Zobrazeno 1 - 10
of 136
pro vyhledávání: '"Heinz Wanner"'
Autor:
Takuro Kobashi, Laurie Menviel, Aurich Jeltsch-Thömmes, Bo M. Vinther, Jason E. Box, Raimund Muscheler, Toshiyuki Nakaegawa, Patrik L. Pfister, Michael Döring, Markus Leuenberger, Heinz Wanner, Atsumu Ohmura
Publikováno v:
Scientific Reports, Vol 7, Iss 1, Pp 1-10 (2017)
Abstract Solar variability has been hypothesized to be a major driver of North Atlantic millennial-scale climate variations through the Holocene along with orbitally induced insolation change. However, another important climate driver, volcanic forci
Externí odkaz:
https://doaj.org/article/52cbc67321eb436fb717441092e04d36
Autor:
Peter Stucki, Ralph Rickli, Stefan Brönnimann, Olivia Martius, Heinz Wanner, Dietmar Grebner, Jürg Luterbacher
Publikováno v:
Meteorologische Zeitschrift, Vol 21, Iss 6, Pp 531-550 (2012)
The generation of 24 extreme floods in large catchments of the central Alps is analyzed from instrumental and documentary data, newly digitized observations of precipitation (DigiHom) and 20th Century Reanalysis (20CR) data. Extreme floods are determ
Externí odkaz:
https://doaj.org/article/15ae2410ad2d404c9beb624a0d677bd1
Publikováno v:
Meteorologische Zeitschrift, Vol 7, Iss 3, Pp 99-111 (1998)
Since 1945 a total of 34 daily parameters called the Alpine Weather Statistics (AWS) has been available for the central European Alps. The parameters are defined by the Swiss Meteorological Institute based as much as possible on objective criteria. T
Externí odkaz:
https://doaj.org/article/15ffd1e401284a4a9d7ff572c8fc6b56
Publikováno v:
Zeitschrift für Württembergische Landesgeschichte. 81:473-474
Christian Pfister / Heinz Wanner, Klima und Gesellschaft in Europa. Die letzten tausend Jahre. Bern: Haupt Verlag 2021. 424 S., zahlr. Farb- und s/w Abb. ISBN 978-3-258-08152-3. Geb. € 49,–
Publikováno v:
Quaternary Science Reviews. 287:107531
The Little Ice Age (LIA), which lasted from about 1250 to 1860 AD, was likely the coldest period of the last 8000 years. Using new documentary data and analyses of alpine glacier fluctuations, the complex transition from the Medieval Climate Anomaly
Autor:
Heinz Wanner
Early studies on the evolution of glaciers argue that the warm Early Holocene transitioned into a Late-Holocene Neoglacial, with numerous glacial advances due to decreasing solar forcing in the boreal summer. The assumption of decreasing temperatures
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::aca84c8a0d4b930eb99c40c0a92ef145
Publikováno v:
The Holocene. 26:990-993
For several centuries in early Medieval times the climate system was relatively unperturbed by natural forcing factors, resulting in a unique period of climate stability. We argue that this represents a reference state for the Common Era, well before
Autor:
Martin Ziegler, Johannes Sutter, Thibaut Caley, Katarzyna Marcisz, Giuseppe Cortese, Maria Fernanda Sanchez Goñi, Anne de Vernal, Jacqueline Austermann, Alessio Rovere, Katrin J. Meissner, Carlo Barbante, Basil A. S. Davis, Paul J. Valdes, Anders E. Carlson, Bette L. Otto-Bliesner, Samuel L Jaccard, Jesper Sjolte, Eric W. Wolff, Stéphane Affolter, Sarah A. Finkelstein, Willy Tinner, Nerilie J. Abram, Thomas Felis, Zicheng Yu, Kelsey A. Dyez, Heinz Wanner, Christoph Nehrbass-Ahles, Max D. Holloway, Alan C. Mix, Valérie Masson-Delmotte, Qing Yan, Paul Gierz, Bjørg Risebrobakken, Anne-Laure Daniau, Victor Brovkin, Erin L McClymont, Michal Kucera, Patricio A. Velasquez Alvárez, Daniele Colombaroli, Christoph C. Raible, Emilie Capron, Juan Antonio Ballesteros-Cánovas, Michael Sarnthein, Julia Gottschalk, Hubertus Fischer, Liping Zhou, Jennifer R. Marlon, Julien Emile-Geay, Olga V. Churakova (Sidorova), Marie-France Loutre, Brian F. Cumming, Daniel J. Lunt, Philippe Martinez, Jennifer Saleem Arrigo, Sherilyn C. Fritz, Thomas F. Stocker, Hendrik Vogel, Fortunat Joos, Pepijn Johannes Bakker
Publikováno v:
Fischer, H, Meissner, K J, Mix, A C, Abram, N J, Austermann, J, Brovkin, V, Capron, E, Colombaroli, D, Daniau, A L, Dyez, K A, Felis, T, Finkelstein, S A, Jaccard, S L, McClymont, E L, Rovere, A, Sutter, J, Wolff, E W, Affolter, S, Bakker, P, Ballesteros-Cánovas, J A, Barbante, C, Caley, T, Carlson, A E, Churakova, O, Cortese, G, Cumming, B F, Davis, B A S, De Vernal, A, Emile-Geay, J, Fritz, S C, Gierz, P, Gottschalk, J, Holloway, M D, Joos, F, Kucera, M, Loutre, M F, Lunt, D J, Marcisz, K, Marlon, J R, Martinez, P, Masson-Delmotte, V, Nehrbass-Ahles, C, Otto-Bliesner, B L, Raible, C C, Risebrobakken, B, Sánchez Goñi, M F, Arrigo, J S, Sarnthein, M, Sjolte, J, Stocker, T F, Velasquez Alvárez, P A, Tinner, W, Valdes, P J, Vogel, H, Wanner, H, Yan, Q, Yu, Z, Ziegler, M & Zhou, L 2018, ' Palaeoclimate constraints on the impact of 2 °c anthropogenic warming and beyond ', Nature Geoscience, vol. 11, no. 7, pp. 474-485 . https://doi.org/10.1038/s41561-018-0146-0
Nature Geoscience, 11(7), 474. Nature Publishing Group
Nature Geoscience
Nature Geoscience, Nature Publishing Group, 2018, 11 (7), pp.474-485. ⟨10.1038/s41561-018-0146-0⟩
Nature geoscience, 2018, Vol.11, pp.474-485 [Peer Reviewed Journal]
Fischer, H, Meissner, K J, Mix, A C, Abram, N J, Austermann, J, Brovkin, V, Capron, E, Colombaroli, D, Daniau, A-L, Dyez, K A, Felis, T, Finkelstein, S A, Jaccard, S L, McClymont, E L, Rovere, A, Sutter, J, Wolff, E W, Affolter, S, Bakker, P, Ballesteros-Canovas, J A, Barbante, C, Caley, T, Carlson, A E, Churakova (Sidorova), O, Cortese, G, Cumming, B F, Davis, B A S, de Vernal, A, Emile-Geay, J, Fritz, S C, Gierz, P, Gottschalk, J, Holloway, M D, Joos, F, Kucera, M, Loutre, M-F, Lunt, D J, Marcisz, K, Marlon, J R, Martinez, P, Masson-Delmotte, V, Nehrbass-Ahles, C, Otto-Bliesner, B L, Raible, C C, Risebrobakken, B, Goni, M F S, Arrigo, J S, Sarnthein, M, Sjolte, J, Stocker, T F, Alvarez, P A V, Tinner, W, Valdes, P J, Vogel, H, Wanner, H, Yan, Q, Yu, Z, Ziegler, M & Zhou, L 2018, ' Palaeoclimate constraints on the impact of 2 degrees C anthropogenic warming and beyond ', Nature Geoscience, vol. 11, no. 7, pp. 474-485 . https://doi.org/10.1038/s41561-018-0146-0
Nature Geoscience, 2018, 11 (7), pp.474-485. ⟨10.1038/s41561-018-0146-0⟩
Fischer, H, Meissner, K J, Mix, A C, Abram, N J, Austermann, J, Brovkin, V, Capron, E, Colombaroli, D, Daniau, A L, Dyez, K A, Felis, T, Finkelstein, S A, Jaccard, S L, McClymont, E L, Rovere, A, Sutter, J, Wolff, E W, Affolter, S, Bakker, P, Ballesteros-Cánovas, J A, Barbante, C, Caley, T, Carlson, A E, Churakova, O, Cortese, G, Cumming, B F, Davis, B A S, De Vernal, A, Emile-Geay, J, Fritz, S C, Gierz, P, Gottschalk, J, Holloway, M D, Joos, F, Kucera, M, Loutre, M F, Lunt, D J, Marcisz, K, Marlon, J R, Martinez, P, Masson-Delmotte, V, Nehrbass-Ahles, C, Otto-Bliesner, B L, Raible, C C, Risebrobakken, B, Sánchez Goñi, M F, Arrigo, J S, Sarnthein, M, Sjolte, J & Valdes, P J 2018, ' Palaeoclimate constraints on the impact of 2 °c anthropogenic warming and beyond ', Nature Geoscience, vol. 11, no. 7, pp. 474-485 . https://doi.org/10.1038/s41561-018-0146-0
Nature Geoscience, 11(7), 474. Nature Publishing Group
Nature Geoscience
Nature Geoscience, Nature Publishing Group, 2018, 11 (7), pp.474-485. ⟨10.1038/s41561-018-0146-0⟩
Nature geoscience, 2018, Vol.11, pp.474-485 [Peer Reviewed Journal]
Fischer, H, Meissner, K J, Mix, A C, Abram, N J, Austermann, J, Brovkin, V, Capron, E, Colombaroli, D, Daniau, A-L, Dyez, K A, Felis, T, Finkelstein, S A, Jaccard, S L, McClymont, E L, Rovere, A, Sutter, J, Wolff, E W, Affolter, S, Bakker, P, Ballesteros-Canovas, J A, Barbante, C, Caley, T, Carlson, A E, Churakova (Sidorova), O, Cortese, G, Cumming, B F, Davis, B A S, de Vernal, A, Emile-Geay, J, Fritz, S C, Gierz, P, Gottschalk, J, Holloway, M D, Joos, F, Kucera, M, Loutre, M-F, Lunt, D J, Marcisz, K, Marlon, J R, Martinez, P, Masson-Delmotte, V, Nehrbass-Ahles, C, Otto-Bliesner, B L, Raible, C C, Risebrobakken, B, Goni, M F S, Arrigo, J S, Sarnthein, M, Sjolte, J, Stocker, T F, Alvarez, P A V, Tinner, W, Valdes, P J, Vogel, H, Wanner, H, Yan, Q, Yu, Z, Ziegler, M & Zhou, L 2018, ' Palaeoclimate constraints on the impact of 2 degrees C anthropogenic warming and beyond ', Nature Geoscience, vol. 11, no. 7, pp. 474-485 . https://doi.org/10.1038/s41561-018-0146-0
Nature Geoscience, 2018, 11 (7), pp.474-485. ⟨10.1038/s41561-018-0146-0⟩
Fischer, H, Meissner, K J, Mix, A C, Abram, N J, Austermann, J, Brovkin, V, Capron, E, Colombaroli, D, Daniau, A L, Dyez, K A, Felis, T, Finkelstein, S A, Jaccard, S L, McClymont, E L, Rovere, A, Sutter, J, Wolff, E W, Affolter, S, Bakker, P, Ballesteros-Cánovas, J A, Barbante, C, Caley, T, Carlson, A E, Churakova, O, Cortese, G, Cumming, B F, Davis, B A S, De Vernal, A, Emile-Geay, J, Fritz, S C, Gierz, P, Gottschalk, J, Holloway, M D, Joos, F, Kucera, M, Loutre, M F, Lunt, D J, Marcisz, K, Marlon, J R, Martinez, P, Masson-Delmotte, V, Nehrbass-Ahles, C, Otto-Bliesner, B L, Raible, C C, Risebrobakken, B, Sánchez Goñi, M F, Arrigo, J S, Sarnthein, M, Sjolte, J & Valdes, P J 2018, ' Palaeoclimate constraints on the impact of 2 °c anthropogenic warming and beyond ', Nature Geoscience, vol. 11, no. 7, pp. 474-485 . https://doi.org/10.1038/s41561-018-0146-0
International audience; Over the past 3.5 million years, there have been several intervals when climate conditions were warmer than during the pre-industrial Holocene. Although past intervals of warming were forced differently than future anthropogen
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::94997fbd46fa15828529724f612b8459
https://research.vu.nl/en/publications/2b78fee6-99a6-4b79-b31d-ce39c1ee178a
https://research.vu.nl/en/publications/2b78fee6-99a6-4b79-b31d-ce39c1ee178a
Autor:
Heinz J. Zumbühl, Heinz Wanner, Andreas Pauling, Daniel Steiner, Atle Nesje, Jürg Luterbacher, Samuel U. Nussbaumer
Publikováno v:
Steiner, Daniel; Pauling, Andreas; Nussbaumer, Samuel U.; Nesje, Atle; Luterbacher, Jürg; Wanner, Heinz; Zumbühl, Heinz J. (2008). Sensitivity of European glaciers to precipitation and temperature-two case studies. Climatic change, 90(4), pp. 413-441. Dordrecht: Springer Netherlands 10.1007/s10584-008-9393-1
A nonlinear backpropagation network (BPN) has been trained with high-resolution multiproxy reconstructions of temperature and precipitation (input data) and glacier length variations of the Alpine Lower Grindelwald Glacier, Switzerland (output data).
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::fec3c4dfda04cf0538173fff1e99766d
http://doc.rero.ch/record/319812/files/10584_2008_Article_9393.pdf
http://doc.rero.ch/record/319812/files/10584_2008_Article_9393.pdf