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BibEntryCargo > Journal : Geoscientific Model Development or ISRN Oceanography & Volume: 17

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Abdolali, Ali; Banihashemi, Saeideh; Alves, Jose Henrique; Roland, Aron; Hesser, Tyler J.; Anderson Bryant, Mary; McKee Smith, Jane; (1) · Bai, Zehua; Wu, Qizhong; Cao, Kai; Sun, Yiming; Cheng, Huaqiong; (1) · Blockley, Ed; Fiedler, Emma; Ridley, Jeff; Roberts, Luke; West, Alex; Copsey, Dan; Feltham, Daniel; Graham, Tim; Livings, David; Rousset, Clement; Schroeder, David; Vancoppenolle, Martin; (1) · Bui, Hai; Bakhoday-Paskyabi, Mostafa; Mohammadpour-Penchah, Mohammadreza; (1) · Deng, Shaokun; Yang, Shengmu; Chen, Shengli; Chen, Daoyi; Yang, Xuefeng; Cui, Shanshan; (3) · Dobson, Barnaby; Liu, Leyang; Mijic, Ana; (1) · Fan, Yuwen; Yang, Zhao; Lo, Min-Hui; Hur, Jina; Im, Eun-Soon; (1) · Fischereit, Jana; Vedel, Henrik; Larsén, Xiaoli Guo; Theeuwes, Natalie E.; Giebel, Gregor; Kaas, Eigil; (1) · Gan, Tian; Tucker, Gregory E.; Hutton, Eric W. H.; Piper, Mark D.; Overeem, Irina; Kettner, Albert J.; Campforts, Benjamin; Moriarty, Julia M.; Undzis, Brianna; Pierce, Ethan; McCready, Lynn; (2) · Gao, Chao; Zhang, Xuelei; Xiu, Aijun; Tong, Qingqing; Zhao, Hongmei; Zhang, Shichun; Yang, Guangyi; Zhang, Mengduo; Xie, Shengjin; (1) · Garinet, Adrien; Herrmann, Marine; Marsaleix, Patrick; Pénicaud, Juliette; (1) · Guo, Yafang; Roychoudhury, Chayan; Mirrezaei, Mohammad Amin; Kumar, Rajesh; Sorooshian, Armin; Arellano, Avelino F.; (1) · Hanus, Sarah; Schuster, Lilian; Burek, Peter; Maussion, Fabien; Wada, Yoshihide; Viviroli, Daniel; (2) · Lemieux, Jean-François; Lipscomb, William H.; Craig, Anthony; Bailey, David A.; Hunke, Elizabeth C.; Blain, Philippe; Rasmussen, Till A. S.; Bentsen, Mats; Dupont, Frédéric; Hebert, David; Allard, Richard; (1) · Maillard, Julia; Raut, Jean-Christophe; Ravetta, François; (1) · Martilli, Alberto; Nazarian, Negin; Krayenhoff, E. Scott; Lachapelle, Jacob; Lu, Jiachen; Rivas, Esther; Rodriguez-Sanchez, Alejandro; Sanchez, Beatriz; Santiago, José Luis; (2) · Menut, Laurent; Bessagnet, Bertrand; Cholakian, Arineh; Siour, Guillaume; Mailler, Sylvain; Pennel, Romain; (1) · Mlakar, Peter; Ricchi, Antonio; Carniel, Sandro; Bonaldo, Davide; Ličer, Matjaž; (1) · Ning, Chenhui; Xu, Shiming; Zhang, Yan; Wang, Xuantong; Fan, Zhihao; Liu, Jiping; (1) · Palermo, Rose V.; Perron, J. Taylor; Soderblom, Jason M.; Birch, Samuel P. D.; Hayes, Alexander G.; Ashton, Andrew D.; (1) · Park, Sun-Young; Lim, Kyo-Sun Sunny; Kim, Kwonil; Lee, Gyuwon; Milbrandt, Jason A.; (1) · Porcile, Gaetano; Bennis, Anne-Claire; Boutet, Martial; Le Bot, Sophie; Dumas, Franck; Jullien, Swen; (1) · Radović, Jelena; Belda, Michal; Resler, Jaroslav; Eben, Kryštof; Bureš, Martin; Geletič, Jan; Krč, Pavel; Řezníček, Hynek; Fuka, Vladimír; (1) · Rasmussen, Till Andreas Soya; Poulsen, Jacob; Ribergaard, Mads Hvid; Sasanka, Ruchira; Craig, Anthony P.; Hunke, Elizabeth C.; Rethmeier, Stefan; (1) · Rivera, Alexandra; Tsigaridis, Kostas; Faluvegi, Gregory; Shindell, Drew; (1) · Rutherford, Krysten; Bianucci, Laura; Floyd, William; (1) · Shao, Changliang; Nerger, Lars; (1) · Strasser, Ulrich; Warscher, Michael; Rottler, Erwin; Hanzer, Florian; (1) · Sun, Ting; Omidvar, Hamidreza; Li, Zhenkun; Zhang, Ning; Huang, Wenjuan; Kotthaus, Simone; Ward, Helen C.; Luo, Zhiwen; Grimmond, Sue; (1) · Thundathil, Rohith; Zus, Florian; Dick, Galina; Wickert, Jens; (1) · Trinh, Ngoc B.; Herrmann, Marine; Ulses, Caroline; Marsaleix, Patrick; Duhaut, Thomas; To Duy, Thai; Estournel, Claude; Shearman, R. Kipp; (1) · Verkaik, Jarno; Sutanudjaja, Edwin H.; Oude Essink, Gualbert H. P.; Lin, Hai Xiang; Bierkens, Marc F. P.; (2) · Wang, Qian; Zhang, Yang; Chai, Fei; Zhang, Y. Joseph; Zampieri, Lorenzo; (1) · Wang, Yibing; Xie, Xianhong; Zhu, Bowen; Tursun, Arken; Jiang, Fuxiao; Liu, Yao; Peng, Dawei; Zheng, Buyun; (1) · Xiong, Jilian; MacCready, Parker; (1) · Zhong, Xiaohui; Yu, Xing; Li, Hao; (1)
Title:
A parameterization scheme for the floating wind farm in a coupled atmosphere–wave model (COAWST v3.7) (3) · A simple approach to represent precipitation-derived freshwater fluxes into nearshore ocean models: an FVCOM4.1 case study of Quatsino Sound, British Columbia (1) · An urban module coupled with the Variable Infiltration Capacity model to improve hydrothermal simulations in urban systems (1) · Application of regional meteorology and air quality models based on the microprocessor without interlocked piped stages (MIPS) and LoongArch CPU platforms (1) · Applying double cropping and interactive irrigation in the North China Plain using WRF4.5 (1) · Assessing acetone for the GISS ModelE2.1 Earth system model (1) · Assimilation of GNSS tropospheric gradients into the Weather Research and Forecasting (WRF) model version 4.4.1 (1) · CICE on a C-grid: new momentum, stress, and transport schemes for CICEv6.5 (1) · CSDMS Data Components: data–model integration tools for Earth surface processes modeling (2) · Challenges of constructing and selecting the “perfect” boundary conditions for the large-eddy simulation model PALM (1) · Coupling a large-scale glacier and hydrological model (OGGM v1.5.3 and CWatM V1.08) – towards an improved representation of mountain water resources in global assessments (2) · DELWAVE 1.0: deep learning surrogate model of surface wave climate in the Adriatic Basin (1) · Development of a total variation diminishing (TVD) sea ice transport scheme and its application in an ocean (SCHISM v5.11) and sea ice (Icepack v1.3.4) coupled model on unstructured grids (1) · Evaluation and development of surface layer scheme representation of temperature inversions over boreal forests in Arctic wintertime conditions (1) · GLOBGM v1.0: a parallel implementation of a 30 arcsec PCR-GLOBWB-MODFLOW global-scale groundwater model (2) · Great Lakes wave forecast system on high-resolution unstructured meshes (1) · Implementation of a Simple Actuator Disk for Large-Eddy Simulation in the Weather Research and Forecasting Model (WRF-SADLES v1.2) for wind turbine wake simulation (1) · Implementation of additional spectral wave field exchanges in a three-dimensional wave–current coupled WAVEWATCH-III (version 6.07) and CROCO (version 1.2) configuration: assessment of their implications for macro-tidal coastal hydrodynamics (1) · Intercomparison of multiple two-way coupled meteorology and air quality models (WRF v4.1.1–CMAQ v5.3.1, WRF–Chem v4.1.1, and WRF v3.7.1–CHIMERE v2020r1) in eastern China (1) · Intercomparisons of Tracker v1.1 and four other ocean particle-tracking software packages in the Regional Ocean Modeling System (1) · Introducing graupel density prediction in Weather Research and Forecasting (WRF) double-moment 6-class (WDM6) microphysics and evaluation of the modified scheme during the ICE-POP field campaign (1) · Investigating ground-level ozone pollution in semi-arid and arid regions of Arizona using WRF-Chem v4.4 modeling (1) · Lagrangian tracking of sea ice in Community Ice CodE (CICE; version 5) (1) · Machine learning parameterization of the multi-scale Kain–Fritsch (MSKF) convection scheme and stable simulation coupled in the Weather Research and Forecasting (WRF) model using WRF–ML v1.0 (1) · Modelling water quantity and quality for integrated water cycle management with the Water Systems Integrated Modelling framework (WSIMOD) software (1) · Modelling wind farm effects in HARMONIE–AROME (cycle 43.2.2) – Part 1: Implementation and evaluation (1) · NEWTS1.0: Numerical model of coastal Erosion by Waves and Transgressive Scarps (1) · New insights into the South China Sea throughflow and water budget seasonal cycle: evaluation and analysis of a high-resolution configuration of the ocean model SYMPHONIE version 2.4 (1) · Refactoring the elastic–viscous–plastic solver from the sea ice model CICE v6.5.1 for improved performance (1) · Spurious numerical mixing under strong tidal forcing: a case study in the south-east Asian seas using the Symphonie model (v3.1.2) (1) · The sea ice component of GC5: coupling SI 3 to HadGEM3 using conductive fluxes (1) · WRF (v4.0)–SUEWS (v2018c) coupled system: development, evaluation and application (1) · WRF-Comfort: simulating microscale variability in outdoor heat stress at the city scale with a mesoscale model (2) · WRF-PDAF v1.0: implementation and application of an online localized ensemble data assimilation framework (1) · What is the relative impact of nudging and online coupling on meteorological variables, pollutant concentrations and aerosol optical properties? (1) · openAMUNDSEN v1.0: an open-source snow-hydrological model for mountain regions (1)
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http://dx.doi.org/10.5194/gmd-17-3433-2024 (1) · https://gmd.copernicus.org/articles/17/1023/2024/ (1) · https://gmd.copernicus.org/articles/17/1831/2024/ (1) · https://gmd.copernicus.org/articles/17/2165/2024/ (2) · https://gmd.copernicus.org/articles/17/2471/2024/ (1) · https://gmd.copernicus.org/articles/17/275/2024/ (2) · https://gmd.copernicus.org/articles/17/2829/2024/ (1) · https://gmd.copernicus.org/articles/17/2855/2024/ (1) · https://gmd.copernicus.org/articles/17/2901/2024/ (1) · https://gmd.copernicus.org/articles/17/3303/2024/ (1) · https://gmd.copernicus.org/articles/17/3341/2024/ (1) · https://gmd.copernicus.org/articles/17/3487/2024/ (1) · https://gmd.copernicus.org/articles/17/3599/2024/ (1) · https://gmd.copernicus.org/articles/17/3645/2024/ (1) · https://gmd.copernicus.org/articles/17/3667/2024/ (1) · https://gmd.copernicus.org/articles/17/4331/2024/ (1) · https://gmd.copernicus.org/articles/17/4383/2024/ (1) · https://gmd.copernicus.org/articles/17/4433/2024/ (1) · https://gmd.copernicus.org/articles/17/4447/2024/ (1) · https://gmd.copernicus.org/articles/17/4495/2024/ (1) · https://gmd.copernicus.org/articles/17/4705/2024/ (1) · https://gmd.copernicus.org/articles/17/4891/2024/ (3) · https://gmd.copernicus.org/articles/17/5023/2024/ (2) · https://gmd.copernicus.org/articles/17/5123/2024/ (2) · https://gmd.copernicus.org/articles/17/5803/2024/ (1) · https://gmd.copernicus.org/articles/17/6083/2024/ (1) · https://gmd.copernicus.org/articles/17/6529/2024/ (1) · https://gmd.copernicus.org/articles/17/6703/2024/ (1) · https://gmd.copernicus.org/articles/17/6775/2024/ (1) · https://gmd.copernicus.org/articles/17/6799/2024/ (1) · https://gmd.copernicus.org/articles/17/6847/2024/ (1) · https://gmd.copernicus.org/articles/17/6929/2024/ (1) · https://gmd.copernicus.org/articles/17/6967/2024/ (1) · https://gmd.copernicus.org/articles/17/7067/2024/ (1) · https://gmd.copernicus.org/articles/17/7199/2024/ (1) · https://gmd.copernicus.org/articles/17/91/2024/ (1)
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