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Dive into the research topics where Igor Niezgodzki is active.

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Featured researches published by Igor Niezgodzki.


Paleoceanography | 2017

Late Cretaceous climate simulations with different CO2 levels and subarctic gateway configurations: A model-data comparison

Igor Niezgodzki; Gregor Knorr; Gerrit Lohmann; Jarosław Tyszka; Paul Markwick

We investigate the impact of different CO2 levels and different subarctic gateway configurations on the surface temperatures during the latest Cretaceous using the Earth System Model COSMOS. The simulated temperatures are compared with the surface temperature reconstructions based on a recent compilation of the latest Cretaceous proxies. In our numerical experiments, the CO2 level ranges from 1 to 6 times the preindustrial (PI) CO2 level of 280 ppm. On a global scale, the most reasonable match between modeling and proxy data is obtained for the experiments with 3 to 5 × PI CO2 concentrations. However, the simulated low- (high-) latitude temperatures are too high (low) as compared to the proxy data. The moderate CO2 levels scenarios might be more realistic, if we take into account proxy data and the dead zone effect criterion. Furthermore, we test if the model-data discrepancies can be caused by too simplistic proxy-data interpretations. This is distinctly seen at high latitudes, where most proxies are biased toward summer temperatures. Additional sensitivity experiments with different ocean gateway configurations and constant CO2 level indicate only minor surface temperatures changes (<~1°C) on a global scale, with higher values (up to ~8°C) on a regional scale. These findings imply that modeled and reconstructed temperature gradients are to a large degree only qualitatively comparable, providing challenges for the interpretation of proxy data and/or model sensitivity. With respect to the latter, our results suggest that an assessment of greenhouse worlds is best constrained by temperatures in the midlatitudes.


Palaeogeography, Palaeoclimatology, Palaeoecology | 2016

Response of Central European SST to atmospheric pCO2 forcing during the Oligocene – A combined proxy data and numerical climate model approach

Eric Otto Walliser; Gerrit Lohmann; Igor Niezgodzki; Thomas Tütken; Bernd R. Schöne


Palaeogeography, Palaeoclimatology, Palaeoecology | 2017

Inter-annual climate variability in Europe during the Oligocene icehouse

Eric Otto Walliser; Gerrit Lohmann; Igor Niezgodzki; Bernd R. Schöne


Earth and Planetary Science Letters | 2018

Astronomically paced changes in deep-water circulation in the western North Atlantic during the middle Eocene

Maximilian Vahlenkamp; Igor Niezgodzki; David De Vleeschouwer; Torsten Bickert; Dustin T. Harper; Sandra Kirtland Turner; Gerrit Lohmann; Philip F. Sexton; James C. Zachos; Heiko Pälike


Supplement to: Walliser, EO et al. (2017): Inter-annual climate variability in Europe during the Oligocene icehouse. Palaeogeography, Palaeoclimatology, Palaeoecology, 475, 140-153, https://doi.org/10.1016/j.palaeo.2017.03.020 | 2018

Growth increment width measurement and SGIshell data, and COSMOS model simulations

Eric Otto Walliser; Gerrit Lohmann; Igor Niezgodzki; Bernd R. Schöne


In supplement to: Walliser, EO et al. (2017): Inter-annual climate variability in Europe during the Oligocene icehouse. Palaeogeography, Palaeoclimatology, Palaeoecology, 475, 140-153, https://doi.org/10.1016/j.palaeo.2017.03.020 | 2018

Growth increment width measurement and SGIshell data, Kassel Formation, Kassel Basin, middle Chattian (2009-KS6-D23R)

Eric Otto Walliser; Gerrit Lohmann; Igor Niezgodzki; Bernd R. Schöne


In supplement to: Walliser, EO et al. (2017): Inter-annual climate variability in Europe during the Oligocene icehouse. Palaeogeography, Palaeoclimatology, Palaeoecology, 475, 140-153, https://doi.org/10.1016/j.palaeo.2017.03.020 | 2018

Growth increment width measurement and SGIshell data, Bilzen Formation, southern North Sea Basin, middle Rupelian (RGM.794117_F1R)

Eric Otto Walliser; Gerrit Lohmann; Igor Niezgodzki; Bernd R. Schöne


In supplement to: Walliser, EO et al. (2017): Inter-annual climate variability in Europe during the Oligocene icehouse. Palaeogeography, Palaeoclimatology, Palaeoecology, 475, 140-153, https://doi.org/10.1016/j.palaeo.2017.03.020 | 2018

Growth increment width measurement and SGIshell data, Stadecken Formation, Mainz Basin, late Rupelian (MB-Sph-5)

Eric Otto Walliser; Gerrit Lohmann; Igor Niezgodzki; Bernd R. Schöne


Earth and Planetary Science Letters | 2018

Ocean and climate response to North Atlantic seaway changes at the onset of long-term Eocene cooling

Maximilian Vahlenkamp; Igor Niezgodzki; David De Vleeschouwer; Gerrit Lohmann; Torsten Bickert; Heiko Pälike


Supplement to: Niezgodzki, I et al. (2017): Late Cretaceous climate simulations with different CO2 levels and subarctic gateway configurations: A model-data comparison. Paleoceanography, 32, 19 pp, https://doi.org/10.1002/2016PA003055 | 2017

COSMOS model Late Cretaceous surface temperature results with different CO2 levels and gateway configurations

Igor Niezgodzki; Gregor Knorr; Gerrit Lohmann; Jarosław Tyszka; Paul Markwick

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Jarosław Tyszka

Polish Academy of Sciences

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