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BibEntryCargo > Journal : Atmospheric Chemistry and Physics or Monthly Weather Review & Volume : 11 or 13 or None

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Bao, X.; Zhang, F.; (1) · Beck, V.; Gerbig, C.; Koch, T.; Bela, M. M.; Longo, K. M.; Freitas, S. R.; Kaplan, J. O.; Prigent, C.; Bergamaschi, P.; Heimann, M.; (1) · Bernstein, D. N.; Neelin, J. D.; Li, Q. B.; Chen, D.; (1) · Fan, S. J.; Fan, Q.; Yu, W.; Luo, X. Y.; Wang, B. M.; Song, L. L.; Leong, K. L.; (1) · Flagg, D. D.; Taylor, P. A.; (1) · Gao, Y.; Fu, J. S.; Drake, J. B.; Lamarque, J.-F.; Liu, Y.; (2) · George, R. C.; Wood, R.; Bretherton, C. S.; Painter, G.; (1) · Grell, G.; Freitas, S. R.; Stuefer, M.; Fast, J.; (1) · Guo, H.; Ling, Z. H.; Cheung, K.; Jiang, F.; Wang, D. W.; Simpson, I. J.; Barletta, B.; Meinardi, S.; Wang, T. J.; Wang, X. M.; Saunders, S. M.; Blake, D. R.; (1) · Harrigan, D. L.; Fuelberg, H. E.; Simpson, I. J.; Blake, D. R.; Carmichael, G. R.; Diskin, G. S.; (1) · Kim, S.-W.; McKeen, S. A.; Frost, G. J.; Lee, S.-H.; Trainer, M.; Richter, A.; Angevine, W. M.; Atlas, E.; Bianco, L.; Boersma, K. F.; Brioude, J.; Burrows, J. P.; de Gouw, J.; Fried, A.; Gleason, J.; Hilboll, A.; Mellqvist, J.; Peischl, J.; Richter, D.; Rivera, C.; Ryerson, T.; te Lintel Hekkert, S.; Walega, J.; Warneke, C.; Weibring, P.; Williams, E.; (1) · Lebo, Z. J.; Seinfeld, J. H.; (2) · Lee, S.-H.; Kim, S.-W.; Angevine, W. M.; Bianco, L.; McKeen, S. A.; Senff, C. J.; Trainer, M.; Tucker, S. C.; Zamora, R. J.; (1) · Lee, S.-H.; Kim, S.-W.; Trainer, M.; Frost, G. J.; McKeen, S. A.; Cooper, O. R.; Flocke, F.; Holloway, J. S.; Neuman, J. A.; Ryerson, T.; Senff, C. J.; Swanson, A. L.; Thompson, A. M.; (1) · Li, G.; Zavala, M.; Lei, W.; Tsimpidi, A. P.; Karydis, V. A.; Pandis, S. N.; Canagaratna, M. R.; Molina, L. T.; (1) · Li, Z.; Zang, Z.; Li, Q. B.; Chao, Y.; Chen, D.; Ye, Z.; Liu, Y.; Liou, K. N.; (1) · Liou, K. N.; Gu, Y.; Leung, L. R.; Lee, W. L.; Fovell, R. G.; (1) · Luo, G.; Yu, F.; (1) · Mahalov, A.; Moustaoui, M.; Grubišić, V.; (1) · Newman, S.; Jeong, S.; Fischer, M. L.; Xu, X.; Haman, C. L.; Lefer, B.; Alvarez, S.; Rappenglueck, B.; Kort, E. A.; Andrews, A. E.; Peischl, J.; Gurney, K. R.; Miller, C. E.; Yung, Y. L.; (1) · Pérez, C.; Haustein, K.; Janjic, Z.; Jorba, O.; Huneeus, N.; Baldasano, J. M.; Black, T.; Basart, S.; Nickovic, S.; Miller, R. L.; Perlwitz, J. P.; Schulz, M.; Thomson, M.; (1) · Saikawa, E.; Kurokawa, J.; Takigawa, M.; Borken-Kleefeld, J.; Mauzerall, D. L.; Horowitz, L. W.; Ohara, T.; (1) · Sessions, W. R.; Fuelberg, H. E.; Kahn, R. A.; Winker, D. M.; (1) · Shrivastava, M.; Fast, J.; Easter, R.; Gustafson, W. I.; Zaveri, R. A.; Jimenez, J. L.; Saide, P.; Hodzic, A.; (1) · Situ, S.; Guenther, A.; Wang, X.; Jiang, X.; Turnipseed, A.; Wu, Z.; Bai, J.; (1) · Steele, C. J.; Dorling, S. R.; von Glasow, R.; Bacon, J.; (1) · Subramanian, A. C.; Miller, A. J.; Cornuelle, B. D.; Di Lorenzo, E.; Weller, R. A.; Straneo, F.; (1) · Tao, Z.; Santanello, J. A.; Chin, M.; Zhou, S.; Tan, Q.; Kemp, E. M.; Peters-Lidard, C. D.; (1) · Tie, X.; Geng, F.; Guenther, A.; Cao, J.; Greenberg, J.; Zhang, R.; Apel, E.; Li, G.; Weinheimer, A.; Chen, J.; Cai, C.; (1) · Waked, A.; Seigneur, C.; Couvidat, F.; Kim, Y.; Sartelet, K.; Afif, C.; Borbon, A.; Formenti, P.; Sauvage, S.; (1) · Wang, Y.; Wan, Q.; Meng, W.; Liao, F.; Tan, H.; Zhang, R.; (1) · Yang, Q.; Fast, J. D.; Wang, H.; Easter, R. C.; Morrison, H.; Lee, Y.-N.; Chapman, E. G.; Spak, S. N.; Mena-Carrasco, M. A.; (1) · Yver, C. E.; Graven, H. D.; Lucas, D. D.; Cameron-Smith, P. J.; Keeling, R. F.; Weiss, R. F.; (1) · Zhang, Y.; Sartelet, K.; Wu, S.-Y.; Seigneur, C.; (1) · de Foy, B.; Burton, S. P.; Ferrare, R. A.; Hostetler, C. A.; Hair, J. W.; Wiedinmyer, C.; Molina, L. T.; (1)
Title:
A WRF simulation of the impact of 3-D radiative transfer on surface hydrology over the Rocky Mountains and Sierra Nevada (1) · A continuous spectral aerosol-droplet microphysics model (1) · A data assimilative perspective of oceanic mesoscale eddy evolution during VOCALS-REx (1) · A numerical study of mountain waves in the upper troposphere and lower stratosphere (1) · A three-dimensional variational data assimilation system for multiple aerosol species with WRF/Chem and an application to PM2.5 prediction (1) · Aerosol plume transport and transformation in high spectral resolution lidar measurements and WRF-Flexpart simulations during the MILAGRO Field Campaign (1) · An investigation of methods for injecting emissions from boreal wildfires using WRF-Chem during ARCTAS (1) · Anthropogenic emissions during Arctas-A: mean transport characteristics and regional case studies (1) · Application of WRF/Chem-MADRID and WRF/Polyphemus in Europe – Part 1: Model description, evaluation of meteorological predictions, and aerosol–meteorology interactions (1) · Assessing regional scale predictions of aerosols, marine stratocumulus, and their interactions during VOCALS-REx using WRF-Chem (1) · Atmospheric boundary layer characteristics over the Pearl River Delta, China, during the summer of 2006: measurement and model results (1) · Atmospheric dust modeling from meso to global scales with the online NMMB/BSC-Dust model – Part 1: Model description, annual simulations and evaluation (1) · Characterization of photochemical pollution at different elevations in mountainous areas in Hong Kong (1) · Could aerosol emissions be used for regional heat wave mitigation? (1) · Development and impact of hooks of high droplet concentration on remote southeast Pacific stratocumulus (1) · Diurnal tracking of anthropogenic CO 2 emissions in the Los Angeles basin megacity during spring 2010 (1) · Effect of land cover on atmospheric processes and air quality over the continental United States – a NASA Unified WRF (NU-WRF) model study (1) · Evaluating transport in the WRF model along the California coast (1) · Evaluation of urban surface parameterizations in the WRF model using measurements during the Texas Air Quality Study 2006 field campaign (1) · Evaluations of NO x and highly reactive VOC emission inventories in Texas and their implications for ozone plume simulations during the Texas Air Quality Study 2006 (1) · Idealized WRF model sensitivity simulations of sea breeze types and their effects on offshore windfields (1) · Impacts of seasonal and regional variability in biogenic VOC emissions on surface ozone in the Pearl River delta region, China (1) · Impacts of the mountain–plains solenoid and cold pool dynamics on the diurnal variation of warm-season precipitation over northern China (1) · Inclusion of biomass burning in WRF-Chem: impact of wildfires on weather forecasts (1) · Long-term impacts of aerosols on precipitation and lightning over the Pearl River Delta megacity area in China (1) · Megacity impacts on regional ozone formation: observations and WRF-Chem modeling for the MIRAGE-Shanghai field campaign (1) · Modeling air pollution in Lebanon: evaluation at a suburban site in Beirut during summer (1) · Modeling organic aerosols in a megacity: comparison of simple and complex representations of the volatility basis set approach (1) · Modeling ozone plumes observed downwind of New York City over the North Atlantic Ocean during the ICARTT field campaign (1) · Sensitivity of mesoscale model urban boundary layer meteorology to the scale of urban representation (1) · Simulation of particle formation and number concentration over the Eastern United States with the WRF-Chem + APM model (1) · Simulations of organic aerosol concentrations in Mexico City using the WRF-CHEM model during the MCMA-2006/MILAGRO campaign (1) · The impact of China's vehicle emissions on regional air quality in 2000 and 2020: a scenario analysis (1) · The impact of emission and climate change on ozone in the United States under representative concentration pathways (RCPs) (2) · Theoretical basis for convective invigoration due to increased aerosol concentration (1) · WRF-Chem simulations in the Amazon region during wet and dry season transitions: evaluation of methane models and wetland inundation maps (1)
Editors:
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URL:
https://acp.copernicus.org/articles/11/11521/2011/ (1) · https://acp.copernicus.org/articles/11/12297/2011/ (1) · https://acp.copernicus.org/articles/11/2951/2011/ (1) · https://acp.copernicus.org/articles/11/5123/2011/ (1) · https://acp.copernicus.org/articles/11/5719/2011/ (1) · https://acp.copernicus.org/articles/11/6297/2011/ (1) · https://acp.copernicus.org/articles/11/7375/2011/ (1) · https://acp.copernicus.org/articles/11/8677/2011/ (1) · https://acp.copernicus.org/articles/13/1837/2013/ (1) · https://acp.copernicus.org/articles/13/3329/2013/ (1) · https://acp.copernicus.org/articles/13/4265/2013/ (1) · https://acp.copernicus.org/articles/13/5873/2013/ (1) · https://acp.copernicus.org/articles/13/6207/2013/ (1) · https://acp.copernicus.org/articles/13/6305/2013/ (1) · https://acp.copernicus.org/articles/13/6373/2013/ (1) · https://acp.copernicus.org/articles/13/6807/2013/ (1) · https://acp.copernicus.org/articles/13/6965/2013/ (1) · https://acp.copernicus.org/articles/13/7961/2013/ (1) · https://acp.copernicus.org/articles/13/9607/2013/ (1) · https://www.atmos-chem-phys.net/11/11361/2011/ (1) · https://www.atmos-chem-phys.net/11/11951/2011/ (1) · https://www.atmos-chem-phys.net/11/12421/2011/ (1) · https://www.atmos-chem-phys.net/11/13001/2011/ (1) · https://www.atmos-chem-phys.net/11/2127/2011/ (1) · https://www.atmos-chem-phys.net/11/3543/2011/ (1) · https://www.atmos-chem-phys.net/11/3789/2011/ (1) · https://www.atmos-chem-phys.net/11/5289/2011/ (1) · https://www.atmos-chem-phys.net/11/5407/2011/ (1) · https://www.atmos-chem-phys.net/11/6639/2011/ (1) · https://www.atmos-chem-phys.net/11/9465/2011/ (1) · https://www.atmos-chem-phys.net/13/11709/2013/ (1) · https://www.atmos-chem-phys.net/13/11803/2013/ (1) · https://www.atmos-chem-phys.net/13/3881/2013/ (1) · https://www.atmos-chem-phys.net/13/4359/2013/ (1) · https://www.atmos-chem-phys.net/13/443/2013/ (1) · https://www.atmos-chem-phys.net/13/5655/2013/ (1) · https://www.atmos-chem-phys.net/13/9607/2013/ (1)
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