Projected ocean warming constrained by the ocean observational record (original) (raw)
References
Hansen, J. et al. Earth’s energy imbalance: confirmation and implications. Science308, 1431–1435 (2005). ArticleCAS Google Scholar
von Schuckmann, K. et al. Heat stored in the Earth system: where does the energy go? Earth Syst. Sci. Data12, 2013–2041 (2020). Article Google Scholar
Von Schuckmann, K. et al. An imperative to monitor Earth’s energy imbalance. Nat. Clim. Change6, 138–144 (2016). Article Google Scholar
Meyssignac, B. et al. Measuring global ocean heat content to estimate the Earth energy imbalance. Front. Mar. Sci.6, 432 (2019). Article Google Scholar
WCRP Global Sea Level Budget Group Global sea-level budget 1993–present. Earth Syst. Sci. Data10, 1551–1590 (2018). Article Google Scholar
Rignot, E., Jacobs, S., Mouginot, J. & Scheuchl, B. Ice-shelf melting around Antarctica. Science341, 266–270 (2013). ArticleCAS Google Scholar
Trenberth, K. E., Cheng, L., Jacobs, P., Zhang, Y. & Fasullo, J. Hurricane Harvey links to ocean heat content and climate change adaptation. Earth’s Future6, 730–744 (2018). Article Google Scholar
Bindoff, N. L. et al. in Special Report on the Ocean and Cryosphere in a Changing Climate (eds Pörtner, H.-O. et al.) Ch. 5 (IPCC, 2019).
Durack, P. J., Gleckler, P. J., Landerer, F. W. & Taylor, K. E. Quantifying underestimates of long-term upper-ocean warming. Nat. Clim. Change4, 999–1005 (2014). Article Google Scholar
Roemmich, D. et al. Unabated planetary warming and its ocean structure since 2006. Nat. Clim. Change5, 240–245 (2015). Article Google Scholar
Wijffels, S., Roemmich, D., Monselesan, D., Church, J. A. & Gilson, J. Ocean temperatures chronicle the ongoing warming of Earth. Nat. Clim. Change6, 116–118 (2016). Article Google Scholar
Johnson, G. C. et al. Ocean heat content. Bull. Am. Meteorol. Soc.101, S140–S144 (2020). Google Scholar
Church, J. A. et al. in Climate Change 2013: The Physical Science Basis (eds Stocker, T. F. et al.) Ch. 13 (IPCC, Cambridge Univ. Press, 2013).
Gregory, J. M. et al. The Flux-Anomaly-Forced Model Intercomparison Project (FAFMIP) contribution to CMIP6: investigation of sea-level and ocean climate change in response to CO2 forcing. Geosci. Model Dev.9, 3993–4017 (2016). ArticleCAS Google Scholar
Domingues, C. M. et al. Improved estimates of upper-ocean warming and multi-decadal sea-level rise. Nature453, 1090–1093 (2008). ArticleCAS Google Scholar
Gleckler, P. J. et al. Human-induced global ocean warming on multidecadal timescales. Nat. Clim. Change2, 524–529 (2012). Article Google Scholar
Slangen, A. B. A., Church, J. A., Zhang, X. & Monselesan, D. Detection and attribution of global mean thermosteric sea level change. Geophys. Res. Lett.41, 5951–5959 (2014). Article Google Scholar
Gleckler, P. J., Durack, P. J., Stouffer, R. J., Johnson, G. C. & Forest, C. E. Industrial-era global ocean heat uptake doubles in recent decades. Nat. Clim. Change6, 394–398 (2016). Article Google Scholar
Cheng, L., Abraham, J., Hausfather, Z. & Trenberth, K. E. How fast are the oceans warming? Science363, 128–129 (2019). ArticleCAS Google Scholar
Jevrejeva, S., Palanisamy, H. & Jackson, L. P. Global mean thermosteric sea level projections by 2100 in CMIP6 climate models. Environ. Res. Lett.16, 014028 (2021). Article Google Scholar
Mengel, M. et al. Future sea level rise constrained by observations and long-term commitment. Proc. Natl Acad. Sci. USA113, 2597–2602 (2016). ArticleCAS Google Scholar
Tokarska, K. B., Hegerl, G. C., Schurer, A. P., Ribes, A. & Fasullo, J. T. Quantifying human contributions to past and future ocean warming and thermosteric sea level rise. Environ. Res. Lett.14, 074020 (2019). ArticleCAS Google Scholar
Tokarska, K. B., Hegerl, G. C., Schurer, A. P., Forster, P. M. & Marvel, K. Observational constraints on the effective climate sensitivity from the historical period. Environ. Res. Lett.15, 034043 (2020). Article Google Scholar
Forster, P. M., Maycock, A. C., McKenna, C. M. & Smith, C. J. Latest climate models confirm need for urgent mitigation. Nat. Clim. Change10, 7–10 (2020). Article Google Scholar
Zelinka, M. D. et al. Causes of higher climate sensitivity in CMIP6 models. Geophys. Res. Lett.47, e2019GL085782 (2020). Article Google Scholar
Stevens, B., Sherwood, S. C., Bony, S. & Webb, M. J. Prospects for narrowing bounds on Earth’s equilibrium climate sensitivity. Earths Future4, 512–522 (2016). Article Google Scholar
Newsom, E., Zanna, L., Khatiwala, S. & Gregory, J. M. The influence of warming patterns on passive ocean heat uptake. Geophys. Res. Lett.47, e2020GL088429 (2020). Article Google Scholar
Hall, A., Cox, P., Huntingford, C. & Klein, S. Progressing emergent constraints on future climate change. Nat. Clim. Change9, 269–278 (2019). Article Google Scholar
Myhre, G. et al. in Climate Change 2013: The Physical Science Basis (eds Stocker, T. F. et al.) Ch. 8 (IPCC, Cambridge Univ. Press, 2013).
Church, J. A., White, N. J. & Arblaster, J. M. Significant decadal-scale impact of volcanic eruptions on sea level and ocean heat content. Nature438, 74–77 (2005). ArticleCAS Google Scholar
Jiménez-de-la-Cuesta, D. & Mauritsen, T. Emergent constraints on Earth’s transient and equilibrium response to doubled CO2 from post-1970s global warming. Nat. Geosci.12, 902–905 (2019). ArticleCAS Google Scholar
Nijsse, F. J., Cox, P. M. & Williamson, M. S. Emergent constraints on transient climate response (TCR) and equilibrium climate sensitivity (ECS) from historical warming in CMIP5 and CMIP6 models. Earth Syst. Dyn.11, 737–750 (2020). Article Google Scholar
Tokarska, K. B. et al. Past warming trend constrains future warming in CMIP6 models. Sci. Adv.6, eaaz9549 (2020). ArticleCAS Google Scholar
Gregory, J. M. & Andrews, T. Variation in climate sensitivity and feedback parameters during the historical period. Geophys. Res. Lett.43, 3911–3920 (2016). Article Google Scholar
Andrews, T. et al. Accounting for changing temperature patterns increases historical estimates of climate sensitivity. Geophys. Res. Lett.45, 8490–8499 (2018). Article Google Scholar
Cheng, L. et al. Evolution of ocean heat content related to ENSO. J. Clim.32, 3529–3556 (2019). Article Google Scholar
Wu, Q., Zhang, X., Church, J. A. & Hu, J. ENSO-related global ocean heat content variations. J. Clim.32, 45–68 (2019). Article Google Scholar
Brown, P. T., Li, W., Li, L. & Ming, Y. Top-of-atmosphere radiative contribution to unforced decadal global temperature variability in climate models. Geophys. Res. Lett.41, 5175–5183 (2014). Article Google Scholar
Palmer, M. D. & McNeall, D. J. Internal variability of Earth’s energy budget simulated by CMIP5 climate models. Environ. Res. Lett.9, 034016 (2014). Article Google Scholar
Johnson, G. C. & Birnbaum, A. N. As El Niño builds, Pacific Warm Pool expands, ocean gains more heat. Geophys. Res. Lett.44, 438–445 (2017). Article Google Scholar
Durack, P. J. et al. Ocean warming: from the surface to the deep in observations and models. Oceanography31, 41–51 (2018). Article Google Scholar
Gregory, J. M., Andrews, T., Ceppi, P., Mauritsen, T. & Webb, M. J. How accurately can the climate sensitivity to CO2 be estimated from historical climate change? Clim. Dyn.54, 129–157 (2020). Article Google Scholar
Menary, M. B. et al. Aerosol-forced AMOC changes in CMIP6 historical simulations. Geophys. Res. Lett.47, e2020GL088166 (2020). Google Scholar
Sherwood, S. C. et al. An assessment of Earth’s climate sensitivity using multiple lines of evidence. Rev. Geophys.58, e2019RG000678 (2020). ArticleCAS Google Scholar
Johnson, G. C. & Lyman, J. M. Warming trends increasingly dominate global ocean. Nat. Clim. Change10, 757–761 (2020). Article Google Scholar
Seroussi, H. et al. ISMIP6 Antarctica: a multi-model ensemble of the Antarctic ice sheet evolution over the 21st century. Cryosphere14, 3033–3070 (2020). Article Google Scholar
Zika, J. D., Gregory, J. M., McDonagh, E. L., Marzocchi, A. & Clement, L. Recent water mass changes reveal mechanisms of ocean warming. J. Clim.34, 3461–3479 (2021). Article Google Scholar
Roemmich, D. et al. On the future of Argo: a global, full-depth, multi-disciplinary array. Front. Mar. Sci.6, 439 (2019). Article Google Scholar
Winton, M. et al. Climate sensitivity of GFDL’s CM4.0. J. Adv. Model. Earth Syst.12, e2019MS001838 (2020). Article Google Scholar
Sen Gupta, A., Jourdain, N. C., Brown, J. N. & Monselesan, D. Climate drift in the CMIP5 models. J. Clim.26, 8597–8615 (2013). Article Google Scholar
Li, H. et al. Development of a global gridded Argo data set with Barnes successive corrections. J. Geophys. Res. Oceans122, 866–889 (2017). Article Google Scholar
Gaillard, F., Reynaud, T., Thierry, V., Kolodziejczyk, N. & Von Schuckmann, K. In situ–based reanalysis of the global ocean temperature and salinity with ISAS: variability of the heat content and steric height. J. Clim.29, 1305–1323 (2016). Article Google Scholar
Hosoda, S., Ohira, T. & Nakamura, T. A monthly mean dataset of global oceanic temperature and salinity derived from Argo float observations. JAMSTEC Rep. Res. Dev.8, 47–59 (2008). Article Google Scholar
Roemmich, D. & Gilson, J. The 2004–2008 mean and annual cycle of temperature, salinity, and steric height in the global ocean from the Argo Program. Prog. Oceanogr.82, 81–100 (2009). Article Google Scholar
Argo Float Data and Metadata from Global Data Assembly Centre (Argo GDAC) (SEANOE, 2000); https://doi.org/10.17882/42182
Cheng, L. et al. Improved estimates of ocean heat content from 1960 to 2015. Sci. Adv.3, e1601545 (2017). Article Google Scholar
Ishii, M. et al. Accuracy of global upper ocean heat content estimation expected from present observational data sets. SOLA13, 163–167 (2017). Article Google Scholar
Levitus, S. et al. World ocean heat content and thermosteric sea level change (0–2000 m), 1955–2010. Geophys. Res. Lett.39, L10603 (2012). Article Google Scholar
Zhang, X. & Church, J. A. Sea level trends, interannual and decadal variability in the Pacific Ocean. Geophys. Res. Lett.39, L21701 (2012). Google Scholar
Cox, P. M. et al. Sensitivity of tropical carbon to climate change constrained by carbon dioxide variability. Nature494, 341–344 (2013). ArticleCAS Google Scholar
Cox, P. M., Huntingford, C. & Williamson, M. S. Emergent constraint on equilibrium climate sensitivity from global temperature variability. Nature553, 319–322 (2018). ArticleCAS Google Scholar
Charles, E., Meyssignac, B. & Ribes, A. Observational constraint on greenhouse gas and aerosol contributions to global ocean heat content changes. J. Clim.33, 10579–10591 (2020). Article Google Scholar
Lyu, K., Zhang, X. & Church, J. A. Projected ocean warming constrained by the ocean observational record: supplementary metadata. Figsharehttps://doi.org/10.6084/m9.figshare.15063063 (2021).