Select Publications

Preprints

Kelemen FD; Steinig S; Boer AMD; Zhu J; Chan W-L; Niezgodzki I; Hutchinson D; Knorr G; Abe-Ouchi A; Ahrens B, 2023, Meridional Heat Transport in the DeepMIP Eocene ensemble: non-CO2 and CO2 effects, , http://dx.doi.org/10.22541/essoar.167065777.72214683/v2

Tibbett E; Burls NJ; Hutchinson D; Feakins SJ, 2022, Proxy-Model Comparison for the Eocene-Oligocene Transition in Southern High Latitudes, , http://dx.doi.org/10.1002/essoar.10511735.2

Kelemen FD; Steinig S; Boer AMD; Zhu J; Chan W-L; Niezgodzki I; Hutchinson D; Knorr G; Abe-Ouchi A; Ahrens B, 2022, Meridional Heat Transport in the DeepMIP Eocene ensemble: non-CO2 and CO2 effects, , http://dx.doi.org/10.22541/essoar.167065777.72214683/v1

Cramwinckel M; Burls NJ; Fahad AA; Knapp S; West CK; Reichgelt T; Greenwood DR; Chan W-L; Donnadieu Y; Hutchinson D; De Boer AM; Ladant J-B; Morozova P; Niezgodzki I; Knorr G; Steinig S; Zhang Z; Zhu J; Feng R; Lunt DJ; Abe-Ouchi A; Inglis GN, 2022, Global- and regional-scale hydrological response to early Eocene warmth, , http://dx.doi.org/10.1002/essoar.10512308.1

Goudsmit B; Lansu A; Baatsen M; von der Heydt AS; de Winter NJ; Zhang Y; Abe-Ouchi A; De Boer AM; Chan W-L; Donnadieu Y; Hutchinson D; Knorr G; Ladant J-B; Morozova PA; Niezgodzki I; Steinig S; Tripati A; Zhang Z; Zhu J; Ziegler M, 2022, The relationship between the global mean deep-sea and surface temperature during the Early Eocene, , http://dx.doi.org/10.1002/essoar.10512236.2

Goudsmit B; Lansu A; Baatsen M; von der Heydt AS; de Winter NJ; Zhang Y; Abe-Ouchi A; De Boer AM; Chan W-L; Donnadieu Y; Hutchinson D; Knorr G; Ladant J-B; Morozova PA; Niezgodzki I; Steinig S; Tripati A; Zhang Z; Zhu J; Ziegler M, 2022, The relationship between the global mean deep-sea and surface temperature during the Early Eocene, , http://dx.doi.org/10.1002/essoar.10512236.1

Tibbett E; Burls NJ; Hutchinson D; Feakins SJ, 2022, Proxy-Model Comparison for the Eocene-Oligocene Transition in Southern High Latitudes, , http://dx.doi.org/10.1002/essoar.10511735.1

Williams C; Lunt DJ; Salzmann U; Reichgelt T; Inglis GN; Greenwood DR; Chan W-L; Abe-Ouchi A; Donnadieu Y; Hutchinson D; De Boer AM; Ladant J-B; Morozova PA; Niezgodzki I; Knorr G; Steinig S; Zhong-Shi Z; Zhu J; Huber M; Otto-Bliesner BL, 2022, The African monsoon during the early Eocene from the DeepMIP simulations, , http://dx.doi.org/10.1002/essoar.10510285.1

Śliwińska KK; Coxall HK; Hutchinson DK; Liebrand D; Schouten S; de Boer AM, 2022, Sea surface temperature evolution of the North Atlantic Ocean across the Eocene-Oligocene Transition, , http://dx.doi.org/10.5194/cp-2021-184

Burls NJ; Bradshaw C; De Boer AM; Herold N; Huber M; Pound M; Donnadieu Y; Farnsworth A; Frigola Boix A; Gasson EGW; von der Heydt A; Hutchinson DK; Knorr G; Lawrence KT; Lear CH; Li X; Lohmann G; Lunt DJ; Marzocchi A; Prange M; Riihimaki CA; Sarr A-C; Siler N; Zhang Z, 2021, Simulating Miocene warmth: insights from an opportunistic Multi-Model ensemble (MioMIP1), , http://dx.doi.org/10.1002/essoar.10505870.1

Hutchinson DK; Coxall HK; Lunt DJ; Steinthorsdottir M; de Boer AM; Baatsen M; von der Heydt A; Huber M; Kennedy-Asser AT; Kunzmann L; Ladant J-B; Lear CH; Moraweck K; Pearson PN; Piga E; Pound MJ; Salzmann U; Scher HD; Sijp WP; Śliwińska KK; Wilson PA; Zhang Z, 2020, The Eocene-Oligocene transition: a review of marine and terrestrial proxy data, models and model-data comparisons, , http://dx.doi.org/10.5194/cp-2020-68

Lunt DJ; Bragg F; Chan W-L; Hutchinson DK; Ladant J-B; Niezgodzki I; Steinig S; Zhang Z; Zhu J; Abe-Ouchi A; de Boer AM; Coxall HK; Donnadieu Y; Knorr G; Langebroek PM; Lohmann G; Poulsen CJ; Sepulchre P; Tierney J; Valdes PJ; Dunkley Jones T; Hollis CJ; Huber M; Otto-Bliesner BL, 2020, DeepMIP: Model intercomparison of early Eocene climatic optimum (EECO) large-scale climate features and comparison with proxy data, , http://dx.doi.org/10.5194/cp-2019-149

Hutchinson DK; de Boer AM; Coxall HK; Caballero R; Nilsson J; Baatsen M, 2018, Climate sensitivity and meridional overturning circulation in the late Eocene using GFDL CM2.1, , http://dx.doi.org/10.5194/cp-2017-161


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