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BibEntryCargo > Journal : Atmospheric Chemistry and Physics or Coastal Engineering & Note : Auto downloaded ref at: 2020-07-04 or Auto downloaded ref at: 2022-02-18

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Chen, Dan; Liu, Zhiquan; Ban, Junmei; Chen, Min; (1) · Chen, L.F.; (1) · Cheng, Zhen; Hsu, Tian-Jian; Calantoni, Joseph; (1) · Chouza, Fernando; Leblanc, Thierry; Brewer, Mark; Wang, Patrick; Piazzolla, Sabino; Pfister, Gabriele; Kumar, Rajesh; Drews, Carl; Tilmes, Simone; Emmons, Louisa; Johnson, Matthew; (1) · Costantino, L.; Heinrich, P.; (1) · Curci, G.; Ferrero, L.; Tuccella, P.; Barnaba, F.; Angelini, F.; Bolzacchini, E.; Carbone, C.; Denier van der Gon, H. A. C.; Facchini, M. C.; Gobbi, G. P.; Kuenen, J. P. P.; Landi, T. C.; Perrino, C.; Perrone, M. G.; Sangiorgi, G.; Stocchi, P.; (1) · Devolder, Brecht; Rauwoens, Pieter; Troch, Peter; (1) · Devolder, Brecht; Troch, Peter; Rauwoens, Pieter; (1) · Fry, J. L.; Sackinger, K.; (1) · Gu, Yixuan; Yan, Fengxia; Xu, Jianming; Qu, Yuanhao; Gao, Wei; He, Fangfang; Liao, Hong; (1) · Hayatdavoodi, Masoud; Seiffert, Betsy; Ertekin, R. Cengiz; (1) · Higuera, Pablo; Lara, Javier L.; Losada, Inigo J.; (4) · Higuera, Pablo; Losada, Inigo J.; Lara, Javier L.; (1) · Hu, Zhiyuan; Huang, Jianping; Zhao, Chun; Ma, Yuanyuan; Jin, Qinjian; Qian, Yun; Leung, L. Ruby; Bi, Jianrong; Ma, Jianmin; (1) · Jacobsen, Niels G.; van Gent, Marcel R.A.; Wolters, Guido; (1) · Jensen, Bjarne; Jacobsen, Niels Gjøl; Christensen, Erik Damgaard; (1) · Kazil, J.; Feingold, G.; Wang, H.; Yamaguchi, T.; (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, Yuzhu; Ong, Muk Chen; Tang, Tian; (1) · Lin, Zaibin; Pokrajac, Dubravka; Guo, Yakun; Jeng, Dong-sheng; Tang, Tian; Rey, Nick; Zheng, Jinhai; Zhang, Jisheng; (1) · Long, Xin; Tie, Xuexi; Li, Guohui; Cao, Junji; Feng, Tian; Zhao, Shuyu; Xing, Li; An, Zhisheng; (1) · Menut, L.; Rea, G.; Mailler, S.; Khvorostyanov, D.; Turquety, S.; (1) · Mingari, Leonardo A.; Collini, Estela A.; Folch, Arnau; Báez, Walter; Bustos, Emilce; Osores, María Soledad; Reckziegel, Florencia; Alexander, Peter; Viramonte, José G.; (1) · Peng, Zhen; Lei, Lili; Liu, Zhiquan; Sun, Jianning; Ding, Aijun; Ban, Junmei; Chen, Dan; Kou, Xingxia; Chu, Kekuan; (1) · Schlosser, Elisabeth; Stenni, Barbara; Valt, Mauro; Cagnati, Anselmo; Powers, Jordan G.; Manning, Kevin W.; Raphael, Marilyn; Duda, Michael G.; (1) · Seiffert, Betsy; Hayatdavoodi, Masoud; Ertekin, R. Cengiz; (1) · Vyzikas, Thomas; Stagonas, Dimitris; Buldakov, Eugeny; Greaves, Deborah; (1) · Wang, Tiantian; Song, Yu; Xu, Zhenying; Liu, Mingxu; Xu, Tingting; Liao, Wenling; Yin, Lifei; Cai, Xuhui; Kang, Ling; Zhang, Hongsheng; Zhu, Tong; (1) · Weigum, Natalie; Schutgens, Nick; Stier, Philip; (1) · Wroniszewski, Paweł A.; Verschaeve, Joris C.G.; Pedersen, Geir K.; (1) · Yu, Shijie; Su, Fangcheng; Yin, Shasha; Wang, Shenbo; Xu, Ruixin; He, Bing; Fan, Xiangge; Yuan, Minghao; Zhang, Ruiqin; (1)
Title:
A measurement and model study on ozone characteristics in marine air at a remote island station and its interaction with urban ozone air quality in Shanghai, China (1) · Aerosol forecast over the Mediterranean area during July 2013 (ADRIMED/CHARMEX) (1) · Application of a buoyancy-modified k-ω SST turbulence model to simulate wave run-up around a monopile subjected to regular waves using OpenFOAM ® (1) · Benchmarking of Navier–Stokes codes for free surface simulations by means of a solitary wave (1) · Characterization of ambient volatile organic compounds, source apportionment, and the ozone–NO<sub>x</sub>–VOC sensitivities in a heavily polluted megacity of central China: effect of sporting events and emission reductions (1) · Effect of aerosol subgrid variability on aerosol optical depth and cloud condensation nuclei: implications for global aerosol modelling (1) · Effect of ecological restoration programs on dust concentrations in the North China Plain: a case study (1) · Experiments and computations of solitary-wave forces on a coastal-bridge deck. Part I: Flat Plate (1) · Experiments and computations of solitary-wave forces on a coastal-bridge deck. Part II: Deck with girders (1) · How much is particulate matter near the ground influenced by upper-level processes within and above the PBL? A summertime case study in Milan (Italy) evidences the distinctive role of nitrate (1) · Investigation of nonlinear wave-induced seabed response around mono-pile foundation (1) · Investigations on the porous media equations and resistance coefficients for coastal structures (1) · Model investigation of NO<sub>3</sub> secondary organic aerosol (SOA) source and heterogeneous organic aerosol (OA) sink in the western United States (1) · Modeling ozone plumes observed downwind of New York City over the North Atlantic Ocean during the ICARTT field campaign (1) · Numerical analysis of the interaction of irregular waves with two dimensional permeable coastal structures (1) · Numerical analysis of wave-induced poro-elastic seabed response around a hexagonal gravity-based offshore foundation (1) · Numerical modelling of interactions of waves and sheared currents with a surface piercing vertical cylinder (1) · Numerical simulations of windblown dust over complex terrain: the Fiambalá Basin episode in June 2015 (1) · On the interaction between marine boundary layer cellular cloudiness and surface heat fluxes (1) · Performance of a buoyancy-modified k-ω and k-ω SST turbulence model for simulating wave breaking under regular waves using OpenFOAM® (1) · Precipitation and synoptic regime in two extreme years 2009 and 2010 at Dome C, Antarctica – implications for ice core interpretation (1) · Realistic wave generation and active wave absorption for Navier–Stokes models (1) · SedFoam: A multi-dimensional Eulerian two-phase model for sediment transport and its application to momentary bed failure (1) · Simulating coastal engineering processes with OpenFOAM® (1) · The 2015 and 2016 wintertime air pollution in China: SO<sub>2</sub> emission changes derived from a WRF-Chem/EnKF coupled data assimilation system (1) · The evolution of free and bound waves during dispersive focusing in a numerical and physical flume (1) · The impact of Los Angeles Basin pollution and stratospheric intrusions on the surrounding San Gabriel Mountains as seen by surface measurements, lidar, and numerical models (1) · The impact of multi-species surface chemical observation assimilation on air quality forecasts in China (1) · Three-dimensional interaction of waves and porous coastal structures using OpenFOAM®. Part I: Formulation and validation (1) · Three-dimensional interaction of waves and porous coastal structures using OpenFOAM®. Part II: Application (1) · Three-dimensional numerical wave generation with moving boundaries (1) · Trans-Pacific transport and evolution of aerosols: spatiotemporal characteristics and source contributions (1) · Tropical deep convection and density current signature in surface pressure: comparison between WRF model simulations and infrasound measurements (1) · Why is the Indo-Gangetic Plain the region with the largest NH<sub>3</sub> column in the globe during pre-monsoon and monsoon seasons? (1)
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https://acp.copernicus.org/articles/11/7375/2011/ (1) · https://acp.copernicus.org/articles/12/8797/2012/ (1) · https://acp.copernicus.org/articles/14/3113/2014/ (1) · https://acp.copernicus.org/articles/14/61/2014/ (1) · https://acp.copernicus.org/articles/15/2629/2015/ (1) · https://acp.copernicus.org/articles/15/7897/2015/ (1) · https://acp.copernicus.org/articles/16/13619/2016/ (1) · https://acp.copernicus.org/articles/16/4757/2016/ (1) · https://acp.copernicus.org/articles/17/6759/2017/ (1) · https://acp.copernicus.org/articles/18/17387/2018/ (1) · https://acp.copernicus.org/articles/18/6353/2018/ (1) · https://acp.copernicus.org/articles/19/12709/2019/ (1) · https://acp.copernicus.org/articles/19/8619/2019/ (1) · https://acp.copernicus.org/articles/20/14361/2020/ (1) · https://acp.copernicus.org/articles/20/8727/2020/ (1) · https://acp.copernicus.org/articles/21/15239/2021/ (1) · https://acp.copernicus.org/articles/21/6129/2021/ (1) · https://linkinghub.elsevier.com/retrieve/pii/S0378383912001093 (1) · https://linkinghub.elsevier.com/retrieve/pii/S0378383912001354 (1) · https://linkinghub.elsevier.com/retrieve/pii/S0378383913001452 (1) · https://linkinghub.elsevier.com/retrieve/pii/S0378383913001464 (1) · https://linkinghub.elsevier.com/retrieve/pii/S0378383913001816 (1) · https://linkinghub.elsevier.com/retrieve/pii/S0378383914000143 (1) · https://linkinghub.elsevier.com/retrieve/pii/S0378383914000398 (1) · https://linkinghub.elsevier.com/retrieve/pii/S0378383914000842 (1) · https://linkinghub.elsevier.com/retrieve/pii/S0378383915000666 (1) · https://linkinghub.elsevier.com/retrieve/pii/S0378383915000836 (1) · https://linkinghub.elsevier.com/retrieve/pii/S0378383916301958 (1) · https://linkinghub.elsevier.com/retrieve/pii/S0378383917300017 (1) · https://linkinghub.elsevier.com/retrieve/pii/S0378383917300777 (1) · https://linkinghub.elsevier.com/retrieve/pii/S0378383917302107 (1) · https://linkinghub.elsevier.com/retrieve/pii/S0378383917304696 (1) · https://linkinghub.elsevier.com/retrieve/pii/S0378383917304726 (1) · https://linkinghub.elsevier.com/retrieve/pii/S0378383918303727 (1)
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