An imperative to monitor Earth's energy imbalance (original) (raw)
References
Trenberth, K. E. & Stepaniak, D. P. Co-variability of components of poleward atmospheric energy transports on seasonal and interannual timescales. J. Clim.16, 3691–3705 (2003). Article Google Scholar
Trenberth, K. E. & Stepaniak, D. P. Seamless poleward atmospheric energy transport and implications for the Hadley circulation. J. Clim.16, 3706–3722 (2003). Article Google Scholar
Trenberth, K. E. & Stepaniak, D. P. The flow of energy through the Earth's climate system. Quart. J. Roy. Meteor. Soc.130, 2677–2701 (2004). Article Google Scholar
Hansen, J., Sato, M., Kharecha P. & von Schuckmann, K. Earth's energy imbalance and implications. Atmos. Chem. Phys.11, 13421–13449 (2011). ArticleCAS Google Scholar
Trenberth, K. E., Zhang, Y., Fasullo, J. T. & Taguchi, S. Climate variability and relationships between top-of-atmosphere radiation and temperatures on Earth. J. Geophys. Res.120, 3642–3659 (2015). Google Scholar
Trenberth, K. E., Fasullo J. T. & Balmaseda, M. A. Earth's energy imbalance. J. Clim.27, 3129–3144 (2014). Article Google Scholar
Mayer, M. & Haimberger, L. Poleward atmospheric energy transports and their variability as evaluated from ECMWF reanalysis data. J. Clim.25, 734–752 (2012). Article Google Scholar
England, M. H. et al. Recent intensification of wind-driven circulation in the Pacific and the ongoing warming hiatus. Nature Clim. Change4, 222–227 (2014). Article Google Scholar
Myhre, G. et al. Radiative forcing of the direct aerosol effect from AeroCom Phase II simulations. Atmos. Chem. Phys.13, 1853–1877 (2013). ArticleCAS Google Scholar
Loeb, N. G. et al. Towards optimal closure of the earth's top-of-atmosphere radiation budget. J. Clim.22, 748–766 (2009). Article Google Scholar
Abraham, J. P. et al. A review of global ocean temperature observations: Implications for ocean heat content estimates and climate change. Rev. Geophys.51, 450–483 (2013). Article Google Scholar
Allan, R. P. et al. Changes in global net radiative imbalance 1985–2012. Geophys. Res. Lett.41, 5588–5597 (2014). Article Google Scholar
Trenberth, K. E., Stepaniak, D. P. & Caron, J. M. Accuracy of atmospheric energy budgets from analyses. J. Clim.15, 3343–3360 (2002). Article Google Scholar
Rhein, M. et al. in Climate Change 2013: The Physical Science Basis. (eds Stocker, T. F. et al.) 255–316 (IPCC, Cambridge Univ. Press, 2014). 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
Purkey, S. G. & Johnson, G. C. Warming of global abyssal and deep Southern Ocean waters between the 1990s and 2000s: contributions to global heat and sea level rise budgets. J. Clim.23, 6336–6351 (2010). Article Google Scholar
Balmaseda, M. A., Trenberth K. E. & Kallen, E. Distinctive climate signals in reanalysis of global ocean heat content. Geophys. Res. Lett.40, 1754–1759 (2013). Article Google Scholar
Church, J. A. et al. in Climate Change 2013: The Physical Science Basis (eds Stocker, T. F. et al.) 1137–1216 (IPCC, Cambridge Univ. Press, 2014). Google Scholar
Bindoff, N. L. et al. in Climate Change 2013: The Physical Science Basis (eds Stocker, T. F. et al.) 867–952 (IPCC, Cambridge Univ. Press, 2014). Google Scholar
Exarchou, E., Kuhlbrodt, T., Gregory, J. M. & Smith, R. S. Ocean heat uptake processes: a model intercomparison. J. Clim.28, 887–908 (2015). Article Google Scholar
Meehl, G. A., Hu, A., Arblaster, J. M., Fasullo, J. T. & Trenberth, K. E. Externally forced and internally generated decadal climate variability in the Pacific. J. Clim.26, 7298–7310 (2013). Article Google Scholar
Palmer, M. D., McNeall, D. J. & Dunstone, N. J. Importance of the deep ocean for estimating decadal changes in Earth's radiation balance. Geophys. Res. Lett.38, L13707 (2011). Article Google Scholar
Trenberth, K. E. & Fasullo, J. T. An apparent hiatus in global warming? Earth's Future1, 19–32 (2013). 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
Cheng, L. & Zhu, J. Artifacts in variations of ocean heat content induced by the observation system changes. Geophys. Res. Lett.41, 7276–7283 (2014). Article Google Scholar
Kosaka, Y. & Xie, S.-P. Recent global-warming hiatus tied to equatorial Pacific surface cooling. Nature501, 403–408 (2013). ArticleCAS Google Scholar
Roemmich, D., Church, J., Gilson, J., Monselesan, D., Sutton, P. & Wijffels, S. Unabated planetary warming and its ocean structure since 2006. Nature Clim. Change5, 250–245 (2015). Article Google Scholar
Loeb, N. G. et al. Advances in understanding top-of-atmosphere radiation variability from satellite observations. Surv. Geophys.33, 359–385 (2012). Article Google Scholar
Loeb, N. G. et al. Observed changes in top-of-the-atmosphere radiation and upper-ocean heating consistent within uncertainty. Nature Geosci.5, 110–113 (2012). ArticleCAS Google Scholar
Santer, B. D. et al. Volcanic contribution to decadal changes in tropospheric temperature. Nature Geosci.7, 185–189 (2014). ArticleCAS Google Scholar
Minnis, P. et al. Radiative climate forcing by the Mount Pinatubo eruption. Science259, 1411–1415 (1993). ArticleCAS Google Scholar
Wielicki, B. A. et al. Clouds and the Earth's radiant energy system (CERES): an Earth observing system experiment. Bull. Amer. Meteor. Soc.77, 853–868 (1996). Article Google Scholar
Kopp, G. & Lean, J. L. A new, lower value of total solar irradiance: Evidence and climate significance. Geophys. Res. Lett.38, L01706 (2011). Article Google Scholar
Loeb, N. G. et al. Toward optimal closure of the earth's top-of-atmosphere radiation budget. J. Clim.22, 748–766 (2009). Article Google Scholar
Loeb, N. G., Kato, S., Loukachine, K. & Manalo-Smith, N. Angular distribution models for top-of-atmosphere radiative flux estimation from the clouds and the Earth's Radiant Energy System instrument on the Terra satellite. Part II: validation. J. Atmos. Oceanic Tech.24, 564–584 (2007). Article Google Scholar
Doelling, D. R. et al. Geostationary enhanced temporal interpolation for CERES flux products. J. Atmos. Ocean. Tech.30, 1072–1090 (2013). Article Google Scholar
Loeb, N. G., Kato, S., & Wielicki, B. A. Defining top-of-atmosphere flux reference level for earth radiation budget studies. J. Clim.15, 3301–3309 (2002). Article Google Scholar
Church, J. A. et al. Revisiting the Earth's sea-level and energy budgets from 1961 to 2008. Geophys. Res. Lett.38, L18601 (2011). Article Google Scholar
Josey, S. A., Gulev S. & Yu, L. in Ocean Circulation and Climate: A 21st Century Perspective 2nd edn (eds Siedler, G., Griffies, S., Gould, J. & Church, J.) Ch. 5, 115–140 (International Geophysics Series Vol. 103, Academic, 2013). Book Google Scholar
Woodruff, S. D. et al.: ICOADS release 2.5: extensions and enhancements to the surface marine meteorological archive. Int. J. Climatol.31, 951–967 (2011). Article Google Scholar
Jin, X., Yu, L., Jackson, D. L. & Wick, G. A. An improved near-surface specific humidity and air temperature climatology for the SSM/I satellite period. J. Atmos. Oceanic Technol.32, 412–433 (2015). Article Google Scholar
Bosilovich, M. G., Robertson, F. R. & Chen, J. Global energy and water budgets in MERRA. J. Clim.24, 5721–5739 (2011). Article Google Scholar
Trenberth, K. E., Fasullo, J. T. & Mackaro, J. Atmospheric moisture transports from ocean to land and global energy flows in reanalyses. J. Clim.24, 4907–4924 (2011). Article Google Scholar
Kobayashi, S. et al. The JRA-55 reanalysis: general specifications and basic characteristics. J. Meteor. Soc. Japan93, 5–48 (2015). Article Google Scholar
Trenberth, K. E. & Fasullo, J. T. Regional energy and water cycles: Transports from ocean to land. J. Clim.26, 7837–7851 (2013). Article Google Scholar
Kato, S. et al. Surface irradiances consistent with CERES-derived top-of-atmosphere shortwave and longwave irradiances. J. Clim.26, 2719–2740 (2013). Article Google Scholar
Rutan, D. A. et al. CERES synoptic product: methodology and validation of surface radiant flux. J. Atmos. Oceanic Technol.32, 1121–1143 (2015). Article Google Scholar
Trenberth, K. E., Fasullo, J. T. & Kiehl, J. Earth's global energy budget. Bull. Am. Meteor. Soc.90, 311–324 (2009). Article Google Scholar
Gouretski, V. & Koltermann, K. P. How much is the ocean really warming? Geophys. Res. Lett.34, L01610 (2007). Article Google Scholar
Lyman, J. M. et al. Robust warming of the global upper ocean. Nature465, 334–337 (2010). ArticleCAS Google Scholar
Desbruyères, D. G. et al. Full-depth temperature trends in the Northeastern Atlantic through the early 21st century. Geophys. Res. Lett.41, 7971–7979 (2014). Article Google Scholar
Von Schuckmann, K. et al. Monitoring ocean heat content from the current generation of global ocean observing systems. Ocean Sci.10, 547–557 (2014). Article Google Scholar
Nerem, R. S., Chambers, D. P., Choe, C. & Mitchum, G. T. Estimating mean sea level change TOPEX and from the Jason missions. Marine Geodesy.33, 435–446 (2010). Article Google Scholar
Ablain, M. et al. Improved sea level record over the satellite altimetry era (1993–2010) from the Climate Change Initiative project. Ocean Sci.11, 67–82 (2015). Article Google Scholar
Johnson, G. F. & Chambers, D. P. Ocean bottom pressure seasonal cycles and decadal trends from GRACE release-05: ocean circulation implications. J. Geophys. Res. Oceans118, 4228–4240 (2013). Article Google Scholar
Chen, J. L., Wilson, C. R. & Tapley B. D. Contribution of ice sheet and mountain glacier melt to recent sea level rise. Nature Geosci.6, 549–552 (2013). ArticleCAS Google Scholar
Llovel, W., Willis, J. K., Landerer, F. K. & Fukumori, I. Deep-ocean contribution to sea level and energy budget not detectable over the past decade. Nature Clim. Change4, 1031–1035 (2014). Article Google Scholar
Dieng, H. B., Palanisamy, H., Cazenave, A., Meyssignac, B. & von Schuckmann, K. The sea level budget since 2003: inference on the deep ocean heat content Surv. Geophys.36, 209–229 (2015). Article Google Scholar
Dieng, H. B., Cazenave, A., von Schuckmann, K., Ablain, M. & Meyssignac, B. Sea level budget over 2005–2013: missing contributions and data errors. Ocean Sci.11, 789–802 (2015). Article Google Scholar
Watson, C. S. et al. Unabated global mean sea-level rise over the satellite altimeter. Nature Clim. Change.5, 565–568 (2015). Article Google Scholar
Smith, D. M. et al. Earth's energy imbalance since 1960 in observations and CMIP5 models. Geophys. Res. Lett.42, 1205–1213 (2015). Article Google Scholar
Wild, M. et al. The energy balance over land and oceans: an assessment based on direct observations and CMIP5 climate models. Clim. Dyn.44, 3393–3429 (2015). Article Google Scholar
Trenberth, K. E. & Fasullo, J. T. Tracking Earth's energy. Science328, 316–317 (2010). ArticleCAS Google Scholar
Regayre, L. A. et al. Uncertainty in the magnitude of aerosol-cloud radiative forcing over recent decades. Geophys. Res. Lett.41, 9040–9049 (2014). Article Google Scholar
Haigh J. D. et al. An influence of solar spectral variations on radiative forcing of climate. Nature467, 696–699 (2010). ArticleCAS Google Scholar
Katsman, C. A. & van Oldenborgh, G. J. Tracing the upper ocean's “missing heat”. Geophys. Res. Lett.38, L14610 (2011). Google Scholar
Koehl, A. & Stammer, D. Decadal sea level changes in the 50-year GECCO ocean synthesis, J. Clim.21, 1876–1890 (2007). Article Google Scholar
Carton, J. A. & Santorelli, A. Global decadal upper-ocean heat content as viewed in nine analyses. J. Clim.21, 6015–6035 (2008). Article Google Scholar
Balmaseda, M. A., Mogensen K. & Weaver A. T. Evaluation of the ECMWF ocean reanalysis system ORAS4. Q. J. R. Meteorol. Soc.139, 1132–1161 (2013). Article Google Scholar
Balmaseda, M. A. et al. The Ocean Reanalyses Intercomparison Project (ORA-IP). J. Oper. Oceanogr.8, s80–s97 (2015). Google Scholar
Von Schuckmann, K. et al. A prospectus for the CLIVAR research focus: Consistency between planetary energy balance and ocean heat storage (CONCEPT-HEAT) Community White Paper (WCRP/CLIVAR, 2014). Google Scholar
Myhre, G. et al. in Climate Change 2013: The Physical Science Basis (eds Stocker, T. F. et al.) 659–740 (IPCC, Cambridge Univ. Press, 2014). Google Scholar
Von Schuckmann, K. & Le Traon, P.-Y. How well can we derive global ocean indicators from Argo data? Ocean Sci.7, 783–791 (2011). 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. Progr. Oceanogr.82, 81–100 (2009). Article Google Scholar
Good, S. A., Martin M. J. & Rayner, N. A. EN4: quality controlled ocean temperature and salinity profiles and monthly objective analyses with uncertainty estimates. J. Geophys. Res. Oceans118, 6704–6716 (2013). Article Google Scholar
Hosoda, S., Ohira, T., Sato, K. & Suga, T. Improved description of global mixed-layer depth using Argo profiling floats. J. Oceanogr.66, 773–787 (2010). Article Google Scholar