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BibEntryCargo > Journal : Environmental Research Letters or Geoscientific Model Development & Note : Auto downloaded ref at: 2020-06-07 or Auto downloaded ref at: 2022-02-21

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Firstname:
Appel, K. W.; Roselle, S. J.; Gilliam, R. C.; Pleim, J. E.; (1) · Appel, K. Wyat; Napelenok, Sergey L.; Foley, Kristen M.; Pye, Havala O. T.; Hogrefe, Christian; Luecken, Deborah J.; Bash, Jesse O.; Roselle, Shawn J.; Pleim, Jonathan E.; Foroutan, Hosein; Hutzell, William T.; Pouliot, George A.; (1) · Brioude, J.; Arnold, D.; Stohl, A.; Cassiani, M.; Morton, D.; Seibert, P.; Angevine, W.; Evan, S.; Dingwell, A.; Fast, J. D.; Easter, R. C.; Pisso, I.; Burkhart, J.; Wotawa, G.; (1) · Campforts, Benjamin; Shobe, Charles M.; Steer, Philippe; Vanmaercke, Matthias; Lague, Dimitri; Braun, Jean; (1) · Cao, Qian; Yu, Deyong; Georgescu, Matei; Han, Zhe; Wu, Jianguo; (1) · Duarte, Pedro; Assmy, Philipp; Campbell, Karley; Sundfjord, Arild; (1) · Fiedler, B H; Bukovsky, M S; (1) · Hoch, Jannis M.; Neal, Jeffrey C.; Baart, Fedor; van Beek, Rens; Winsemius, Hessel C.; Bates, Paul D.; Bierkens, Marc F. P.; (1) · Horvat, Christopher; Roach, Lettie A.; (1) · Huang, Mingxia; Wang, Jing; Wang, Bin; Liu, De Li; Yu, Qiang; He, Di; Wang, Na; Pan, Xuebiao; (1) · Kerry, Colette; Powell, Brian; Roughan, Moninya; Oke, Peter; (1) · Kumar, R.; Naja, M.; Pfister, G. G.; Barth, M. C.; Wiedinmyer, C.; Brasseur, G. P.; (1) · Li, Dan; Bou-Zeid, Elie; (1) · Li, Dan; Bou-Zeid, Elie; Oppenheimer, Michael; (1) · Mandel, J.; Beezley, J. D.; Kochanski, A. K.; (1) · Mar, Kathleen A.; Ojha, Narendra; Pozzer, Andrea; Butler, Tim M.; (1) · Meccia, V.; Wainer, I.; Tonelli, M.; Curchitser, E.; (1) · Meng, X; Lyu, S; Zhang, T; Zhao, L; Li, Z; Han, B; Li, S; Ma, D; Chen, H; Ao, Y; Luo, S; Shen, Y; Guo, J; Wen, L; (1) · Millstein, Dev; Menon, Surabi; (1) · Naughten, Kaitlin A.; Meissner, Katrin J.; Galton-Fenzi, Benjamin K.; England, Matthew H.; Timmermann, Ralph; Hellmer, Hartmut H.; Hattermann, Tore; Debernard, Jens B.; (1) · Parolari, Anthony J; Li, Dan; Bou-Zeid, Elie; Katul, Gabriel G; Assouline, Shmuel; (1) · Phipps, Steven J.; Roberts, Jason L.; King, Matt A.; (1) · Salamanca, F; Georgescu, M; Mahalov, A; Moustaoui, M; Wang, M; Svoma, B M; (1) · Tucker, Gregory E.; Hutton, Eric W. H.; Piper, Mark D.; Campforts, Benjamin; Gan, Tian; Barnhart, Katherine R.; Kettner, Albert J.; Overeem, Irina; Peckham, Scott D.; McCready, Lynn; Syvitski, Jaia; (1) · Turuncoglu, U. U.; Giuliani, G.; Elguindi, N.; Giorgi, F.; (1) · Volker, P. J. H.; Badger, J.; Hahmann, A. N.; Ott, S.; (1) · Wong, D. C.; Pleim, J.; Mathur, R.; Binkowski, F.; Otte, T.; Gilliam, R.; Pouliot, G.; Xiu, A.; Young, J. O.; Kang, D.; (1)
Title:
An iterative process for efficient optimisation of parameters in geoscientific models: a demonstration using the Parallel Ice Sheet Model (PISM) version 0.7.3 (1) · Assessing summertime urban air conditioning consumption in a semiarid environment (1) · CSDMS: a community platform for numerical modeling of Earth surface processes (1) · Climate, not conflict, explains extreme Middle East dust storm (1) · Coupled atmosphere-wildland fire modeling with WRF 3.3 and SFIRE 2011 (1) · Coupling a thermodynamically active ice shelf to a regional simulation of the Weddell Sea (1) · Description and evaluation of the Community Multiscale Air Quality (CMAQ) modeling system version 5.1 (1) · Development and evaluation of a high-resolution reanalysis of the East Australian Current region using the Regional Ocean Modelling System (ROMS 3.4) and Incremental Strong-Constraint 4-Dimensional Variational (IS4D-Var) data assimilation (1) · GLOFRIM v1.0 – A globally applicable computational framework for integrated hydrological–hydrodynamic modelling (1) · HyLands 1.0: a hybrid landscape evolution model to simulate the impact of landslides and landslide-derived sediment on landscape evolution (1) · Impacts of land use and land cover change on regional climate: a case study in the agro-pastoral transitional zone of China (1) · Intercomparison of Antarctic ice-shelf, ocean, and sea-ice interactions simulated by MetROMS-iceshelf and FESOM 1.4 (1) · Modelling the Caspian Sea and its catchment area using a coupled regional atmosphere-ocean model (RegCM4-ROMS): model design and preliminary results (1) · Optimizing sowing window and cultivar choice can boost China’s maize yield under 1.5 °C and 2 °C global warming (1) · Ozone air quality simulations with WRF-Chem (v3.5.1) over Europe: model evaluation and chemical mechanism comparison (1) · Quality and sensitivity of high-resolution numerical simulation of urban heat islands (1) · Regional climate consequences of large-scale cool roof and photovoltaic array deployment (1) · Sensitivity of the Community Multiscale Air Quality (CMAQ) model v4.7 results for the eastern United States to MM5 and WRF meteorological drivers (1) · Simulated cold bias being improved by using MODIS time-varying albedo in the Tibetan Plateau in WRF model (1) · Simulations over South Asia using the Weather Research and Forecasting model with Chemistry (WRF-Chem): chemistry evaluation and initial results (1) · The Explicit Wake Parametrisation V1.0: a wind farm parametrisation in the mesoscale model WRF (1) · The Lagrangian particle dispersion model FLEXPART-WRF version 3.1 (1) · The effect of a giant wind farm on precipitation in a regional climate model (1) · The effectiveness of cool and green roofs as urban heat island mitigation strategies (1) · The importance of turbulent ocean–sea ice nutrient exchanges for simulation of ice algal biomass and production with CICE6.1 and Icepack 1.2 (1) · WIFF1.0: a hybrid machine-learning-based parameterization of wave-induced sea ice floe fracture (1) · WRF-CMAQ two-way coupled system with aerosol feedback: software development and preliminary results (1)
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Volume:
10 (3) · 11 (2) · 13 (2) · 14 (1) · 15 (4) · 3 (1) · 4 (1) · 5 (2) · 6 (5) · 8 (2) · 9 (4)
URL:
https://gmd.copernicus.org/articles/10/3913/2017/ (1) · https://gmd.copernicus.org/articles/11/1257/2018/ (1) · https://gmd.copernicus.org/articles/13/3863/2020/ (1) · https://gmd.copernicus.org/articles/14/5107/2021/ (1) · https://gmd.copernicus.org/articles/15/1413/2022/ (1) · https://gmd.copernicus.org/articles/15/803/2022/ (1) · https://gmd.copernicus.org/articles/15/841/2022/ (1) · https://gmd.copernicus.org/articles/6/1209/2013/ (1) · https://gmd.copernicus.org/articles/6/283/2013/ (1) · https://gmd.copernicus.org/articles/9/3779/2016/ (1) · https://iopscience.iop.org/article/10.1088/1748-9326/10/12/124025 (1) · https://iopscience.iop.org/article/10.1088/1748-9326/11/11/114013 (1) · https://iopscience.iop.org/article/10.1088/1748-9326/6/3/034001 (1) · https://iopscience.iop.org/article/10.1088/1748-9326/6/4/045101 (1) · https://iopscience.iop.org/article/10.1088/1748-9326/8/3/034022 (1) · https://iopscience.iop.org/article/10.1088/1748-9326/9/5/055001 (1) · https://iopscience.iop.org/article/10.1088/1748-9326/9/5/055002 (1) · https://iopscience.iop.org/article/10.1088/1748-9326/aab44a (1) · https://iopscience.iop.org/article/10.1088/1748-9326/ab66ca (1) · https://www.geosci-model-dev.net/10/1703/2017/ (1) · https://www.geosci-model-dev.net/3/169/2010/ (1) · https://www.geosci-model-dev.net/4/591/2011/ (1) · https://www.geosci-model-dev.net/5/299/2012/ (1) · https://www.geosci-model-dev.net/5/619/2012/ (1) · https://www.geosci-model-dev.net/6/1889/2013/ (1) · https://www.geosci-model-dev.net/8/3715/2015/ (1) · https://www.geosci-model-dev.net/9/3699/2016/ (1)
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