Meeresspiegelanstieg seit 1850 (German Wikipedia)

Analysis of information sources in references of the Wikipedia article "Meeresspiegelanstieg seit 1850" in German language version.

refsWebsite
Global rank German rank
2nd place
3rd place
1,778th place
1,959th place
120th place
143rd place
low place
2,711th place
low place
low place
123rd place
6th place
274th place
152nd place
2,608th place
325th place
18th place
181st place
low place
low place
3,307th place
493rd place
low place
low place
low place
low place
low place
low place
9th place
9th place
4th place
7th place
2,529th place
302nd place
low place
low place
344th place
700th place
774th place
980th place
460th place
28th place
low place
2,861st place
1,433rd place
86th place
415th place
779th place
960th place
774th place
234th place
203rd place
low place
low place
low place
3,392nd place
low place
low place
75th place
133rd place
212th place
598th place

24hamburg.de

atmos-chem-phys-discuss.net

  • J. Hansen, M. Sato, P. Hearty, R. Ruedy, M. Kelley, V. Masson-Delmotte, G. Russell, G. Tselioudis, J. Cao, E. Rignot, I. Velicogna, E. Kandiano, K. von Schuckmann, P. Kharecha, A. N. Legrande, M. Bauer, K.-W. Lo: Ice melt, sea level rise and superstorms: evidence from paleoclimate data, climate modeling, and modern observations that 2 °C global warming is highly dangerous. In: Atmospheric Chemistry and Physics (Discussions). 15. Jahrgang, Nr. 14, 2015, S. 20059–20179, doi:10.5194/acpd-15-20059-2015 (englisch, atmos-chem-phys-discuss.net [PDF]).

awi.de

epic.awi.de

  • Jørn Thiede, Catherine Jessen, Paul Knutz, Antoon Kuijpers, Naja Mikkelsen, Niels Nørgaard-Pedersen, Robert F. Spielhagen: Millions of Years of Greenland Ice Sheet History Recorded in Ocean Sediments. In: Polarforschung (GEOMAR Helmholtz-Zentrum für Ozeanforschung Kiel). 80. Jahrgang, Nr. 3, 2011, S. 141–159 (englisch, awi.de [PDF]).
  • Matthew B. Lythe, David G. Vaughan: BEDMAP: A new ice thickness and subglacial topographic model of Antarctica. In: Journal of Geophysical Research, 106, 2001, S. 11335–11351 (awi.de)

barnsteinerfilm.org

clim-past.net

  • E. J. Stone, PD. J. Lunt, J. D. Annan, J. C. Hargreaves: Quantification of the Greenland ice sheet contribution to Last Interglacial sea level rise. In: Climate of the Past. 9. Jahrgang, März 2013, S. 621–639, doi:10.5194/cp-9-621-2013 (englisch, clim-past.net [PDF]).
  • A. Robinson, R. Calov, A. Ganopolski: Greenland ice sheet model parameters constrained using simulations of the Eemian Interglacial. In: Climate of the Past. 7. Jahrgang, Nr. 2, April 2011, S. 381–396, doi:10.5194/cp-7-381-2011 (englisch, clim-past.net [PDF]).

climatecentral.org

sealevel.climatecentral.org

climatechange2013.org

  • J.A. Church, P.U. Clark, A. Cazenave, J.M. Gregory, S. Jevrejeva, A. Levermann, M.A. Merrifield, G.A. Milne, R.S. Nerem, P.D. Nunn, A.J. Payne, W.T. Pfeffer, D. Stammer and A.S. Unnikrishnan, 2013: Sea Level Change. In: Climate Change 2013: The Physical Science Basis. Contribution of Working Group I to the Fifth Assessment Report of the Intergovernmental Panel on Climate Change [Stocker, T.F., D. Qin, G.-K. Plattner, M. Tignor, S.K. Allen, J. Boschung, A. Nauels, Y. Xia, V. Bex and P.M. Midgley (eds.)]. Cambridge University Press, Cambridge UK / New York NY; climatechange2013.org (PDF; 32,1 MB)

doi.org

  • IPCC (Hrsg.): Climate Change 2023: Synthesis Report. Contribution of Working Groups I, II and III to the Sixth Assessment Report of the Intergovernmental Panel on Climate Change. 2023, A.2.1, B.3.1, B.3.2, B.3.3, doi:10.59327/IPCC/AR6-9789291691647.
  • Robert J. Nicholls, Richard Tol: Impacts and responses to sea-level rise: a global analysis of the SRES scenarios over the twenty-first century. In: Phil. Trans. R. Soc. A, Volume 364, Number 1841, April 2006, S. 1073–1095. doi:10.1098/rsta.2006.1754
  • Simone Galeotti, Robert DeConto, Timothy Naish, Paolo Stocchi, Fabio Florindo, Mark Pagani, Peter Barrett, Steven M. Bohaty, Luca Lanci, David Pollard, Sonia Sandroni, Franco M. Talarico, James C. Zachos: Antarctic Ice Sheet variability across the Eocene-Oligocene boundary climate transition. In: Science. 352. Jahrgang, Nr. 6281, April 2016, S. 76–80, doi:10.1126/science.aab0669 (englisch, researchgate.net [PDF]).
  • Niklaus Merz, Andreas Born, Christoph C. Raible, Thomas F. Stocker: Warm Greenland during the last interglacial: the role of regional changes in sea ice cover. In: Climate of the Past. 12. Jahrgang, Oktober 2016, S. 2011–2031, doi:10.5194/cp-12-2011-2016 (englisch, unibe.ch [PDF]).
  • R. E. Kopp, A. Dutton, A. E. Carlson: Centennial to millennial-scale sea-level change during the Holocene and Last Interglacial periods. In: Past Global Changes Magazine. 25. Jahrgang, Nr. 3, 2017, S. 148–149, doi:10.22498/pages.25.3.148 (englisch).
  • A. Dutton, K. Lambeck: Ice Volume and Sea Level During the Last Interglacial. In: Science. 337. Jahrgang, Nr. 6091, Juli 2012, S. 216–219, doi:10.1126/science.1205749 (englisch, harvard.edu [PDF]).
  • Michael J. O’Leary, Paul J. Hearty, William G. Thompson, Maureen E. Raymo, Jerry X. Mitrovica, Jody M. Webster: Ice sheet collapse following a prolonged period of stable sea level during the last interglacial. In: Nature Geoscience. 6. Jahrgang, Juli 2013, S. 796–800, doi:10.1038/ngeo1890 (englisch, researchgate.net [PDF]).
  • E. J. Stone, PD. J. Lunt, J. D. Annan, J. C. Hargreaves: Quantification of the Greenland ice sheet contribution to Last Interglacial sea level rise. In: Climate of the Past. 9. Jahrgang, März 2013, S. 621–639, doi:10.5194/cp-9-621-2013 (englisch, clim-past.net [PDF]).
  • A. Robinson, R. Calov, A. Ganopolski: Greenland ice sheet model parameters constrained using simulations of the Eemian Interglacial. In: Climate of the Past. 7. Jahrgang, Nr. 2, April 2011, S. 381–396, doi:10.5194/cp-7-381-2011 (englisch, clim-past.net [PDF]).
  • Jessica E. Tierney, Jiang Zhu, Jonathan King, Steven B. Malevich, Gregory J. Hakim, Christopher J. Poulsen: Glacial cooling and climate sensitivity revisited. In: Nature. 584. Jahrgang, Nr. 7822, August 2020, S. 569–573, doi:10.1038/s41586-020-2617-x (englisch).
  • B. Fox-Kemper, H. T. Hewitt, C. Xiao, G. Aðalgeirsdóttir, S. S. Drijfhout, T. L. Edwards, N. R. Golledge, M. Hemer, R. E. Kopp, G. Krinner, A. Mix, D. Notz, S. Nowicki, I. S. Nurhati, L. Ruiz, J.-B. Sallée, A. B. A. Slangen, Y. Yu: Ocean, Cryosphere and Sea Level Change. In: Climate Change 2021: The Physical Science Basis. Contribution of Working Group I to the Sixth Assessment Report of the Intergovernmental Panel on Climate Change. S. 1220–1221, 1287–1289, 1295–1315, doi:10.1017/9781009157896.011.
  • B. Fox-Kemper, H. T. Hewitt, C. Xiao, G. Aðalgeirsdóttir, S. S. Drijfhout, T. L. Edwards, N. R. Golledge, M. Hemer, R. E. Kopp, G. Krinner, A. Mix, D. Notz, S. Nowicki, I. S. Nurhati, L. Ruiz, J.-B. Sallée, A. B. A. Slangen, Y. Yu: Ocean, Cryosphere and Sea Level Change. In: Climate Change 2021: The Physical Science Basis. Contribution of Working Group I to the Sixth Assessment Report of the Intergovernmental Panel on Climate Change. S. 1289–1290, 1318, doi:10.1017/9781009157896.011.
  • Peter D. Nördlinger, Kay R. Brower: The melting of floating ice raises the ocean level. In: Geophysical Journal International. Band 170, Nr. 1, April 2007, S. 145–150, doi:10.1111/j.1365-246X.2007.03472.x.
  • Jerry X. Mitrovica, Natalya Gomez, Peter U. Clark: The Sea-Level Fingerprint of West Antarctic Collapse. In: Science, 323, Nr. 5915, 2009, S. 753, doi:10.1126/science.1166510
  • Vgl. Abb. 16 in: I. Allison, N.L. Bindoff, R.A. Bindschadler, P.M. Cox, N. de Noblet, M.H. England, J.E. Francis, N. Gruber, A.M. Haywood, D.J. Karoly, G. Kaser, C. Le Quéré, T.M. Lenton, M.E. Mann, B.I. McNeil, A.J. Pitman, S. Rahmstorf, E. Rignot, H.J. Schellnhuber, S.H. Schneider, S.C. Sherwood, R.C.J. Somerville, K. Steffen, E.J. Steig, M. Visbeck, A.J. Weaver: The Copenhagen Diagnosis, 2009: Updating the World on the Latest Climate Science. Hrsg.: The University of New South Wales Climate Change Research Centre. 2009.
    Pegeldaten (Tide Gauge Data, rot): John A. Church, Neil J. White: A 20th century acceleration in global sea-level rise. In: Geophysical Research Letters. Band 33, Januar 2006, doi:10.1029/2005GL024826.
    Satellitendaten (satellite data, blau): A. Cazenave A. et al.: Sea level budget over 2003-2008: A reevaluation from GRACE space gravimetry, satellite altimetry and ARGO. In: Global and Planetary Change. Band 65, Januar 2009, S. 83–88, doi:10.1016/j.gloplacha.2008.10.004.
  • Andra J. Garner, Jeremy L. Weiss, Adam Parris, Robert E. Kopp, Radley M. Horton, Jonathan T. Overpeck, Benjamin P. Horton: Evolution of 21st Century Sea Level Rise Projections. In: Earth's Future. Oktober 2018, doi:10.1029/2018EF000991.
  • Vgl. auch Robert M. DeConto, David Pollard: Contribution of Antarctica to past and future sea-level rise. In: Nature. Band 531, Nr. 7596, 2016, S. 591–597, doi:10.1038/nature17145.
  • J. Hansen, M. Sato, P. Hearty, R. Ruedy, M. Kelley, V. Masson-Delmotte, G. Russell, G. Tselioudis, J. Cao, E. Rignot, I. Velicogna, E. Kandiano, K. von Schuckmann, P. Kharecha, A. N. Legrande, M. Bauer, K.-W. Lo: Ice melt, sea level rise and superstorms: evidence from paleoclimate data, climate modeling, and modern observations that 2 °C global warming is highly dangerous. In: Atmospheric Chemistry and Physics (Discussions). 15. Jahrgang, Nr. 14, 2015, S. 20059–20179, doi:10.5194/acpd-15-20059-2015 (englisch, atmos-chem-phys-discuss.net [PDF]).
  • E. J. Rohling, K. Grant, Ch. Hemleben, M. Siddall, B. A. A. Hoogakker, M. Bolshaw, M. Kucera: High rates of sea-level rise during the last interglacial period. In: Nature Geosciences. 1. Jahrgang, Januar 2008, doi:10.1038/ngeo.2007.28 (englisch, hawaii.edu [PDF]).
  • Jason E. Box, Alun Hubbard, David B. Bahr, William T. Colgan, Xavier Fettweis, Kenneth D. Mankoff, Adrien Wehrlé, Brice Noël, Michiel R. van den Broeke, Bert Wouters, Anders A. Bjørk, Robert S. Fausto: Greenland ice sheet climate disequilibrium and committed sea-level rise. In: Nature Climate Change. Band 12, Nr. 9, September 2022, ISSN 1758-6798, S. 808–813, doi:10.1038/s41558-022-01441-2 (open access).
  • Gerard H. Roe, Hélène Seroussi, Alexander A. Robel: Marine ice sheet instability amplifies and skews uncertainty in projections of future sea-level rise. In: Proceedings of the National Academy of Sciences. 8. Juli 2019, doi:10.1073/pnas.1904822116, PMID 31285345.
  • Jonathan L. Bamber, Russell L. Layberry, S. Prasad Gogenini: A new ice thickness and bedrock data set for the Greenland ice sheet. In: JGR Atmospheres, Vol. 106, 2001, S. 33773–33780, doi:10.1109/IGARSS.2000.858046
  • Reto Knutti, Thomas F. Stocker: Influence of the Thermohaline Circulation on Projected Sea Level Rise. In: Journal of Climate, Vol. 13, 2000, S. 1997–2001, doi:10.1175/1520-0442(2000)013<1997:IOTTCO>2.0.CO;2.
  • Jaap H. Nienhuis, Wonsuck Kim, Glenn A. Milne, Melinda Quock, Aimée B.A. Slangen, Torbjörn E. Törnqvist: River Deltas and Sea-Level Rise. In: Annual Review of Earth and Planetary Sciences. Band 51, 2023, doi:10.1146/annurev-earth-031621-093732 (open access).
  • M. Mycoo, M.Wairiu, D. Campbell, V. Duvat, Y. Golbuu, S. Maharaj, J. Nalau, P. Nunn, J. Pinnegar, O.Warrick: Small Islands. In: Climate Change 2022: Impacts, Adaptation and Vulnerability. Contribution of Working Group II to the Sixth Assessment Report of the Intergovernmental Panel on Climate Change. 2022, S. 2045–2047, doi:10.1017/9781009325844.017.
  • Virginie K. E. Duvat et al.: Risks to future atoll habitability from climate-driven environmental changes. Advanced Review. In: WIREs Climate Change. 2022, doi:10.1002/wcc.700.
  • Ralf Weisse, Insa Meinke: Mittlerer Meeresspiegelanstieg und Sturmfluten. In: Klimawandel in Deutschland – Entwicklung, Folgen, Risiken und Perspektiven. Springer, 2023, doi:10.1007/978-3-662-66696-8_9 (open access).
  • Britt-Marie Lakämper, Berliner Morgenpost: Klimawandel: Diese deutschen Städte werden im Meer versinken, 14. Oktober 2021, abgerufen am 9. April 2023. Studie: Benjamin H Strauss, Scott A Kulp, D J Rasmussen, Anders Levermann: Unprecedented threats to cities from multi-century sea level rise. In: Environmental Research Letters. Band 16, Nr. 11, 22. Oktober 2021, doi:10.1088/1748-9326/ac2e6b (open access).
  • R.J. Nicholls, S. Hanson, C. Hereijer et al.: Ranking Port Cities with High Exposure and Vulnerability to Climate Extremes. OECD Environment Working Papers No. 1, 2007, doi:10.1787/011766488208 oecd.org (PDF) Siehe auch die Presseerklärung: Climate change could triple population at risk from coastal flooding by 2070, finds OECD. OECD-Website, 4. Dezember 2007.
  • Scott A. Kulp, Benjamin H. Strauss: New elevation data triple estimates of global vulnerability to sea-level rise and coastal flooding. In: Nature Communications. Band 10, Nr. 1, 29. Oktober 2019, ISSN 2041-1723, S. 1–12, doi:10.1038/s41467-019-12808-z (nature.com [abgerufen am 3. November 2019]).

dwd.de

  • Für die Bezeichnungen der SSP-RCP-Kombinationen: Kreienkamp et al.: Empfehlungen für die Charakterisierung ausgewählter Klimaszenarien. Hrsg.: Deutscher Wetterdienst, Bundesamt für Meteorologie und Klimatologie MeteoSchweiz, Internationales Institut für Angewandte Systemanalyse, Landesamt für Umwelt Brandenburg, Landesamt für Umwelt Rheinland-Pfalz, Umweltbundesamt, Zentralanstalt für Meteorologie und Geodynamik. 15. März 2022, S. 5 (dwd.de [PDF]).

fair-economics.de

focus.de

globalchange.gov

nca2014.globalchange.gov

harvard.edu

eps.harvard.edu

  • A. Dutton, K. Lambeck: Ice Volume and Sea Level During the Last Interglacial. In: Science. 337. Jahrgang, Nr. 6091, Juli 2012, S. 216–219, doi:10.1126/science.1205749 (englisch, harvard.edu [PDF]).

ipcc.ch

klimareporter.de

  • Verena Kern: Land unter. In: Klimareporter. 2. November 2019, abgerufen am 3. November 2019 (deutsch).

mit.edu

web.mit.edu

morgenpost.de

nasa.gov

icesat-2.gsfc.nasa.gov

nationalgeographic.com

news-beta.nationalgeographic.com

nature.com

  • Scott A. Kulp, Benjamin H. Strauss: New elevation data triple estimates of global vulnerability to sea-level rise and coastal flooding. In: Nature Communications. Band 10, Nr. 1, 29. Oktober 2019, ISSN 2041-1723, S. 1–12, doi:10.1038/s41467-019-12808-z (nature.com [abgerufen am 3. November 2019]).

newscientist.com

nih.gov

ncbi.nlm.nih.gov

  • Gerard H. Roe, Hélène Seroussi, Alexander A. Robel: Marine ice sheet instability amplifies and skews uncertainty in projections of future sea-level rise. In: Proceedings of the National Academy of Sciences. 8. Juli 2019, doi:10.1073/pnas.1904822116, PMID 31285345.

noaa.gov

oecd.org

researchgate.net

  • Simone Galeotti, Robert DeConto, Timothy Naish, Paolo Stocchi, Fabio Florindo, Mark Pagani, Peter Barrett, Steven M. Bohaty, Luca Lanci, David Pollard, Sonia Sandroni, Franco M. Talarico, James C. Zachos: Antarctic Ice Sheet variability across the Eocene-Oligocene boundary climate transition. In: Science. 352. Jahrgang, Nr. 6281, April 2016, S. 76–80, doi:10.1126/science.aab0669 (englisch, researchgate.net [PDF]).
  • Michael J. O’Leary, Paul J. Hearty, William G. Thompson, Maureen E. Raymo, Jerry X. Mitrovica, Jody M. Webster: Ice sheet collapse following a prolonged period of stable sea level during the last interglacial. In: Nature Geoscience. 6. Jahrgang, Juli 2013, S. 796–800, doi:10.1038/ngeo1890 (englisch, researchgate.net [PDF]).

springer.com

link.springer.com

unibe.ch

boris.unibe.ch

  • Niklaus Merz, Andreas Born, Christoph C. Raible, Thomas F. Stocker: Warm Greenland during the last interglacial: the role of regional changes in sea ice cover. In: Climate of the Past. 12. Jahrgang, Oktober 2016, S. 2011–2031, doi:10.5194/cp-12-2011-2016 (englisch, unibe.ch [PDF]).

univie.ac.at

wbgu.de

  • Die Zukunft der Meere – zu warm, zu hoch, zu sauer. Wissenschaftlicher Beirat der Bundesregierung Globale Umweltveränderungen, Sondergutachten, Berlin 2006 (wbgu.de).

youtube.com

zdb-katalog.de

  • Jason E. Box, Alun Hubbard, David B. Bahr, William T. Colgan, Xavier Fettweis, Kenneth D. Mankoff, Adrien Wehrlé, Brice Noël, Michiel R. van den Broeke, Bert Wouters, Anders A. Bjørk, Robert S. Fausto: Greenland ice sheet climate disequilibrium and committed sea-level rise. In: Nature Climate Change. Band 12, Nr. 9, September 2022, ISSN 1758-6798, S. 808–813, doi:10.1038/s41558-022-01441-2 (open access).
  • Scott A. Kulp, Benjamin H. Strauss: New elevation data triple estimates of global vulnerability to sea-level rise and coastal flooding. In: Nature Communications. Band 10, Nr. 1, 29. Oktober 2019, ISSN 2041-1723, S. 1–12, doi:10.1038/s41467-019-12808-z (nature.com [abgerufen am 3. November 2019]).