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title | Table of Contents |
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Acronyms
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Acronym | Description | tediv | Divergence of vertical integral of total energy flux | tefle | Vertical integral of eastward total energy flux | tefln | Vertical integral of northward total energy flux | tetend | Tendency of vertical integral of total energy | lhdiv | Divergence of vertical integral of latent heat flux | lhfle | Vertical integral of eastward latent heat flux | lhfln | Vertical integral of northward latent heat flux | lhtend | Tendency of vertical integral of latent heat | wvdiv | Divergence of vertical integral of water vapour flux | wvfle | Vertical integral of eastward water vapour flux | wvfln | Vertical integral of northward water vapour flux | wvtend | Tendency of vertical integral of water vapour | Re | Residual of the dry air mass budget | T | Temperature in Kelvin | Tc | Temperature in Celsius | q | Specific humidity | v | Horizontal wind field vector | pS | Surface pressure | P | Precipitation | E | Evaporation | Φ | Geopotential | k | Kinetic energy of air | Lv | Latent heat of vaporization | g | Gravitational acceleration (9.81 m s-2) | cp | Specific heat capacity of dry air at constant pressure (1004.70 J kg-1 K-1) | cv | Specific heat capacity of dry air at constant volume (717.65 J kg-1 K-1) | cl | Specific heat of liquid water (4218.00 J kg-1 K-1) | cpv | Specific heat of water vapor at constant pressure (1846.10 J kg-1 K-1) |
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Mayer, M., Haimberger, L., Edwards, J. M., and Hyder, P. (2017). Toward consistent diagnostics of the coupled atmosphere and ocean energy budgets. Journal of Climate, 30(22), 9225-9246. https://doi.org/10.1175/JCLI-D-17-0137.1
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