UNPKG

eccodes-data-grib2

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# Automatically generated by ./create_def.pl, do not edit #Total precipitation of at least 1 mm '%' = { discipline = 192 ; parameterCategory = 131 ; parameterNumber = 60 ; } #Total precipitation of at least 5 mm '%' = { discipline = 192 ; parameterCategory = 131 ; parameterNumber = 61 ; } #Total precipitation of at least 40 mm '%' = { discipline = 192 ; parameterCategory = 131 ; parameterNumber = 82 ; } #Total precipitation of at least 60 mm '%' = { discipline = 192 ; parameterCategory = 131 ; parameterNumber = 83 ; } #Total precipitation of at least 80 mm '%' = { discipline = 192 ; parameterCategory = 131 ; parameterNumber = 84 ; } #Total precipitation of at least 100 mm '%' = { discipline = 192 ; parameterCategory = 131 ; parameterNumber = 85 ; } #Total precipitation of at least 150 mm '%' = { discipline = 192 ; parameterCategory = 131 ; parameterNumber = 86 ; } #Total precipitation of at least 200 mm '%' = { discipline = 192 ; parameterCategory = 131 ; parameterNumber = 87 ; } #Total precipitation of at least 300 mm '%' = { discipline = 192 ; parameterCategory = 131 ; parameterNumber = 88 ; } #Equivalent potential temperature 'K' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 4 ; } #Saturated equivalent potential temperature 'K' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 5 ; } #Soil sand fraction '(0 - 1)' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 6 ; } #Soil clay fraction '(0 - 1)' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 7 ; } #Surface runoff 'm' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 8 ; } #Sub-surface runoff 'm' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 9 ; } #U component of divergent wind 'm s**-1' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 11 ; } #V component of divergent wind 'm s**-1' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 12 ; } #U component of rotational wind 'm s**-1' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 13 ; } #V component of rotational wind 'm s**-1' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 14 ; } #UV visible albedo for direct radiation '(0 - 1)' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 15 ; } #UV visible albedo for diffuse radiation '(0 - 1)' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 16 ; } #Near IR albedo for direct radiation '(0 - 1)' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 17 ; } #Near IR albedo for diffuse radiation '(0 - 1)' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 18 ; } #Clear sky surface UV 'J m**-2' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 19 ; } #Clear sky surface photosynthetically active radiation 'J m**-2' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 20 ; } #Unbalanced component of temperature 'K' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 21 ; } #Unbalanced component of logarithm of surface pressure '~' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 22 ; } #Unbalanced component of divergence 's**-1' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 23 ; } #Reserved for future unbalanced components '~' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 24 ; } #Reserved for future unbalanced components '~' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 25 ; } #Lake cover '(0 - 1)' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 26 ; } #Low vegetation cover '(0 - 1)' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 27 ; } #High vegetation cover '(0 - 1)' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 28 ; } #Type of low vegetation '~' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 29 ; } #Type of high vegetation '~' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 30 ; } #Snow albedo '(0 - 1)' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 32 ; } #Ice temperature layer 1 'K' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 35 ; } #Ice temperature layer 2 'K' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 36 ; } #Ice temperature layer 3 'K' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 37 ; } #Ice temperature layer 4 'K' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 38 ; } #Volumetric soil water layer 1 'm**3 m**-3' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 39 ; } #Volumetric soil water layer 2 'm**3 m**-3' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 40 ; } #Volumetric soil water layer 3 'm**3 m**-3' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 41 ; } #Volumetric soil water layer 4 'm**3 m**-3' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 42 ; } #Snow evaporation 'm of water equivalent' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 44 ; } #Snowmelt 'm of water equivalent' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 45 ; } #Solar duration 's' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 46 ; } #Direct solar radiation 'J m**-2' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 47 ; } #Magnitude of turbulent surface stress 'N m**-2 s' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 48 ; } #Large-scale precipitation fraction 's' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 50 ; } #Maximum temperature at 2 metres in the last 24 hours 'K' = { discipline = 0 ; parameterCategory = 0 ; parameterNumber = 0 ; scaledValueOfFirstFixedSurface = 2 ; scaleFactorOfFirstFixedSurface = 0 ; typeOfFirstFixedSurface = 103 ; typeOfStatisticalProcessing = 2 ; indicatorOfUnitForTimeRange = 1 ; lengthOfTimeRange = 24 ; } #Minimum temperature at 2 metres in the last 24 hours 'K' = { discipline = 0 ; parameterCategory = 0 ; parameterNumber = 0 ; lengthOfTimeRange = 24 ; scaledValueOfFirstFixedSurface = 2 ; scaleFactorOfFirstFixedSurface = 0 ; typeOfFirstFixedSurface = 103 ; typeOfStatisticalProcessing = 3 ; indicatorOfUnitForTimeRange = 1 ; } #Montgomery potential 'm**2 s**-2' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 53 ; } #Mean temperature at 2 metres in the last 24 hours 'K' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 55 ; } #Mean 2 metre dewpoint temperature in the last 24 hours 'K' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 56 ; } #Downward UV radiation at the surface 'J m**-2' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 57 ; } #Photosynthetically active radiation at the surface 'J m**-2' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 58 ; } #Observation count '~' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 62 ; } #Start time for skin temperature difference 's' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 63 ; } #Finish time for skin temperature difference 's' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 64 ; } #Skin temperature difference 'K' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 65 ; } #Leaf area index, low vegetation 'm**2 m**-2' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 66 ; } #Leaf area index, high vegetation 'm**2 m**-2' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 67 ; } #Minimum stomatal resistance, low vegetation 's m**-1' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 68 ; } #Minimum stomatal resistance, high vegetation 's m**-1' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 69 ; } #Biome cover, low vegetation '(0 - 1)' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 70 ; } #Biome cover, high vegetation '(0 - 1)' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 71 ; } #Instantaneous surface solar radiation downwards 'W m**-2' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 72 ; } #Instantaneous surface thermal radiation downwards 'W m**-2' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 73 ; } #Standard deviation of filtered subgrid orography 'm' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 74 ; } #Total column cloud liquid water 'kg m**-2' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 78 ; } #Total column cloud ice water 'kg m**-2' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 79 ; } #Experimental product '~' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 80 ; } #Experimental product '~' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 81 ; } #Experimental product '~' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 82 ; } #Experimental product '~' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 83 ; } #Experimental product '~' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 84 ; } #Experimental product '~' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 85 ; } #Experimental product '~' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 86 ; } #Experimental product '~' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 87 ; } #Experimental product '~' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 88 ; } #Experimental product '~' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 89 ; } #Experimental product '~' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 90 ; } #Experimental product '~' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 91 ; } #Experimental product '~' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 92 ; } #Experimental product '~' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 93 ; } #Experimental product '~' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 94 ; } #Experimental product '~' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 95 ; } #Experimental product '~' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 96 ; } #Experimental product '~' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 97 ; } #Experimental product '~' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 98 ; } #Experimental product '~' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 99 ; } #Experimental product '~' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 100 ; } #Experimental product '~' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 101 ; } #Experimental product '~' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 102 ; } #Experimental product '~' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 103 ; } #Experimental product '~' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 104 ; } #Experimental product '~' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 105 ; } #Experimental product '~' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 106 ; } #Experimental product '~' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 107 ; } #Experimental product '~' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 108 ; } #Experimental product '~' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 109 ; } #Experimental product '~' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 110 ; } #Experimental product '~' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 111 ; } #Experimental product '~' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 112 ; } #Experimental product '~' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 113 ; } #Experimental product '~' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 114 ; } #Experimental product '~' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 115 ; } #Experimental product '~' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 116 ; } #Experimental product '~' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 117 ; } #Experimental product '~' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 118 ; } #Experimental product '~' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 119 ; } #Experimental product '~' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 120 ; } #10 metre wind gust in the last 6 hours 'm s**-1' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 123 ; } #Surface emissivity 'dimensionless' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 124 ; } #Vertically integrated total energy 'J m**-2' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 125 ; } #Generic parameter for sensitive area prediction 'Various' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 126 ; } #Atmospheric tide '~' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 127 ; } #Budget values '~' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 128 ; } #Total column water vapour 'kg m**-2' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 137 ; } #Soil temperature level 1 'K' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 139 ; } #Soil wetness level 1 'm of water equivalent' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 140 ; } #Snow depth 'm of water equivalent' = { discipline = 0 ; parameterCategory = 1 ; parameterNumber = 11 ; unitsFactor = 1000 ; } #Large-scale precipitation 'm' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 142 ; } #Convective precipitation 'm' = { discipline = 0 ; parameterCategory = 1 ; parameterNumber = 10 ; unitsFactor = 1000 ; } #Snowfall 'm of water equivalent' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 144 ; } #Charnock '~' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 148 ; } #Surface net radiation 'J m**-2' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 149 ; } #Top net radiation 'J m**-2' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 150 ; } #Logarithm of surface pressure '~' = { discipline = 0 ; parameterCategory = 3 ; parameterNumber = 25 ; typeOfFirstFixedSurface = 105 ; } #Short-wave heating rate 'K' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 153 ; } #Long-wave heating rate 'K' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 154 ; } #Tendency of surface pressure 'Pa s**-1' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 158 ; } #Boundary layer height 'm' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 159 ; } #Standard deviation of orography '~' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 160 ; } #Anisotropy of sub-gridscale orography '~' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 161 ; } #Angle of sub-gridscale orography 'radians' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 162 ; } #Slope of sub-gridscale orography '~' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 163 ; } #Total cloud cover '(0 - 1)' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 164 ; } #Soil temperature level 2 'K' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 170 ; } #Soil wetness level 2 'm of water equivalent' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 171 ; } #Albedo '(0 - 1)' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 174 ; } #Top net solar radiation 'J m**-2' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 178 ; } #Evaporation 'm of water equivalent' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 182 ; } #Soil temperature level 3 'K' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 183 ; } #Soil wetness level 3 'm of water equivalent' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 184 ; } #Convective cloud cover '(0 - 1)' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 185 ; } #Low cloud cover '(0 - 1)' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 186 ; } #Medium cloud cover '(0 - 1)' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 187 ; } #High cloud cover '(0 - 1)' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 188 ; } #East-West component of sub-gridscale orographic variance 'm**2' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 190 ; } #North-South component of sub-gridscale orographic variance 'm**2' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 191 ; } #North-West/South-East component of sub-gridscale orographic variance 'm**2' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 192 ; } #North-East/South-West component of sub-gridscale orographic variance 'm**2' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 193 ; } #Eastward gravity wave surface stress 'N m**-2 s' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 195 ; } #Northward gravity wave surface stress 'N m**-2 s' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 196 ; } #Gravity wave dissipation 'J m**-2' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 197 ; } #Skin reservoir content 'm of water equivalent' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 198 ; } #Vegetation fraction '(0 - 1)' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 199 ; } #Variance of sub-gridscale orography 'm**2' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 200 ; } #Precipitation analysis weights '~' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 204 ; } #Runoff 'm' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 205 ; } #Total column ozone 'kg m**-2' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 206 ; } #Top net solar radiation, clear sky 'J m**-2' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 208 ; } #Top net thermal radiation, clear sky 'J m**-2' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 209 ; } #Surface net solar radiation, clear sky 'J m**-2' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 210 ; } #Surface net thermal radiation, clear sky 'J m**-2' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 211 ; } #TOA incident solar radiation 'J m**-2' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 212 ; } #Vertically integrated moisture divergence 'kg m**-2' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 213 ; } #Diabatic heating by radiation 'K' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 214 ; } #Diabatic heating by vertical diffusion 'K' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 215 ; } #Diabatic heating by cumulus convection 'K' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 216 ; } #Diabatic heating large-scale condensation 'K' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 217 ; } #Vertical diffusion of zonal wind 'm s**-1' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 218 ; } #Vertical diffusion of meridional wind 'm s**-1' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 219 ; } #East-West gravity wave drag tendency 'm s**-1' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 220 ; } #North-South gravity wave drag tendency 'm s**-1' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 221 ; } #Convective tendency of zonal wind 'm s**-1' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 222 ; } #Convective tendency of meridional wind 'm s**-1' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 223 ; } #Vertical diffusion of humidity 'kg kg**-1' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 224 ; } #Humidity tendency by cumulus convection 'kg kg**-1' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 225 ; } #Humidity tendency by large-scale condensation 'kg kg**-1' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 226 ; } #Tendency due to removal of negative humidity 'kg kg**-1' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 227 ; } #Total precipitation 'm' = { discipline = 0 ; parameterCategory = 1 ; parameterNumber = 52 ; typeOfStatisticalProcessing = 1 ; typeOfFirstFixedSurface = 1 ; unitsFactor = 1000 ; } #Instantaneous eastward turbulent surface stress 'N m**-2' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 229 ; } #Instantaneous northward turbulent surface stress 'N m**-2' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 230 ; } #Instantaneous surface sensible heat flux 'W m**-2' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 231 ; } #Instantaneous moisture flux 'kg m**-2 s**-1' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 232 ; } #Apparent surface humidity 'kg kg**-1' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 233 ; } #Logarithm of surface roughness length for heat '~' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 234 ; } #Soil temperature level 4 'K' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 236 ; } #Soil wetness level 4 'm' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 237 ; } #Temperature of snow layer 'K' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 238 ; } #Convective snowfall 'm of water equivalent' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 239 ; } #Large-scale snowfall 'm of water equivalent' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 240 ; } #Accumulated cloud fraction tendency '(-1 to 1)' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 241 ; } #Accumulated liquid water tendency '(-1 to 1)' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 242 ; } #Forecast albedo '(0 - 1)' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 243 ; } #Forecast surface roughness 'm' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 244 ; } #Forecast logarithm of surface roughness for heat '~' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 245 ; } #Accumulated ice water tendency '(-1 to 1)' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 249 ; } #Ice age '(0 - 1)' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 250 ; } #Adiabatic tendency of temperature 'K' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 251 ; } #Adiabatic tendency of humidity 'kg kg**-1' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 252 ; } #Adiabatic tendency of zonal wind 'm s**-1' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 253 ; } #Adiabatic tendency of meridional wind 'm s**-1' = { discipline = 192 ; parameterCategory = 128 ; parameterNumber = 254 ; } #Stream function difference 'm**2 s**-1' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 1 ; } #Velocity potential difference 'm**2 s**-1' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 2 ; } #Potential temperature difference 'K' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 3 ; } #Equivalent potential temperature difference 'K' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 4 ; } #Saturated equivalent potential temperature difference 'K' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 5 ; } #U component of divergent wind difference 'm s**-1' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 11 ; } #V component of divergent wind difference 'm s**-1' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 12 ; } #U component of rotational wind difference 'm s**-1' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 13 ; } #V component of rotational wind difference 'm s**-1' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 14 ; } #Unbalanced component of temperature difference 'K' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 21 ; } #Unbalanced component of logarithm of surface pressure difference '~' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 22 ; } #Unbalanced component of divergence difference 's**-1' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 23 ; } #Reserved for future unbalanced components '~' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 24 ; } #Reserved for future unbalanced components '~' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 25 ; } #Lake cover difference '(0 - 1)' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 26 ; } #Low vegetation cover difference '(0 - 1)' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 27 ; } #High vegetation cover difference '(0 - 1)' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 28 ; } #Type of low vegetation difference '~' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 29 ; } #Type of high vegetation difference '~' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 30 ; } #Sea-ice cover difference '(0 - 1)' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 31 ; } #Snow albedo difference '(0 - 1)' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 32 ; } #Snow density difference 'kg m**-3' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 33 ; } #Sea surface temperature difference 'K' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 34 ; } #Ice surface temperature layer 1 difference 'K' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 35 ; } #Ice surface temperature layer 2 difference 'K' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 36 ; } #Ice surface temperature layer 3 difference 'K' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 37 ; } #Ice surface temperature layer 4 difference 'K' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 38 ; } #Volumetric soil water layer 1 difference 'm**3 m**-3' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 39 ; } #Volumetric soil water layer 2 difference 'm**3 m**-3' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 40 ; } #Volumetric soil water layer 3 difference 'm**3 m**-3' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 41 ; } #Volumetric soil water layer 4 difference 'm**3 m**-3' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 42 ; } #Soil type difference '~' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 43 ; } #Snow evaporation difference 'kg m**-2' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 44 ; } #Snowmelt difference 'kg m**-2' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 45 ; } #Solar duration difference 's' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 46 ; } #Direct solar radiation difference 'J m**-2' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 47 ; } #Magnitude of turbulent surface stress difference 'N m**-2 s' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 48 ; } #10 metre wind gust difference 'm s**-1' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 49 ; } #Large-scale precipitation fraction difference 's' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 50 ; } #Maximum 2 metre temperature difference 'K' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 51 ; } #Minimum 2 metre temperature difference 'K' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 52 ; } #Montgomery potential difference 'm**2 s**-2' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 53 ; } #Pressure difference 'Pa' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 54 ; } #Mean 2 metre temperature in the last 24 hours difference 'K' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 55 ; } #Mean 2 metre dewpoint temperature in the last 24 hours difference 'K' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 56 ; } #Downward UV radiation at the surface difference 'J m**-2' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 57 ; } #Photosynthetically active radiation at the surface difference 'J m**-2' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 58 ; } #Convective available potential energy difference 'J kg**-1' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 59 ; } #Potential vorticity difference 'K m**2 kg**-1 s**-1' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 60 ; } #Total precipitation from observations difference 'Millimetres*100 + number of stations' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 61 ; } #Observation count difference '~' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 62 ; } #Start time for skin temperature difference 's' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 63 ; } #Finish time for skin temperature difference 's' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 64 ; } #Skin temperature difference 'K' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 65 ; } #Leaf area index, low vegetation 'm**2 m**-2' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 66 ; } #Leaf area index, high vegetation 'm**2 m**-2' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 67 ; } #Minimum stomatal resistance, low vegetation 's m**-1' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 68 ; } #Minimum stomatal resistance, high vegetation 's m**-1' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 69 ; } #Biome cover, low vegetation '(0 - 1)' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 70 ; } #Biome cover, high vegetation '(0 - 1)' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 71 ; } #Total column liquid water 'kg m**-2' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 78 ; } #Total column ice water 'kg m**-2' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 79 ; } #Experimental product '~' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 80 ; } #Experimental product '~' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 81 ; } #Experimental product '~' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 82 ; } #Experimental product '~' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 83 ; } #Experimental product '~' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 84 ; } #Experimental product '~' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 85 ; } #Experimental product '~' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 86 ; } #Experimental product '~' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 87 ; } #Experimental product '~' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 88 ; } #Experimental product '~' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 89 ; } #Experimental product '~' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 90 ; } #Experimental product '~' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 91 ; } #Experimental product '~' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 92 ; } #Experimental product '~' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 93 ; } #Experimental product '~' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 94 ; } #Experimental product '~' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 95 ; } #Experimental product '~' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 96 ; } #Experimental product '~' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 97 ; } #Experimental product '~' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 98 ; } #Experimental product '~' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 99 ; } #Experimental product '~' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 100 ; } #Experimental product '~' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 101 ; } #Experimental product '~' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 102 ; } #Experimental product '~' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 103 ; } #Experimental product '~' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 104 ; } #Experimental product '~' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 105 ; } #Experimental product '~' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 106 ; } #Experimental product '~' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 107 ; } #Experimental product '~' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 108 ; } #Experimental product '~' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 109 ; } #Experimental product '~' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 110 ; } #Experimental product '~' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 111 ; } #Experimental product '~' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 112 ; } #Experimental product '~' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 113 ; } #Experimental product '~' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 114 ; } #Experimental product '~' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 115 ; } #Experimental product '~' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 116 ; } #Experimental product '~' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 117 ; } #Experimental product '~' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 118 ; } #Experimental product '~' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 119 ; } #Experimental product '~' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 120 ; } #Maximum temperature at 2 metres difference 'K' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 121 ; } #Minimum temperature at 2 metres difference 'K' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 122 ; } #10 metre wind gust in the last 6 hours difference 'm s**-1' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 123 ; } #Vertically integrated total energy 'J m**-2' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 125 ; } #Generic parameter for sensitive area prediction 'Various' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 126 ; } #Atmospheric tide difference '~' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 127 ; } #Budget values difference '~' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 128 ; } #Geopotential difference 'm**2 s**-2' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 129 ; } #Temperature difference 'K' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 130 ; } #U component of wind difference 'm s**-1' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 131 ; } #V component of wind difference 'm s**-1' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 132 ; } #Specific humidity difference 'kg kg**-1' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 133 ; } #Surface pressure difference 'Pa' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 134 ; } #Vertical velocity (pressure) difference 'Pa s**-1' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 135 ; } #Total column water difference 'kg m**-2' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 136 ; } #Total column water vapour difference 'kg m**-2' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 137 ; } #Vorticity (relative) difference 's**-1' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 138 ; } #Soil temperature level 1 difference 'K' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 139 ; } #Soil wetness level 1 difference 'kg m**-2' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 140 ; } #Snow depth difference 'm of water equivalent' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 141 ; } #Stratiform precipitation (Large-scale precipitation) difference 'm' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 142 ; } #Convective precipitation difference 'm' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 143 ; } #Snowfall (convective + stratiform) difference 'm of water equivalent' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 144 ; } #Boundary layer dissipation difference 'J m**-2' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 145 ; } #Surface sensible heat flux difference 'J m**-2' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 146 ; } #Surface latent heat flux difference 'J m**-2' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 147 ; } #Charnock difference '~' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 148 ; } #Surface net radiation difference 'J m**-2' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 149 ; } #Top net radiation difference '~' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 150 ; } #Mean sea level pressure difference 'Pa' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 151 ; } #Logarithm of surface pressure difference 'kg m**-2' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 152 ; } #Short-wave heating rate difference 'K' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 153 ; } #Long-wave heating rate difference 'K' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 154 ; } #Divergence difference 's**-1' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 155 ; } #Height difference 'm' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 156 ; } #Relative humidity difference '%' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 157 ; } #Tendency of surface pressure difference 'Pa s**-1' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 158 ; } #Boundary layer height difference 'm' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 159 ; } #Standard deviation of orography difference '~' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 160 ; } #Anisotropy of sub-gridscale orography difference '~' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 161 ; } #Angle of sub-gridscale orography difference 'radians' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 162 ; } #Slope of sub-gridscale orography difference '~' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 163 ; } #Total cloud cover difference '(0 - 1)' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 164 ; } #10 metre U wind component difference 'm s**-1' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 165 ; } #10 metre V wind component difference 'm s**-1' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 166 ; } #2 metre temperature difference 'K' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 167 ; } #Surface solar radiation downwards difference 'J m**-2' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 169 ; } #Soil temperature level 2 difference 'K' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 170 ; } #Soil wetness level 2 difference 'kg m**-2' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 171 ; } #Land-sea mask difference '(0 - 1)' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 172 ; } #Surface roughness difference 'm' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 173 ; } #Albedo difference '(0 - 1)' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 174 ; } #Surface thermal radiation downwards difference 'J m**-2' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 175 ; } #Surface net solar radiation difference 'J m**-2' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 176 ; } #Surface net thermal radiation difference 'J m**-2' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 177 ; } #Top net solar radiation difference 'J m**-2' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 178 ; } #Top net thermal radiation difference 'J m**-2' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 179 ; } #East-West surface stress difference 'N m**-2 s' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 180 ; } #North-South surface stress difference 'N m**-2 s' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 181 ; } #Evaporation difference 'kg m**-2' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 182 ; } #Soil temperature level 3 difference 'K' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 183 ; } #Soil wetness level 3 difference 'kg m**-2' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 184 ; } #Convective cloud cover difference '(0 - 1)' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 185 ; } #Low cloud cover difference '(0 - 1)' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 186 ; } #Medium cloud cover difference '(0 - 1)' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 187 ; } #High cloud cover difference '(0 - 1)' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 188 ; } #Sunshine duration difference 's' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 189 ; } #East-West component of sub-gridscale orographic variance difference 'm**2' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 190 ; } #North-South component of sub-gridscale orographic variance difference 'm**2' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 191 ; } #North-West/South-East component of sub-gridscale orographic variance difference 'm**2' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 192 ; } #North-East/South-West component of sub-gridscale orographic variance difference 'm**2' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 193 ; } #Brightness temperature difference 'K' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 194 ; } #Longitudinal component of gravity wave stress difference 'N m**-2 s' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 195 ; } #Meridional component of gravity wave stress difference 'N m**-2 s' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 196 ; } #Gravity wave dissipation difference 'J m**-2' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 197 ; } #Skin reservoir content difference 'kg m**-2' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 198 ; } #Vegetation fraction difference '(0 - 1)' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 199 ; } #Variance of sub-gridscale orography difference 'm**2' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 200 ; } #Maximum temperature at 2 metres since previous post-processing difference 'K' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 201 ; } #Minimum temperature at 2 metres since previous post-processing difference 'K' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 202 ; } #Ozone mass mixing ratio difference 'kg kg**-1' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 203 ; } #Precipitation analysis weights difference '~' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 204 ; } #Runoff difference 'm' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 205 ; } #Total column ozone difference 'kg m**-2' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 206 ; } #10 metre wind speed difference 'm s**-1' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 207 ; } #Top net solar radiation, clear sky difference 'J m**-2' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 208 ; } #Top net thermal radiation, clear sky difference 'J m**-2' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 209 ; } #Surface net solar radiation, clear sky difference 'J m**-2' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 210 ; } #Surface net thermal radiation, clear sky difference 'J m**-2' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 211 ; } #TOA incident solar radiation difference 'J m**-2' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 212 ; } #Diabatic heating by radiation difference 'K' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 214 ; } #Diabatic heating by vertical diffusion difference 'K' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 215 ; } #Diabatic heating by cumulus convection difference 'K' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 216 ; } #Diabatic heating large-scale condensation difference 'K' = { discipline = 192 ; parameterCategory = 200 ; parameterNumber = 217 ; } #Vertical diffusion of zonal wind difference 'm s**-1' = { discipline = 192 ; parameterCategory = 200