mirror of https://github.com/ecmwf/eccodes.git
ECC-1880: GRIB2: Additions & modifications of instantaneous parameters for generalised time processing approach (part 5)
This commit is contained in:
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146be3258f
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14986da02c
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@ -14984,11 +14984,6 @@
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table2Version = 172 ;
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indicatorOfParameter = 45 ;
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}
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#Magnitude of turbulent surface stress
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'Magnitude of turbulent surface stress' = {
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table2Version = 172 ;
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indicatorOfParameter = 48 ;
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}
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#Mean large-scale precipitation fraction
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'Mean large-scale precipitation fraction' = {
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table2Version = 172 ;
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@ -14984,11 +14984,6 @@
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table2Version = 172 ;
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indicatorOfParameter = 45 ;
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}
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#Magnitude of turbulent surface stress
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'172048' = {
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table2Version = 172 ;
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indicatorOfParameter = 48 ;
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}
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#Mean large-scale precipitation fraction
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'172050' = {
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table2Version = 172 ;
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@ -14984,11 +14984,6 @@
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table2Version = 172 ;
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indicatorOfParameter = 45 ;
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}
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#Magnitude of turbulent surface stress
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'~' = {
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table2Version = 172 ;
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indicatorOfParameter = 48 ;
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}
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#Mean large-scale precipitation fraction
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'mlspfr' = {
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table2Version = 172 ;
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@ -14984,11 +14984,6 @@
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table2Version = 172 ;
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indicatorOfParameter = 45 ;
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}
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#Magnitude of turbulent surface stress
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'N m**-2' = {
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table2Version = 172 ;
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indicatorOfParameter = 48 ;
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}
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#Mean large-scale precipitation fraction
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'~' = {
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table2Version = 172 ;
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@ -266,18 +266,6 @@
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parameterCategory = 128 ;
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parameterNumber = 71 ;
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}
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#Instantaneous surface solar radiation downwards
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'Instantaneous surface solar radiation downwards' = {
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discipline = 192 ;
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parameterCategory = 128 ;
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parameterNumber = 72 ;
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}
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#Instantaneous surface thermal radiation downwards
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'Instantaneous surface thermal radiation downwards' = {
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discipline = 192 ;
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parameterCategory = 128 ;
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parameterNumber = 73 ;
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}
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#Experimental product
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'Experimental product' = {
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discipline = 192 ;
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@ -18782,18 +18770,6 @@
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parameterCategory = 172 ;
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parameterNumber = 45 ;
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}
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#Magnitude of turbulent surface stress
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'Magnitude of turbulent surface stress' = {
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discipline = 192 ;
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parameterCategory = 172 ;
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parameterNumber = 48 ;
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}
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#Mean large-scale precipitation fraction
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'Mean large-scale precipitation fraction' = {
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discipline = 192 ;
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parameterCategory = 172 ;
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parameterNumber = 50 ;
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}
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#Mean large-scale precipitation rate
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'Mean large-scale precipitation rate' = {
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localTablesVersion = 1 ;
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@ -18821,12 +18797,6 @@
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typeOfFirstFixedSurface = 1 ;
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typeOfStatisticalProcessing = 0 ;
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}
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#Boundary layer dissipation
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'Boundary layer dissipation' = {
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discipline = 192 ;
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parameterCategory = 172 ;
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parameterNumber = 145 ;
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}
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#Mean short-wave heating rate
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'Mean short-wave heating rate' = {
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discipline = 192 ;
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@ -18848,30 +18818,6 @@
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typeOfFirstFixedSurface = 1 ;
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typeOfStatisticalProcessing = 0 ;
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}
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#Mean sunshine duration rate
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'Mean sunshine duration rate' = {
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discipline = 192 ;
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parameterCategory = 172 ;
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parameterNumber = 189 ;
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}
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#Longitudinal component of gravity wave stress
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'Longitudinal component of gravity wave stress' = {
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discipline = 192 ;
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parameterCategory = 172 ;
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parameterNumber = 195 ;
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}
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#Meridional component of gravity wave stress
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'Meridional component of gravity wave stress' = {
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discipline = 192 ;
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parameterCategory = 172 ;
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parameterNumber = 196 ;
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}
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#Gravity wave dissipation
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'Gravity wave dissipation' = {
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discipline = 192 ;
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parameterCategory = 172 ;
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parameterNumber = 197 ;
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}
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#Mean runoff rate
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'Mean runoff rate' = {
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localTablesVersion = 1 ;
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@ -266,18 +266,6 @@
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parameterCategory = 128 ;
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parameterNumber = 71 ;
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}
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#Instantaneous surface solar radiation downwards
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'72' = {
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discipline = 192 ;
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parameterCategory = 128 ;
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parameterNumber = 72 ;
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}
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#Instantaneous surface thermal radiation downwards
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'73' = {
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discipline = 192 ;
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parameterCategory = 128 ;
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parameterNumber = 73 ;
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}
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#Experimental product
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'80' = {
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discipline = 192 ;
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@ -18782,18 +18770,6 @@
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parameterCategory = 172 ;
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parameterNumber = 45 ;
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}
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#Magnitude of turbulent surface stress
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'172048' = {
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discipline = 192 ;
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parameterCategory = 172 ;
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parameterNumber = 48 ;
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}
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#Mean large-scale precipitation fraction
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'172050' = {
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discipline = 192 ;
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parameterCategory = 172 ;
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parameterNumber = 50 ;
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}
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#Mean large-scale precipitation rate
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'172142' = {
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localTablesVersion = 1 ;
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@ -18821,12 +18797,6 @@
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typeOfFirstFixedSurface = 1 ;
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typeOfStatisticalProcessing = 0 ;
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}
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#Boundary layer dissipation
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'172145' = {
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discipline = 192 ;
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parameterCategory = 172 ;
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parameterNumber = 145 ;
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}
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#Mean short-wave heating rate
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'172153' = {
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discipline = 192 ;
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@ -18848,30 +18818,6 @@
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typeOfFirstFixedSurface = 1 ;
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typeOfStatisticalProcessing = 0 ;
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}
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#Mean sunshine duration rate
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'172189' = {
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discipline = 192 ;
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parameterCategory = 172 ;
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parameterNumber = 189 ;
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}
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#Longitudinal component of gravity wave stress
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'172195' = {
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discipline = 192 ;
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parameterCategory = 172 ;
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parameterNumber = 195 ;
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}
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#Meridional component of gravity wave stress
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'172196' = {
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discipline = 192 ;
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parameterCategory = 172 ;
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parameterNumber = 196 ;
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}
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#Gravity wave dissipation
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'172197' = {
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discipline = 192 ;
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parameterCategory = 172 ;
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parameterNumber = 197 ;
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}
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#Mean runoff rate
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'172205' = {
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localTablesVersion = 1 ;
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@ -266,18 +266,6 @@
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parameterCategory = 128 ;
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parameterNumber = 71 ;
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}
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#Instantaneous surface solar radiation downwards
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'issrd' = {
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discipline = 192 ;
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parameterCategory = 128 ;
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parameterNumber = 72 ;
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}
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#Instantaneous surface thermal radiation downwards
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'istrd' = {
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discipline = 192 ;
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parameterCategory = 128 ;
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parameterNumber = 73 ;
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}
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#Experimental product
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'~' = {
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discipline = 192 ;
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@ -18782,18 +18770,6 @@
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parameterCategory = 172 ;
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parameterNumber = 45 ;
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}
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#Magnitude of turbulent surface stress
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'~' = {
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discipline = 192 ;
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parameterCategory = 172 ;
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parameterNumber = 48 ;
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}
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#Mean large-scale precipitation fraction
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'mlspfr' = {
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discipline = 192 ;
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parameterCategory = 172 ;
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parameterNumber = 50 ;
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}
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#Mean large-scale precipitation rate
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'mlsprt' = {
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localTablesVersion = 1 ;
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@ -18821,12 +18797,6 @@
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typeOfFirstFixedSurface = 1 ;
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typeOfStatisticalProcessing = 0 ;
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}
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#Boundary layer dissipation
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'bldrate' = {
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discipline = 192 ;
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parameterCategory = 172 ;
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parameterNumber = 145 ;
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}
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#Mean short-wave heating rate
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'mswhr' = {
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discipline = 192 ;
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@ -18848,30 +18818,6 @@
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typeOfFirstFixedSurface = 1 ;
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typeOfStatisticalProcessing = 0 ;
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}
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#Mean sunshine duration rate
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'msdr' = {
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discipline = 192 ;
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parameterCategory = 172 ;
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parameterNumber = 189 ;
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}
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#Longitudinal component of gravity wave stress
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'~' = {
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discipline = 192 ;
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parameterCategory = 172 ;
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parameterNumber = 195 ;
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}
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#Meridional component of gravity wave stress
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'~' = {
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discipline = 192 ;
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parameterCategory = 172 ;
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parameterNumber = 196 ;
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}
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#Gravity wave dissipation
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'gwdrate' = {
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discipline = 192 ;
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parameterCategory = 172 ;
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parameterNumber = 197 ;
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}
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#Mean runoff rate
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'mrort' = {
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localTablesVersion = 1 ;
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@ -266,18 +266,6 @@
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parameterCategory = 128 ;
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parameterNumber = 71 ;
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}
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#Instantaneous surface solar radiation downwards
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'W m**-2' = {
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discipline = 192 ;
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parameterCategory = 128 ;
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parameterNumber = 72 ;
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}
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#Instantaneous surface thermal radiation downwards
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'W m**-2' = {
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discipline = 192 ;
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parameterCategory = 128 ;
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parameterNumber = 73 ;
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}
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#Experimental product
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'~' = {
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discipline = 192 ;
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@ -18782,18 +18770,6 @@
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parameterCategory = 172 ;
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parameterNumber = 45 ;
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}
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#Magnitude of turbulent surface stress
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'N m**-2' = {
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discipline = 192 ;
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parameterCategory = 172 ;
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parameterNumber = 48 ;
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}
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#Mean large-scale precipitation fraction
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'~' = {
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discipline = 192 ;
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parameterCategory = 172 ;
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parameterNumber = 50 ;
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}
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#Mean large-scale precipitation rate
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'm s**-1' = {
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localTablesVersion = 1 ;
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@ -18821,12 +18797,6 @@
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typeOfFirstFixedSurface = 1 ;
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typeOfStatisticalProcessing = 0 ;
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}
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#Boundary layer dissipation
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'W m**-2' = {
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discipline = 192 ;
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parameterCategory = 172 ;
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parameterNumber = 145 ;
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}
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#Mean short-wave heating rate
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'K s**-1' = {
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discipline = 192 ;
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typeOfFirstFixedSurface = 1 ;
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typeOfStatisticalProcessing = 0 ;
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}
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#Mean sunshine duration rate
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's s**-1' = {
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discipline = 192 ;
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parameterCategory = 172 ;
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parameterNumber = 189 ;
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}
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#Longitudinal component of gravity wave stress
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'N m**-2' = {
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discipline = 192 ;
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parameterCategory = 172 ;
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parameterNumber = 195 ;
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}
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#Meridional component of gravity wave stress
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'N m**-2' = {
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discipline = 192 ;
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parameterCategory = 172 ;
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parameterNumber = 196 ;
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}
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#Gravity wave dissipation
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'W m**-2' = {
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discipline = 192 ;
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parameterCategory = 172 ;
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parameterNumber = 197 ;
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}
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#Mean runoff rate
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'm s**-1' = {
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localTablesVersion = 1 ;
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@ -6441,18 +6441,6 @@
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parameterCategory = 4 ;
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parameterNumber = 51 ;
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}
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#Net long wave radiation flux (surface)
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'Net long wave radiation flux (surface)' = {
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discipline = 0 ;
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parameterCategory = 5 ;
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parameterNumber = 0 ;
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}
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#Net long wave radiation flux (top of atmosphere)
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'Net long wave radiation flux (top of atmosphere)' = {
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discipline = 0 ;
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parameterCategory = 5 ;
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parameterNumber = 1 ;
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}
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#Surface downward long-wave radiation flux
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'Surface downward long-wave radiation flux' = {
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discipline = 0 ;
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parameterCategory = 4 ;
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parameterNumber = 51 ;
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}
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#Net long wave radiation flux (surface)
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'260095' = {
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discipline = 0 ;
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parameterCategory = 5 ;
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parameterNumber = 0 ;
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}
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#Net long wave radiation flux (top of atmosphere)
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'260096' = {
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discipline = 0 ;
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parameterCategory = 5 ;
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parameterNumber = 1 ;
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}
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#Surface downward long-wave radiation flux
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'260097' = {
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discipline = 0 ;
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@ -6441,18 +6441,6 @@
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parameterCategory = 4 ;
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parameterNumber = 51 ;
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}
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#Net long wave radiation flux (surface)
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'nlwrs' = {
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discipline = 0 ;
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parameterCategory = 5 ;
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parameterNumber = 0 ;
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}
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#Net long wave radiation flux (top of atmosphere)
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'nlwrt' = {
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discipline = 0 ;
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parameterCategory = 5 ;
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parameterNumber = 1 ;
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}
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#Surface downward long-wave radiation flux
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'sdlwrf' = {
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discipline = 0 ;
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@ -6441,18 +6441,6 @@
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parameterCategory = 4 ;
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parameterNumber = 51 ;
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}
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#Net long wave radiation flux (surface)
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'W m**-2' = {
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discipline = 0 ;
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parameterCategory = 5 ;
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parameterNumber = 0 ;
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}
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#Net long wave radiation flux (top of atmosphere)
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'W m**-2' = {
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discipline = 0 ;
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parameterCategory = 5 ;
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parameterNumber = 1 ;
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}
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#Surface downward long-wave radiation flux
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'W m**-2' = {
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discipline = 0 ;
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