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publications:publications [2026/04/08 14:13] cperez |
publications:publications [2026/05/05 11:07] (current) dbojovic |
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| - {{ : | - {{ : | ||
| - [[https:// | - [[https:// | ||
| + | - Chen, Z-Y., H. Achebak, H. Petetin , W. Huang , R. Méndez Turrubiates, | ||
| + | - Chun, K.P., L. Aragão, L., M.E. Olmo, et al. (2026) New horizons in statistical downscaling and AI approaches for sustainable km-scale climate simulations. [[https:// | ||
| - Corvillo, J., V. Torralba, C. González, A. Llabrés-Brustenga, | - Corvillo, J., V. Torralba, C. González, A. Llabrés-Brustenga, | ||
| - Costa-Surós, | - Costa-Surós, | ||
| - Criado, A., C. Carnerero, A. Frangeskou, D. Urquiza, A. Soret, M. Guevara, O. Jorba, and J.M. Armengol (2026). Street-and census-level NO₂ data for Barcelona with uncertainty and exceedance probability mapping. [[https:// | - Criado, A., C. Carnerero, A. Frangeskou, D. Urquiza, A. Soret, M. Guevara, O. Jorba, and J.M. Armengol (2026). Street-and census-level NO₂ data for Barcelona with uncertainty and exceedance probability mapping. [[https:// | ||
| - | - Delgado-Torres, | + | - Delgado-Torres, |
| - | - {{: | + | - {{: |
| - | - Everingham, S. E., I. A., Wright, L., Teckentrup, S., Allen and R. V., Gallagher (2026). Exposure and sensitivity of threatened plant species to changing drought regimes: A global analysis. [[https:// | + | - {{: |
| + | - Doblas-Reyes, | ||
| + | - Duzenli, E., J. Ramon, V. Torralba, S. Pickard, Á. G. Muñoz and D. Bojovic (2026). Assessing the utility of statistical downscaling for subseasonal temperature forecasts. [[https:// | ||
| + | - Duzenli, E., V. Torralba, C. Delgado-Torres, | ||
| + | - Everingham, S.E., I.A., Wright, L., Teckentrup, S. Allen and R.V., Gallagher (2026). Exposure and sensitivity of threatened plant species to changing drought regimes: A global analysis. [[https:// | ||
| + | - Fanelli, A., B. Alglave, L. Caporaso, A. Cescatti, J.-C. Ciscar, G. Dubois, A. Dosio, R. M. Estevez-Reboredo, | ||
| + | | ||
| - Frostenberg, | - Frostenberg, | ||
| - Grayson, K., D. Campos, S. Beyer, A. John, G. Versteeg, M. Kelbling, A. Chandrasekar, | - Grayson, K., D. Campos, S. Beyer, A. John, G. Versteeg, M. Kelbling, A. Chandrasekar, | ||
| Line 28: | Line 36: | ||
| - Hu, J., F. Gignac, S. Pickard, P. Trascasa-Castro, | - Hu, J., F. Gignac, S. Pickard, P. Trascasa-Castro, | ||
| - Im, U., B.H. Samset, A. Nenes, J.L. Thoma, H. Kokkola, O. Dubovik, V. Amiridis, A. Arola, N. Bellouin, A. Benedetti, M. Bilde, S. Blichner, S. Decesari, A.M.L. Ekman, C. Pérez García-Pando, | - Im, U., B.H. Samset, A. Nenes, J.L. Thoma, H. Kokkola, O. Dubovik, V. Amiridis, A. Arola, N. Bellouin, A. Benedetti, M. Bilde, S. Blichner, S. Decesari, A.M.L. Ekman, C. Pérez García-Pando, | ||
| - | - Kok, J.F., A.K. Gupta, A.T. Evan, C. Pérez García-Pando, | + | |
| + | | ||
| - Kuhlmann, G., E.F.M. Koene, C.N. Schooling, P.I. Palmer, O. López and M. Guevara (2026). Temporal variability of NOx emissions from power plants: a comparison of satellite- and inventory-based estimates. [[https:// | - Kuhlmann, G., E.F.M. Koene, C.N. Schooling, P.I. Palmer, O. López and M. Guevara (2026). Temporal variability of NOx emissions from power plants: a comparison of satellite- and inventory-based estimates. [[https:// | ||
| - Li, C, M. Kotz, P. Pradhan, X. Wu, Y. Hu, Z. Li and G. Chen (2026). Climate change drives a decline in global grazing systems. [[https:// | - Li, C, M. Kotz, P. Pradhan, X. Wu, Y. Hu, Z. Li and G. Chen (2026). Climate change drives a decline in global grazing systems. [[https:// | ||
| - | - Li, L., N.M. Mahowald, X. Liu, M. Gonçalves Ageitos, Z. Ke, D.M. Leung, C. Pérez García-Pando, | + | - Li, L., N.M. Mahowald, X. Liu, M. Gonçalves Ageitos, Z. Ke, D.M. Leung, C. Pérez García-Pando, |
| + | e2025MS005420, | ||
| + | - Li, L., N.M. Mahowald, R.L. Miller, C. Pérez García-Pando, | ||
| - Lyu, H., X. Zhang, J.Su, D. Wårlind, J. Knauer, L. Teckentrup, J. Chang, X. Xu, C. Chen, J. Zhu, J. Ni, S. Sitch, Y. Fu, B. Medlyn, B. Smith, Y. Yang and M. Jian (2026). Warming overwhelms CO2-driven drought mitigation in alpine vegetation on the Qinghai-Tibetan Plateau. [[https:// | - Lyu, H., X. Zhang, J.Su, D. Wårlind, J. Knauer, L. Teckentrup, J. Chang, X. Xu, C. Chen, J. Zhu, J. Ni, S. Sitch, Y. Fu, B. Medlyn, B. Smith, Y. Yang and M. Jian (2026). Warming overwhelms CO2-driven drought mitigation in alpine vegetation on the Qinghai-Tibetan Plateau. [[https:// | ||
| - Maraun, D., D. Bojovic, W. Parker, T.G. Shepherd, S. Sobolowski, C. Caminade, A. Dosio, W.J. Gutowski, A. Sörensson, L.B. Diaz, I. Diouf, F.J. Doblas-Reyes, | - Maraun, D., D. Bojovic, W. Parker, T.G. Shepherd, S. Sobolowski, C. Caminade, A. Dosio, W.J. Gutowski, A. Sörensson, L.B. Diaz, I. Diouf, F.J. Doblas-Reyes, | ||
| - Meyer, H., K. Kandler, S. Dupont, J. Escribano, J. Girdwood, G. Nikolich, A. Alastuey, V. Etyemezian, C. González Flórez, A. González-Romero, | - Meyer, H., K. Kandler, S. Dupont, J. Escribano, J. Girdwood, G. Nikolich, A. Alastuey, V. Etyemezian, C. González Flórez, A. González-Romero, | ||
| + | - Moreno-Chamarro, | ||
| - Moreno-Montes, | - Moreno-Montes, | ||
| - {{: | - {{: | ||
| Line 40: | Line 52: | ||
| - Ospina, D., ... M. Kotz., et al. Ten new insights in climate science 2025 (2026). [[https:// | - Ospina, D., ... M. Kotz., et al. Ten new insights in climate science 2025 (2026). [[https:// | ||
| - Palma, L., A. Peraza, D. Civantos-Prieto, | - Palma, L., A. Peraza, D. Civantos-Prieto, | ||
| + | - Pickard, S., Baulenas Serra, E., Ellena, M. et al. (2026). Advancing climate adaptation through citizen engagement: knowledge development, | ||
| - Prior, T., A.S. Chahine, C.Y. Liang, I. Mettiäinen, | - Prior, T., A.S. Chahine, C.Y. Liang, I. Mettiäinen, | ||
| - Riipinen, I., S. Talvinen, A. Chassaing, P. Georgakaki, X. Li, C. Pérez García-Pando, | - Riipinen, I., S. Talvinen, A. Chassaing, P. Georgakaki, X. Li, C. Pérez García-Pando, | ||
| - Saurral, R., D. Campos, K. Grayson, V. Lapin, P. Trascasa-Castro, | - Saurral, R., D. Campos, K. Grayson, V. Lapin, P. Trascasa-Castro, | ||
| - Satpathy, S.S., Franzke, C.L.E., Verjans, V. and O'Kane T. (2026). Anthropogenic climate change leads to a pronounced reorganisation of wintertime North Atlantic atmospheric circulation regimes. [[https:// | - Satpathy, S.S., Franzke, C.L.E., Verjans, V. and O'Kane T. (2026). Anthropogenic climate change leads to a pronounced reorganisation of wintertime North Atlantic atmospheric circulation regimes. [[https:// | ||
| + | - Tarín-Carrasco, | ||
| - Vergara-Palacio, | - Vergara-Palacio, | ||
| + | - Verjans, V., Donat, M.G., Delgado-Torres, | ||
| - Zong, Z., M. Xia, C. Lin, X. Chen, L. Xue, Q. Li, Y. Jiang, C. Tian, X. Fan, Q. Yuan, X. Wang, Y. Zhu, J. Zhang, S. Lee, Y. Mu, J. Li, X. Fu, C. Ren, X. Huang, C. Yan, W. Nie, A. Badia, G. Zhang, A. Ding, R.-J. Huang, M. Kulmala, A. Saiz-Lopez, T. Wang and W. Wang (2026). Isotopic constraints on the origin of reactive chlorine in the troposphere. [[https:// | - Zong, Z., M. Xia, C. Lin, X. Chen, L. Xue, Q. Li, Y. Jiang, C. Tian, X. Fan, Q. Yuan, X. Wang, Y. Zhu, J. Zhang, S. Lee, Y. Mu, J. Li, X. Fu, C. Ren, X. Huang, C. Yan, W. Nie, A. Badia, G. Zhang, A. Ding, R.-J. Huang, M. Kulmala, A. Saiz-Lopez, T. Wang and W. Wang (2026). Isotopic constraints on the origin of reactive chlorine in the troposphere. [[https:// | ||
| Line 112: | Line 127: | ||
| - Marciani, M.G., M. Castrillo, G. Utrera, M.C. Acosta, B.P. Kinoshita and F.J. Doblas-Reyes (2025). Evaluating the impact of task aggregation in workflows with shared resource environments: | - Marciani, M.G., M. Castrillo, G. Utrera, M.C. Acosta, B.P. Kinoshita and F.J. Doblas-Reyes (2025). Evaluating the impact of task aggregation in workflows with shared resource environments: | ||
| - Martin-Martinez, | - Martin-Martinez, | ||
| - | - McAdam, R., Pérez-Aracil, | + | - McAdam, R., J. Pérez-Aracil, |
| - Meyer, H., K. Kandler, S. Dupont, J. Escribano, J. Girdwood, G. Nikolich, A. Alastuey, V. Etyemezian, C. González Flórez, A. González-Romero, | - Meyer, H., K. Kandler, S. Dupont, J. Escribano, J. Girdwood, G. Nikolich, A. Alastuey, V. Etyemezian, C. González Flórez, A. González-Romero, | ||
| - Moirano, G., C. Fletcher, J.C. Semenza and R. Lowe (2025). Short-term effect of temperature and precipitation pen on the incidence of West Nile Neuroinvasive Disease in Europe: a multi-country case-crossover analysis. [[https:// | - Moirano, G., C. Fletcher, J.C. Semenza and R. Lowe (2025). Short-term effect of temperature and precipitation pen on the incidence of West Nile Neuroinvasive Disease in Europe: a multi-country case-crossover analysis. [[https:// | ||
| Line 127: | Line 142: | ||
| - Pepper, M., P. Rebouças, I.R. Falcao, N.S. Clemente, R. Lowe, R. Schneider, J.M. Pescarini, G.F. Dos Santos, R.F. Andrade, T.R. Cortes, O.T. Ranzani, E.B. Brickley, M.L. Barreto and E.S. Paixao (2025). Prenatal exposure to ambient air pollution and subsequent risk of lower respiratory tract infections in childhood and adolescence: | - Pepper, M., P. Rebouças, I.R. Falcao, N.S. Clemente, R. Lowe, R. Schneider, J.M. Pescarini, G.F. Dos Santos, R.F. Andrade, T.R. Cortes, O.T. Ranzani, E.B. Brickley, M.L. Barreto and E.S. Paixao (2025). Prenatal exposure to ambient air pollution and subsequent risk of lower respiratory tract infections in childhood and adolescence: | ||
| - Paronuzzi-Ticco, | - Paronuzzi-Ticco, | ||
| - | - Pérez-Aracil, | + | - Pérez-Aracil, |
| - Pickard, S., D. Bojovic, M. Santamaria-Varas, | - Pickard, S., D. Bojovic, M. Santamaria-Varas, | ||
| - Proestakis, E., V. Amiridis, C. Pérez García-Pando, | - Proestakis, E., V. Amiridis, C. Pérez García-Pando, | ||
| Line 271: | Line 286: | ||
| - Thondoo, M., E.R.I. Mogo, L. Tatah, M. Muti, K.R. van Daalen, T. Muzenda, R. Boscott, O. Uwais, G. Farmer, A. Yue, S. Dalzell, G. Mukoma, D. Bhagtani, S. Matina, P.M. Dambisya, K. Okop, C. Ebikeme, L. Micklesfield, | - Thondoo, M., E.R.I. Mogo, L. Tatah, M. Muti, K.R. van Daalen, T. Muzenda, R. Boscott, O. Uwais, G. Farmer, A. Yue, S. Dalzell, G. Mukoma, D. Bhagtani, S. Matina, P.M. Dambisya, K. Okop, C. Ebikeme, L. Micklesfield, | ||
| - Thunis, P., J. Kuenen, E. Pisoni, B. Bessagnet, M. Banja, L. Gawuc, K. Szymankiewicz, | - Thunis, P., J. Kuenen, E. Pisoni, B. Bessagnet, M. Banja, L. Gawuc, K. Szymankiewicz, | ||
| - | - Torralba, V., S. Materia, L. Cavicchia, M.C. Álvarez-Castro, | + | - Torralba, V., S. Materia, L. Cavicchia, M.C. Álvarez-Castro, |
| - Torres-Vázquez, | - Torres-Vázquez, | ||
| - Treskova, M., T. Montalvo, J. Rocklöv, C. Hatfield, F. Bartumeus, S. Dasgupta, J. Encarnação, | - Treskova, M., T. Montalvo, J. Rocklöv, C. Hatfield, F. Bartumeus, S. Dasgupta, J. Encarnação, | ||