Enhancing wildfire spread modelling by building a gridded fuel moisture content product with machine learning (1) ·
Estimation of future storm surge inundation and effects of the adaptation measures in Qingdao, China (1) ·
Fast Simulation of Urban Waterlogging Based on Multi-Objective Machine Learning Model (1) ·
Forecasting sea surface temperature and 2 m air temperature with a coupled ocean-atmosphere system for the White Sea region in summer (1) ·
How will rainfall change over Hawai‘i in the future? High-resolution regional climate simulation of the Hawaiian Islands (1) ·
Hydrodynamics Modelling for Dock Layout Planning in Fish Landing Port (PPI) Api-Api, East Kalimantan (1) ·
Hydrological model parameterising using various automatic calibration techniques (3) ·
Improvement of Surface PM 2.5 Diurnal Variation Simulations in East Africa for the MAIA Satellite Mission (1) ·
MARHYD: Magdalena River Hidrodynamic model in Delft3D. Results of Case 2 (salinity and water level) (1) ·
Mesoscale and Large-Eddy Simulation of the Boundary Layer Process of Cumulus Development over Naqu, Tibetan Plateau Part A: Comparison Between Simulation and Observation (1) ·
Modeling of the wind waves in the Laptev, East Siberian and Chukchi seas (1) ·
Modeling the characteristics of the Caspian Sea ice cover based on the CICE model (1) ·
Modelling of the heat and the cold risks in Sofia and Varna – preliminary results (1) ·
Modflow model in the assessment of water conditions in forest areas (1) ·
On detailed representation of flood defences and flow-wave coupling in coastal flood modelling (1) ·
PEMODELAN AIR TANAH PADA TAMBANG TERBUKA ANDESIT DI DESA DADIREJO, KECAMATAN BAGELEN, KABUPATEN PURWOREJO, PROVINSI JAWA TENGAH (1) ·
Pengaruh Angin Monson Terhadap Kelayakan Laut Di Teluk Bone Provinsi Sulawesi Selatan (1) ·
Post-processing rainfall in a high-resolution simulation of the 1994 Piedmont flood (1) ·
Representación histórica de la hidrología de la cuenca del río Canalete, Córdoba, Colombia, considerando la evolución del uso del suelo (1) ·
Retrofitting urban land through integrative, subsoils-based planning of green stormwater infrastructure: a research framework (1) ·
Simulation of secondary radioactive air pollution in Ukraine due to the wind lift of radionuclides. (1) ·
The Modelling of Groundwater Table Management for Canal Blocking Scenarios In Sub Peatland Hydrological Unit (1) ·
Thermocline Formation in the Persian Gulf (2) ·
Zrozumienie mechanizmów pochodzenia słonej wody w przybrzeżnych warstwach wodonośnych obszaru Da Nang (środkowy Wietnam) (1)
None (1) ·
ACS ES&T Air (1) ·
ASME Journal of Engineering for Sustainable Buildings and Cities (2) ·
BMC Environmental Science (1) ·
Bulletin of Atmospheric Science and Technology (2) ·
Environmental Research: Infrastructure and Sustainability (1) ·
Frontiers of Chinese Water Sciences (1) ·
GeoStudies (1) ·
Hydrometeorological research and forecasting (4) ·
INTERNATIONAL CONFERENCE ON GREEN TECHNOLOGY AND DESIGN (ICGTD) 2020 (1) ·
Interdisciplinary Journal of Innovation in Nepalese Academia (1) ·
International Journal of Hydrology Science and Technology (1) ·
International Journal of Science, Technology & Management (1) ·
Inżynieria Mineralna (1) ·
JURNAL ILMIAH WAHANA LAUT LESTARI (JIWaLL) (1) ·
Journal of Engineering Issues and Solutions (1) ·
Journal of Geophysical Research: Machine Learning and Computation (1) ·
Jurnal Inovasi Pertambangan dan Lingkungan (1) ·
Machine Learning: Science and Technology (1) ·
Marine Development (1) ·
Mathematical machines and systems (1) ·
Revista Environment & Technology (1) ·
Smart Agricultural Technology (1) ·
Space Science Journal (1) ·
Sustainable Earth Review (3) ·
Sustainable Marine Structures (2) ·
The Climate of Tropical Indonesia Maritime Continent Journal (1) ·
npj Natural Hazards (1)
None (3) ·
01–18 (1) ·
035003 (1) ·
035010 (1) ·
1 (1) ·
100014 (1) ·
106–128 (1) ·
16–22 (1) ·
19-26 (1) ·
1–15 (3) ·
1–16 (1) ·
223–233 (1) ·
289–297 (1) ·
373–385 (1) ·
38–59 (1) ·
43–57 (1) ·
459–490 (1) ·
57–70 (1) ·
59–70 (1) ·
67–86 (1) ·
85–95 (1) ·
87–101 (1) ·
96–107 (1) ·
None (9)
http://epublications.itenas.ac.id/index.php/icgtd2020/article/view/78 (1) ·
http://link.springer.com/10.1007/s42865-020-00022-5 (1) ·
http://link.springer.com/10.1007/s42865-020-00028-z (1) ·
http://method.meteorf.ru/publ/tr/tr383/htm/04.htm (1) ·
http://www.immsp.kiev.ua/publications/articles/2021/2021_1/01_21_Kovalets.pdf (1) ·
http://www.inderscience.com/link.php?id=10042853 (1) ·
http://www.scifootprint.com/FCWS/Contribution/PeriodicalDirectoryDetails_2e4e5167-5852-4aaa-be76-0467ab2ff7bd.html (1) ·
https://agupubs.onlinelibrary.wiley.com/doi/10.1029/2024JH000207 (1) ·
https://asmedigitalcollection.asme.org/sustainablebuildings/article/doi/10.1115/1.4045347/1066160/A-New-Methodology-to-Assess-Building-Integrated (1) ·
https://asmedigitalcollection.asme.org/sustainablebuildings/article/doi/10.1115/1.4048175/1086416/Adapting-to-Extreme-Heat-Social-Atmospheric-and (1) ·
https://bmcenvsci.biomedcentral.com/articles/10.1186/s44329-024-00001-7 (1) ·
https://data.mendeley.com/datasets/r99xkp2czc/1 (1) ·
https://geostudies.net/article/113477/ (1) ·
https://ijstm.inarah.co.id/index.php/ijstm/article/view/67 (1) ·
https://iopscience.iop.org/article/10.1088/2632-2153/aba480 (1) ·
https://iopscience.iop.org/article/10.1088/2634-4505/ac27bd (1) ·
https://journal.uinjkt.ac.id/index.php/jipl/article/view/22761 (1) ·
https://jurnal.fpik.umi.ac.id/index.php/jiwall/article/view/426 (1) ·
https://jurnal.stmkg.ac.id/index.php/ctimc/article/view/329 (1) ·
https://link.springer.com/10.1007/s44312-023-00011-0 (1) ·
https://linkinghub.elsevier.com/retrieve/pii/S2772375521000149 (1) ·
https://method.meteorf.ru/publ/tr/tr387/html/03/03.html (1) ·
https://method.meteorf.ru/publ/tr/tr387/html/04/04.html (1) ·
https://method.meteorf.ru/publ/tr/tr391/html/02.html (1) ·
https://ojs.nassg.org/index.php/sms/article/view/95 (2) ·
https://pubs.acs.org/doi/10.1021/acsestair.3c00008 (1) ·
https://revistaet.environmenttechnologyfoundation.org/index.php/envitech/article/view/29 (1) ·
https://sustainearth.sbu.ac.ir/article_101109.html (3) ·
https://www.inzynieriamineralna.com.pl/index.php/testowe/article/view/458 (1) ·
https://www.nature.com/articles/s44304-024-00016-9 (1) ·
https://www.nepjol.info/index.php/idjina/article/view/51963 (1) ·
https://www.nepjol.info/index.php/joeis/article/view/36822 (1) ·
https://www.opastpublishers.com/open-access-articles/mesoscale-and-largeeddy-simulation-of-the-boundary-layer-process-of-cumulus-development-over-naqu-tibetan-plateau-part-a.pdf (1)
10.1007/s42865-020-00022-5 (1) ·
10.1007/s42865-020-00028-z (1) ·
10.1007/s44312-023-00011-0 (1) ·
10.1016/j.atech.2021.100014 (1) ·
10.1021/acsestair.3c00008 (1) ·
10.1029/2024JH000207 (1) ·
10.1038/s44304-024-00016-9 (1) ·
10.1088/2632-2153/aba480 (1) ·
10.1088/2634-4505/ac27bd (1) ·
10.1115/1.4045347 (1) ·
10.1115/1.4048175 (1) ·
10.1186/s44329-024-00001-7 (1) ·
10.1504/IJHST.2021.10042853 (1) ·
10.15408/jipl.v1i2.22761 (1) ·
10.17632/r99xkp2czc.1 (1) ·
10.26760/icgtd2020.v1i1.78 (1) ·
10.29227/IM-2023-02-42 (1) ·
10.3126/idjina.v1i1.51963 (1) ·
10.3126/joeis.v1i1.36822 (1) ·
10.33096/jiwall.v1i1.426 (1) ·
10.33140/SSJ.01.02.02 (1) ·
10.34121/1028-9763-2021-1-96-107 (1) ·
10.36754/ctimc.v1i2.329 (1) ·
10.36956/sms.v1i2.95 (2) ·
10.37162/2618-9631-2022-1--57-70 (1) ·
10.37162/2618-9631-2023-1-67-86 (1) ·
10.37162/2618-9631-2023-1-87-101 (1) ·
10.37162/2618-9631-2024-1-24-40 (1) ·
10.3897/geostudies.1.e113477 (1) ·
10.46729/ijstm.v1i4.67 (1) ·
10.48014/fcws.20220827001 (1) ·
10.52547/sustainearth.1.4.1 (3) ·
10.56205/ret.1-1.3 (1)
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