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BibEntryCargo > Volume: 8 & Note : Auto downloaded ref at: 2020-06-07 or Auto downloaded ref at: 2024-09-08

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Firstname:
Achugbu, Ifeanyi Chukwudi; Olufayo, Ayorinde A.; Balogun, Ifeoluwa A.; Adefisan, Elijah A.; Dudhia, Jimy; Naabil, Edward; (1) · Ashkenazy, Yosef; Shilo, Elad; (1) · Chen, Guang; Zhao, Lihua; Mochida, Akashi; (1) · Collins, John; Farrimond, Brian; Anderson, Mark; Owens, Darryl; Bayliss, Darryl; (1) · Dodla, Venkata B.; Desamsetti, Srinivas; Yerramilli, Anjaneyulu; (1) · Eghdami, Masih; Barros, Ana P.; (1) · F, Colombo; G, Castorina; Mt, Caccamo; V, Insinga; E, Maiorana; S, Magazu; (1) · Farahani, Majid M.; Alizadeh, Omid; Khansalari, Sakine; Gharaylou, Maryam; (1) · Gao, Jiangbo; Xue, Yongkang; Wu, Shaohong; (1) · Hakim, Zainab Q.; Beig, Gufran; Reka, Srinivas; Romshoo, Shakil A.; Rashid, Irfan; (1) · Hasager, Charlotte; Astrup, Poul; Zhu, Rong; Chang, Rui; Badger, Merete; Hahmann, Andrea; (1) · Heath, Nicholas K.; Pleim, Jonathan E.; (1) · Kousis, Ioannis; Martilli, Alberto; Pisello, Anna Laura; (1) · Kumar, Awkash; Patil, Rashmi S.; Dikshit, Anil Kumar; Kumar, Rakesh; (1) · Mai, Xiaoping; Qiu, Xiaobin; Yang, Yi; Ma, Yuanyuan; (1) · Maulana, Muhammad Ikko Safrilda; Kristianto, Aries; (1) · Mejia Manrique, Said A.; Harmsen, Eric W.; Khanbilvardi, Reza M.; González, Jorge E.; (1) · Nishant, N.; Sherwood, S. C.; Geoffroy, O.; (1) · Nolan, David S.; Tulich, Stefan N.; Blanco, Joaquin E.; (1) · Obahoundje, Salomon; Youan Ta, Marc; Diedhiou, Arona; Amoussou, Ernest; Kouadio, Kouakou; (1) · Opio, Ronald; Sabiiti, Geoffrey; Nimusiima, Alex; Mugume, Isaac; Sansa-Otim, Julianne; (1) · Ouermi, T.A.J.; Kirby, Robert M.; Berzins, Martin; (1) · Pinho, José Luis da Silva; Pereira, António; Faria, Rolando; (1) · Politi, Nadia; Sfetsos, Athanasios; Vlachogiannis, Diamando; Nastos, Panagiotis T.; Karozis, Stylianos; (1) · Prislovsky, Taylor; Mercer, Andrew; (1) · Raghava Yakkala, Yagnesh; Nakamura, Tomohiro; Mitsudera, Humio; Kawashima, Masayuki; (1) · Román-Cascón, C.; Yagüe, C.; Sastre, M.; Maqueda, G.; Salamanca, F.; Viana, S.; (1) · Salamanca, F; Georgescu, M; Mahalov, A; Moustaoui, M; Wang, M; Svoma, B M; (1) · Schumacher, Vanucia; Fernández, Alfonso; Justino, Flavio; Comin, Alcimoni; (1) · Sharifi, M. A.; Souri, A. H.; (1) · Sikder, Safat; Hossain, Faisal; (1) · Sohrabinia, Mammatt; Rack, Wolfgang; Zawar-Reza, Peyman; (1) · Tuccella, P.; Curci, G.; Grell, G. A.; Visconti, G.; Crumeyrolle, S.; Schwarzenboeck, A.; Mensah, A. A.; (1) · Vanderwende, Brian J.; Kosović, Branko; Lundquist, Julie K.; Mirocha, Jeffrey D.; (1) · Volker, P. J. H.; Badger, J.; Hahmann, A. N.; Ott, S.; (1) · Xiang-Hui, Kong; Xun-Qiang, Bi; (1) · Yahya, K.; Wang, K.; Zhang, Y.; Kleindienst, T. E.; (1) · Zhang, Miao; Luo, Geping; Hamdi, Rafiq; Qiu, Yuan; Wang, Xinxin; Maeyer, Philippe De; Kurban, Alishir; (1) · Žabkar, R.; Honzak, L.; Skok, G.; Forkel, R.; Rakovec, J.; Ceglar, A.; Žagar, N.; (1)
Title:
A Comparison of HWRF, ARW and NMM Models in Hurricane Katrina (2005) Simulation (1) · A Sensitivity Study of High-Resolution Climate Simulations for Greece (1) · A hybrid LS-HE and LS-SVM model to predict time series of precipitable water vapor derived from GPS measurements (1) · A new chemistry option in WRF-Chem v. 3.4 for the simulation of direct and indirect aerosol effects using VBS: evaluation against IMPACT-EUCAARI data (1) · A simple lightning assimilation technique for improving retrospective WRF simulations (1) · Application of WRF/Chem over North America under the AQMEII Phase 2 – Part 2: Evaluation of 2010 application and responses of air quality and meteorology–chemistry interactions to changes in emissions and meteorology from 2006 to 2010 (1) · Assessing summertime urban air conditioning consumption in a semiarid environment (1) · Assessment of numerical model predictions of a severe weather in northern Iran: a case study (1) · Assessment of the weather research and forecasting model generalized parameterization schemes for advancement of precipitation forecasting in monsoon‐driven river basins (1) · Automated Quality Assurance Analysis: WRF–A Case Study (1) · Comparison of Microphysics Schemes on WRF-HAILCAST Model to Study Hailstone in Aeronautics (Case Study: Hail Strike on AirAsia A320-200, November 16, 2018) (1) · Deforestation Impacts on Orographic Precipitation in the Tropical Andes (1) · Dynamical Downscaling of the Twentieth Century Reanalysis for China? Climatic Means during 1981–2010 (1) · Evaluation of the high resolution WRF-Chem (v3.4.1) air quality forecast and its comparison with statistical ozone predictions (1) · Flood Impacts on Critical Infrastructure in a Coastal Floodplain in Western Puerto Rico during Hurricane María (1) · Formation and maintenance mechanisms of a thick snow band along the Okhotsk Sea coast of Hokkaido Island, Japan (1) · IT Technologies for Science Application: Using Meteorological Local Area Model to Contrast the Hydrogeological Risks (1) · ITCZ structure as determined by parameterized versus explicit convection in aquachannel and aquapatch simulations (1) · Impact of seasonal meteorology and averaging time on vehicular pollution modeling (1) · Impacts of Spectral Nudging Parameters on Dynamical Downscaling in Summer over Mainland China (1) · Modeling the spatiotemporal response of dew point temperature, air temperature and rainfall to land use land cover change over West Africa (1) · Modelling Radiative Coolers for the Built Environment in the Urban Context (1) · Numerical Simulations of the Impacts of Mountain on Oasis Effects in Arid Central Asia (1) · Observations and WRF simulations of fog events at the Spanish Northern Plateau (1) · Performance Optimization Strategies for WRF Physics Schemes Used in Weather Modeling (1) · Potential impacts on regional climate due to land degradation in the Guizhou Karst Plateau of China (1) · Quarter-Century Offshore Winds from SSM/I and WRF in the North Sea and South China Sea (1) · Radiative driving of shallow return flows from the ITCZ (1) · Sand Dune Albedo Feedback (1) · Sensitivity of Hydropower Generation to Changes in Climate and Land Use in the Mono Basin (West Africa) using CORDEX Dataset and WEAP Model (1) · Simulating effects of a wind‐turbine array using LES and RANS (1) · Soil moisture derived using two apparent thermal inertia functions over Canterbury, New Zealand (1) · The Explicit Wake Parametrisation V1.0: a wind farm parametrisation in the mesoscale model WRF (1) · UTILIZAÇÃO DE PREVISÕES DE PRECIPITAÇÃO DE MODELOS ATMOSFÉRICOS WRF, GFS E GEFS NA BACIA HIDROGRÁFICA DO RIO AVE (PORTUGAL) PARA GESTÃO OPERACIONAL DE UM SISTEMA DE DRENAGEM (1) · Urban Heat Island Simulations in Guangzhou, China, Using the Coupled WRF/UCM Model with a Land Use Map Extracted from Remote Sensing Data (1) · Using Blue Waters To Assess Non-Tornadic Outbreak Forecast Capability by Lead Time (1) · WRF High Resolution Dynamical Downscaling of Precipitation for the Central Andes of Chile and Argentina (1) · WRF Simulations of Extreme Rainfall over Uganda’s Lake Victoria Basin: Sensitivity to Parameterization, Model Resolution and Domain Size (1) · Winter Burst of Pristine Kashmir Valley Air (1)
Editors:
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http://link.springer.com/10.1007/s12517-014-1312-3 (1) · http://link.springer.com/10.1007/s12517-014-1716-0 (1) · http://link.springer.com/10.1007/s13198-017-0624-6 (1) · http://ojs.academypublisher.com/index.php/jsw/article/view/10839 (1) · http://remotesensing.spiedigitallibrary.org/article.aspx?doi=10.1117/1.JRS.8.083624 (1) · http://www.jocse.org/articles/8/3/5/ (1) · http://www.nature.com/articles/s41598-018-20601-z (1) · http://www.tandfonline.com/doi/full/10.1080/16742834.2015.11447255 (1) · https://agupubs.onlinelibrary.wiley.com/doi/10.1002/2015MS000560 (1) · https://agupubs.onlinelibrary.wiley.com/doi/10.1002/2015MS000606 (1) · https://agupubs.onlinelibrary.wiley.com/doi/10.1002/2016MS000652 (1) · https://agupubs.onlinelibrary.wiley.com/doi/10.1002/2016MS000678 (1) · https://agupubs.onlinelibrary.wiley.com/doi/10.1002/2016MS000735 (1) · https://asr.copernicus.org/articles/8/11/2012/ (1) · https://gmd.copernicus.org/articles/8/2095/2015/ (1) · https://gmd.copernicus.org/articles/8/2119/2015/ (1) · https://gmd.copernicus.org/articles/8/2749/2015/ (1) · https://iopscience.iop.org/article/10.1088/1748-9326/8/3/034022 (1) · https://iopscience.iop.org/article/10.1088/1748-9326/8/4/044037 (1) · https://journal2.um.ac.id/index.php/jpse/article/view/29788 (1) · https://link.springer.com/10.1007/s40710-021-00516-0 (1) · https://link.springer.com/10.1007/s40808-021-01094-8 (1) · https://onlinelibrary.wiley.com/doi/10.1002/adsu.202300523 (1) · https://portalseer.ufba.br/index.php/gesta/article/view/36638 (1) · https://www.frontiersin.org/article/10.3389/feart.2020.00328/full (1) · https://www.frontiersin.org/articles/10.3389/feart.2020.574754/full (1) · https://www.frontiersin.org/articles/10.3389/fenvs.2020.580159/full (1) · https://www.geosci-model-dev.net/8/3715/2015/ (1) · https://www.jstage.jst.go.jp/article/hrl/8/2/8_84/_article (1) · https://www.jstage.jst.go.jp/article/ijnc/8/2/8_301/_article (1) · https://www.mdpi.com/1660-4601/8/6/2447 (1) · https://www.mdpi.com/2071-1050/8/7/628 (1) · https://www.mdpi.com/2072-4292/8/9/769 (1) · https://www.mdpi.com/2073-4433/8/11/212 (1) · https://www.mdpi.com/2076-3263/8/3/82 (1) · https://www.mdpi.com/2225-1154/8/3/44 (1) · https://www.mdpi.com/2306-5338/8/3/104 (1) · https://www.omicsonline.org/open-access/it-technologies-for-science-application-using-meteorological-local-area-model-to-contrast-the-hydrogeological-risks-2157-7587-1000284-97397.html (1) · https://www.scirp.org/journal/doi.aspx?doi=10.4236/gep.2020.84002 (1)
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