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Malone, R.W.; Kersebaum, K.C.; Kaspar, T.C.; Ma, L.; Jaynes, D.B.; Gillette, K. Winter rye as a cover crop reduces nitrate loss to subsurface drainage as simulated by HERMES 2017 Agricultural Water Management 184 156-169 details   doi
Dono, G.; Cortignani, R.; Dell’Unto, D.; Deligios, P.; Doro, L.; Lacetera, N.; Mula, L.; Pasqui, M.; Quaresima, S.; Vitali, A.; Roggero, P.P. Winners and losers from climate change in agriculture: Insights from a case study in the Mediterranean basin 2016 Agricultural Systems 147 65-75 details   doi
Tao, F.; Palosuo, T.; Roetter, R.P.; Hernandez Diaz-Ambrona, C.G.; Ines Minguez, M.; Semenov, M.A.; Kersebaum, K.C.; Cammarano, D.; Specka, X.; Nendel, C.; Srivastava, A.K.; Ewert, F.; Padovan, G.; Ferrise, R.; Martre, P.; Rodriguez, L.; Ruiz-Ramos, M.; Gaiser, T.; Hohn, J.G.; Salo, T.; Dibari, C.; Schulman, A.H. Why do crop models diverge substantially in climate impact projections? A comprehensive analysis based on eight barley crop models 2020 Agricultural and Forest Meteorology 281 107851 details   doi
Rötter, R.P.; Tao, F.; Höhn, J.G.; Palosuo, T. Use of crop simulation modelling to aid ideotype design of future cereal cultivars 2015 Journal of Experimental Botany 66 3463-3476 details   doi
Challinor, A.J.; Smith, M.S.; Thornton, P. Use of agro-climate ensembles for quantifying uncertainty and informing adaptation 2013 Agricultural and Forest Meteorology 170 2-7 details   doi
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