10-11 |
type |
codetable |
Type |
6-7 |
localDefinitionNumber |
unsigned |
ECMWF local GRIB use definition identifier.
21 = Sensitive area predictions. |
12-13 |
stream |
codetable |
Stream |
8-9 |
class |
codetable |
Class |
14-17 |
experimentVersionNumber |
ksec1expver |
Version number or experiment identifier.
(4 ASCII characters, right justified) |
30-33 |
northWestLatitudeOfVerficationArea |
signed |
Latitude in degrees of north-west corner of forecast verification area
multiplied by multiplicationFactorForLatLong |
26-29 |
multiplicationFactorForLatLong |
unsigned |
Multiplication factor to convert latitude/longitude and accuracy from real to integer |
25 |
normAtFinalTime |
unsigned |
Norm used at final time |
24 |
normAtInitialTime |
unsigned |
Norm used at initial time |
20-21 |
numberOfIterations |
unsigned |
Number of iterations |
22-23 |
numberOfSingularVectorsComputed |
unsigned |
Number of singular vectors computed |
18-19 |
forecastOrSingularVectorNumber |
unsigned |
Forecast number or singular vector number or flight number. Zero for analysis |
65 |
shapeOfVerificationArea |
unsigned |
Shape of verification region:
0: lat-lon box as given by octets 30-45
1: circular region with centre at
latitude = 0.5*(northWestLatitude + southEastLatitude)/multiplicationFactor (deg)
longitude = 0.5*(northWestLongitude + southEastLongitude)/multiplicationFactor (deg)
and with
radius = 0.5*(northWestLatitude - southEastLatitude)/(multiplicationFactor*111.199)
= great-circle distance in km
This is the largest circle fitting in a lat-lon box defined by octets 30-45 |
63-64 |
methodNumber |
unsigned |
Method number |
62 |
marsDomain |
ascii |
Domain. 1 ASCII character (uppercase) |
61 |
forecastLeadTime |
unsigned |
Forecast lead time (hours)
For all types, this is the lead time of forecast(s) on which sensitive
area prediction is based. The lead time is the time from the initialization
of the forecast to the reference time |
60 |
optimisationTime |
unsigned |
For all types, this is the period in hours between the time when the
targeted observations are taken (the reference time) and the forecast
verification time. For singular vectors, this is the optimisation time. |
56-59 |
NINT_RITZ_EXP |
signed |
NINT( RITZ / EXP(LOG(10.0)*NINT_LOG10_RITZ) ) |
52-55 |
NINT_LOG10_RITZ |
signed |
NINT( LOG10(RITZ)-5 ) |
50-51 |
numberOfSingularVectorsEvolved |
unsigned |
Number of singular vectors evolved |
46-49 |
accuracyMultipliedByFactor |
unsigned |
Accuracy multiplied by multiplicationFactorForLatLong |
42-45 |
southEastLongitudeOfVerficationArea |
signed |
Longitude in degrees of south-east corner of forecast verification area
multiplied by multiplicationFactorForLatLong |
38-41 |
southEastLatitudeOfVerficationArea |
signed |
Latitude in degrees of south-east corner of forecast verification area
multiplied by multiplicationFactorForLatLong |
34-37 |
northWestLongitudeOfVerficationArea |
signed |
Longitude in degrees of north-west corner offorecast verification area
multiplied by multiplicationFactorForLatLong |
52-59 |
|
|
Ritz numbers: |