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BibEntryCargo > Journal : Atmospheric Chemistry and Physics or Environmental Modelling & Software & Volume : 21 or 72

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Chang, Wenyuan; Zhang, Ying; Li, Zhengqiang; Chen, Jie; Li, Kaitao; (1) · Chouza, Fernando; Leblanc, Thierry; Brewer, Mark; Wang, Patrick; Piazzolla, Sabino; Pfister, Gabriele; Kumar, Rajesh; Drews, Carl; Tilmes, Simone; Emmons, Louisa; Johnson, Matthew; (1) · Herrmann, Maximilian; Sihler, Holger; Frieß, Udo; Wagner, Thomas; Platt, Ulrich; Gutheil, Eva; (1) · Huo, Sheng-Chung; Lo, Shang-Lien; Chiu, Chih-Hui; Chiueh, Pei-Te; Yang, Ching-Sheng; (1) · Liu, Huikun; Wang, Qiyuan; Xing, Li; Zhang, Yong; Zhang, Ting; Ran, Weikang; Cao, Junji; (1) · Marin, Fábio R.; Thorburn, Peter J.; Nassif, Daniel S.P.; Costa, Leandro G.; (2) · Metcalfe, Peter; Beven, Keith; Freer, Jim; (1) · Myslenkov, Stanislav; Shestakova, Anna; Chechin, Dmitry; (1) · Pistone, Kristina; Zuidema, Paquita; Wood, Robert; Diamond, Michael; da Silva, Arlindo M.; Ferrada, Gonzalo; Saide, Pablo E.; Ueyama, Rei; Ryoo, Ju-Mee; Pfister, Leonhard; Podolske, James; Noone, David; Bennett, Ryan; Stith, Eric; Carmichael, Gregory; Redemann, Jens; Flynn, Connor; LeBlanc, Samuel; Segal-Rozenhaimer, Michal; Shinozuka, Yohei; (1) · Teixeira, Edmar I.; Brown, Hamish E.; Sharp, Joanna; Meenken, Esther D.; Ewert, Frank; (1) · Thiem, Ø.; Berntsen, J.; Eldevik, T.; Alendal, G.; (1) · Vellalassery, Ashique; Pillai, Dhanyalekshmi; Marshall, Julia; Gerbig, Christoph; Buchwitz, Michael; Schneising, Oliver; Ravi, Aparnna; (1) · Wang, Ping; Linker, Lewis C.; (1) · Whish, Jeremy P.M.; Herrmann, Neville I.; White, Neil A.; Moore, Andrew D.; Kriticos, Darren J.; (1) · Yu, Shijie; Su, Fangcheng; Yin, Shasha; Wang, Shenbo; Xu, Ruixin; He, Bing; Fan, Xiangge; Yuan, Minghao; Zhang, Ruiqin; (1) · deVoil, P.; (1)
Title:
A correction of DIN uptake simulation by Michaelis–Menton saturation kinetics in HSPF watershed model to improve DIN export simulation (1) · Assessing a fuzzy model and HSPF to supplement rainfall data for nonpoint source water quality in the Feitsui reservoir watershed (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) · Dynamic TOPMODEL: A new implementation in R and its sensitivity to time and space steps (1) · Evaluating methods to simulate crop rotations for climate impact assessments – A case study on the Canterbury plains of New Zealand (1) · Exploring profit – Sustainability trade-offs in cropping systems using evolutionary algorithms (1) · Exploring the elevated water vapor signal associated with the free tropospheric biomass burning plume over the southeast Atlantic Ocean (1) · Gas exploration beyond the shelf break: An oceanographic challenge (1) · Improving the sectional Model for Simulating Aerosol Interactions and Chemistry (MOSAIC) aerosols of the Weather Research and Forecasting-Chemistry (WRF-Chem) model with the revised Gridpoint Statistical Interpolation system and multi-wavelength aerosol optical measurements: the dust aerosol observation campaign at Kashi, near the Taklimakan Desert, northwestern China (1) · Integrating pest population models with biophysical crop models to better represent the farming system (1) · Measurement report: quantifying source contribution of fossil fuels and biomass-burning black carbon aerosol in the southeastern margin of the Tibetan Plateau (1) · Sugarcane model intercomparison: Structural differences and uncertainties under current and potential future climates (2) · 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 sea waves on turbulent heat fluxes in the Barents Sea according to numerical modeling (1) · Time-dependent 3D simulations of tropospheric ozone depletion events in the Arctic spring using the Weather Research and Forecasting model coupled with Chemistry (WRF-Chem) (1) · Using TROPOspheric Monitoring Instrument (TROPOMI) measurements and Weather Research and Forecasting (WRF) CO modelling to understand the contribution of meteorology and emissions to an extreme air pollution event in India (1)
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