ELF>[@@ CodeTable.cf_code_table_0_0sprintfcode_table_0_0f_code_table_1_0code_table_1_0f_code_table_1_1code_table_1_1code_table_1_1_locationf_code_table_1_2code_table_1_2code_table_1_2_locationf_code_table_1_3code_table_1_3code_table_1_3_locationf_code_table_1_4code_table_1_4code_table_1_4_locationf_code_table_1_5uint4uint2code_table_1_5code_table_1_5_locationf_code_table_1_6code_table_1_6code_table_1_6_locationf_code_table_3_0code_table_3_0f_code_table_3_1code_table_3_1f_code_table_3_2__intel_sse4_strlenradius_earthcode_table_3_2code_table_3_2_locationf_code_table_3_6code_table_3_6f_code_table_3_7code_table_3_7f_code_table_3_8code_table_3_8f_code_table_3_11code_table_3_11f_code_table_3_15code_table_3_15f_code_table_3_20code_table_3_20code_table_3_20_locationf_code_table_3_21code_table_3_21f_code_table_4_0code_table_4_0f_code_table_4_1code_table_4_1code_table_4_1_locationf_code_table_4_2code_table_4_2code_table_4_2_locationf_code_table_4_3code_table_4_3code_table_4_3_locationf_code_table_4_4code_table_4_4code_table_4_4_locationcode_table_4_4_not_usedstderrf_code_table_4_5afprintfcode_table_4_5acode_table_4_5a_locationf_code_table_4_5bcode_table_4_5bcode_table_4_5b_locationf_code_table_4_6code_table_4_6code_table_4_6_locationf_code_table_4_7code_table_4_7code_table_4_7_locationf_code_table_4_8code_table_4_8code_table_4_8_locationf_code_table_4_9code_table_4_9code_table_4_9_locationf_code_table_4_10code_table_4_10code_table_4_10_locationf_code_table_4_11f_code_table_4_11sstat_proc_n_time_ranges_indexcode_table_4_11code_table_4_11_locationf_code_table_4_15code_table_4_15f_code_table_4_91code_table_4_91code_table_4_91_locationf_code_table_4_91bcode_table_4_91bcode_table_4_91b_locationprt_code_table_4_91f_code_table_4_230fputserror_count.1413.0.94code_table_4_230f_code_table_4_233code_table_4_233_locationcode_table_4_233f_code_table_4_235code_table_4_235f_code_table_5_0code_table_5_0f_code_table_5_1code_table_5_1f_code_table_5_4code_table_5_4f_code_table_5_5code_table_5_5f_code_table_5_6code_table_5_6f_code_table_5_7code_table_5_7f_code_table_6_0code_table_6_07  &5 FU0f u  ` 0 P5`PFLR0a0yP`@@ p# 2J0 @[p 0j @{ 0  0 p@ P ` @ @ P @) ;p@KP\ k |@`p0$ 3K 0cjP|p0p`P @ ``1@@ 0X0 i 0x 0!!0!0"0@##`$P%(F&VP'po'`(0(`)0)0)*0* *@ ,1M020^`2`q707@08p80899 :@`:P:@ :P1@;@@;PQ;0`<PqP<0<`<V|aHP w$3tCLǾ3. 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HtLǾ3tLǾ33YùȐHw FV D#w=$H3^H0XH"RHLLHPFH1@H/:H;4H..t"uHMtH&HHtÐHG PH4 T #w=$H3ZH0TH"NHLHHPBH1HM8HQ2H2,H0&H< H/uH MumH'HtdwE$! HtLǾ3tLǾ33YùAVSUHLHZHHcHm DtE<EM4D#w7$H4HH1BHMHQ8H22H0,H<&H/ uHMtH'HtDHG PH4 T #w7$H4GH1AHM;HQ5H2/H0)H<#H/uHÁMt3H'VHN QAЃulQ#wL$(! HtLǾ3tLǾ33YùHO QAЃuA#øVHv FVLHV wo$KD=6/(! HtLǾ3tLǾ33Yù@Hw FVLu HtF ø@Hw FVH L3HDDVHN QAЃ0HQ wo$KD=6/(! HtLǾ3tLǾ33YùfHO QAЃ0u HtAøfHO QAH30HDÐV $H HH(HHH(H}H(eHQH=H(%HH33YfDATAUSUVMHH{ GWL؃H ŅHCE3x w(5Ɖ5 H5HC%$AAAAAAAAAAAAAAAAyAnAcAXAMABA7A,A!AA AAAAAAAAAAAA$AfA[APAEA:A/A$AAAAAAAAAAAAAAAAtAi߱$AHA=A2A'AAAAAAAAAAAAAAAAwAl$AKA@A5A*AAA AAAAAAAAAA wr$A~AvAnAfA^AVANAFA>A6A.A&A)uAuAx vx w-X@؃btMtLL3L33Y][A]A\H GWL؃w H fATSUMą0HHHŅ %$|rh^TJ@6,"xndZP$0&|rh^TJ߱$*  vlb$B8.$ wh$|ung`YRKD=6/)t"0uu3ہHDH3H=HtLH33][A\L3Hw NVʃ,tH 30HDH H@H WGЃ,t0tH tH tDV|HN QAЃ4t3YQ t,u%uLǾ3ȹHtLǾ3fHO QAЃ4tA SLÅH~(H =w,$le^WP=uB=u4H߾37 HtH߾33[@H(H SUVLH|kH{(H v؃wQHC(Pt,u%uH3HtH33Y][fAWII(H v؃w IG(@A_øA_SUVLH|;H{(H |)H{(H HC(PH33Y][fAUII}(H |I}(H ~A]IE(@A]@SUVLH|;H{(H |)H{(H HC(PH33Y][fAUII}(H |I}(H ~A]IE(@A]@ATAUVMI|I|$(H t3YA]A\ID$(P/L3DUHH}(H t]HE(@/]fATAUVMI|I|$(H t3YA]A\ID$(P L3DUHH}(H t]HE(@ ]fV|VHF0Pt=tuu"HtLǾ3LǾ33YÐHG0@@@Oceanographic Productscode table 0.0=%dSpace ProductsLand Surface ProductsHydrological ProductsMeteorological Productscode table 0.0=%d %sMissingcode table 1.0=%dcode table 1.1=%dVerifying Time of ForecastObservation Timecode table 1.2=%dStart of Forecastcode table 1.2=%d %sAnalysisTIGGE test ProductsTIGGE operational ProductsRe-Analysis ProductsResearch ProductsOperational Test ProductsOperational Productscode table 1.3=%d %scode table 1.3=%dProcessed Radar ObservationsProcessed Satellite ObservationsControl and Perturbed Forecast ProductsPerturbed Forecast ProductsControl Forecast ProductsAnalysis and Forecast ProductsForecast ProductsAnalysis Productscode table 1.4=%d %scode table 1.4=%dcode table 1.5=%dcode table 1.6=%dcode table 3.0=%dAzimuth-Range ProjectionEquatorial Azimuthal Equidistant ProjectionTriangular Grid Based on an IcosahedronSpace View Perspective or OrthographicRotated and Stretched Spherical Harmonic CoefficientsStretched Spherical Harmonic CoefficientsRotated Spherical Harmonic CoefficientsSpherical Harmonic CoefficientsRotated and Stretched Gaussian Latitude/LongitudeStretched Gaussian Latitude/LongitudeRotated Gaussian Latitude/LongitudeGaussian Latitude/LongitudeAlbers Equal AreaLambert Conformal (Secant, tangent, conical, or bipolar)Polar Stereographic Projection (North or South)MercatorRotated Latitude/Longitude (Arakawa Staggered E-Grid)code table 3.1=%dTime Section GridRotated and Stretched Latitude/LongitudeStretched Latitude/LongitudeRotated Latitude/LongitudeLatitude/Longitudecode table 3.1=%d %sHovmoller Diagram with Points Equally Spaced on the HorizontalCurvilinear Orthogonal GridsEarth assumed spherical with radius = 6,371,229.0 mEarth assumed spherical with radius = 6,367,470.0 mcode table 3.2=%d %scode table 3.2=%d, ave radius of earth=%lf kmcode table 3.6=%dcode table 3.7=%dGrid points at midpoints of triangle sidescode table 3.8=%dGrid points at centers of trianglescode table 3.8=%d %sGrid points at triangle verticesthinned regional grid, nx specifiedlatitudes of rows are specifiedcode table 3.11=%dthinned global grid, nx specifiedcode table 3.11=%d %snot usedDepth below sea level [m]Geopotential height [gpm]Eta coordinate []Geometric height [m]Potential vorticity [K m^-2 kg^-1 s^-1]Pressure deviation from ground to level [Pa]Potential temperature (theta) [K]Depth below land surface [m]Hybrid coordinate []Sigma coordinate []Height above ground [m]Altitude above mean sea level [m]Pressure deviation from mean sea level [Pa]Pressure [Pa]code table 3.15=%dTemperature [K]code table 3.15=%d %sMissing []Great Circlecode table 3.20=%dRhumbcode table 3.20=%d %sGeometric coordinates f(1) = C1 f(n) = C2 x f(n-1)code table 3.21=%dLinear coordinates f(1) = C1 f(n) = f(n-1) + C2code table 3.21=%d %sExplicit coordinate values setSatellite productRadar productcode table 4.0=%dcode table 4.0=%d %sCross-section of analysis and forecast at a point in time.CCITT IA5 character stringcode table 4.1=%dcode table 4.2=%dhindcastnowcastpost-proc fcstpost-proc anlbias-corr ens fcstprob wt fcstclimobsanl errfcst errprob fcstens fcstbias-corr fcstfcstinitanlfcst confidenceundefinedmissingcode table 4.3=%d %scode table 4.3=%dsecond12 hours6 hours3 hourscode table 4.4=%dcenturynormal (30 years)decadeyearmonthdayhourminutecode table 4.4=%d (%s)code table 4.5a=%dcode table 4.5b=%dcode table 4.6=%dMaximum Of All Ensemble MembersMinimum Of All Ensemble MembersInterquartile Range (Range between the 25th and 75th quantile)Unweighted Mean of the Cluster MembersLarge Anomaly Index of All MembersSpread of All MembersStandard Deviation with respect to Cluster Mean, NormalizedStandard Deviation with respect to Cluster MeanWeighted Mean of All MembersUnweighted Mean of All Memberscode table 4.7=%d %scode table 4.7=%dStatistically decided weights for each ensemble memberPercentile value (90%) of All MembersPercentile value (50%) of All MembersPercentile value (10%) of All MembersUnweighted Mode of All MembersRoot Mean Squarecode table 4.8=%dAnomoly Correlationcode table 4.8=%d %sprobability < upper limitprobability > lower limitprobability between upper and lower limitsprobability > upper limitprobability < lower limitcode table 4.9=%d %scode table 4.9=%dsummationstandardized anomalyratiofirst-lastcovarStdDevRMSlast-firstminmaxaccavecode table 4.10=%d %scode table 4.10=%dReservedcode table 4.11=%d %scode table 4.11=%d,%dcode table 4.15=%d %scode table 4.15=%dEqual to first limitSmaller or equal second limitGreater or equal first limitGreater or equal second limitSmaller or equal first limitSmaller than second limitGreater than first limitGreater than second limitSmaller than first limitcode table 4.91=%d %scode table 4.91=%d=%lg>%lg,<=%lg<=%lg>=%lg>=%lg,<=%lg<%lg>%lg>=%lg,<%lg??? code_table_4.91=%dBromine NitrateHypobromous AcidHydrogen BromideBromine ChlorideBromine MonoxideAtomic BromideChlorine DioxideChlorine NitrateHypochlorous AcidDichlorine PeroxideChlorine MonoxideAtomic ChlorineDivalent MercuryElemental MercuryRadonSulphateAtomic NitrogenMolecular HydrogenHydrogen PeroxidePeroxynitric AcidNitric AcidNitrous AcidDinitrogen PentoxideHydroperoxyl RadicalNitrate RadicalAtomic OxygenNitrogen MonoxideAmmoniumAmmoniaSulphur DioxideFormaldehydeNitrous OxideNitrogen DioxideCarbon MonoxideCarbon DioxideMethaneWater VapourOzoneXyleneTolueneBenzeneLimoneneBeta PineneAlpha PineneIsopreneButanesPropenePropanePeroxyacetyl NitrateAcetic AcidEthanolEthyne (= Acetylene)Ethene (= Ethylene)EthaneAceto NitrileHydrogen CyanideFormic AcidMethanolMethyl HydroperoxideMethyl Peroxy RadicalHydroxyl RadicalHexachlorobiphenyl (PCB-153)Alpha HexachlorocyclohexaneHexachlorocyclohexane (HCH)Methyl Bromide (HBC-40B1)HCC-140aCarbon Tetrachloride (HCC-10)Methyl Chloride (HCC-40)Halon-2402Halon-1301Halon-1211Halon-1202HCFC-142bHCFC-141bHCFC-22CFC-115CFC-114CFC-113aCFC-113CFC-12CFC-11Hydrogen ChlorideLumped Oxygenated HydrocarbonsNon-Methane Volatile Organic Compounds Expressed as CarbonLumped TerpenesLumped Aromatic CoumpoundsLumped AlkenesLumped AlkanesTotal Inorganic Bromine Except Hbr, BrONO2:BrOxTotal Inorganic Chlorine Except HCl, ClONO2: ClOxTotal Inorganic BromineTotal Inorganic ChlorineAll Nitrogen Oxides (NOy) Expressed As NitrogenNOxExpressed As NitrogenPassive OzoneTotal Inorganic and Organic Peroxy Radicals (HO2+RO2)HOx Radical (OH+HO2)Secondary Particulate Organic Matter DryPrimary Particulate Organic Matter DryParticulate Organic Matter DryBlack Carbon DrySea Salt DryMercury DrySulphate DryNitric Acid TrihydrateNitrate DryAmmonium Drywater In AmbientDust DryTotal AerosolDimethyl Sulphidecode table 4.230=%d %scode table 4.230=%dAll Nitrogen Oxides (NOy) Expressed As NitrogenNOxExpressed As NitrogenHOx Radical (OH+HO2)Radioactive Pollutant (Tracer, defined by originating centre)>>>>code table 4.233=%d %scode table 4.233=%d %scode table 4.233=%dGeneralized Partitioncode table 4.235=%dTotal Wave Spectrum (combined wind waves and swell)code table 4.235=%d %sgrid point data - simple packing with logarithm pre-processingspectral data - complex packingspectral data - simple packinggrid point data - png compressiongrid point data - jpeg2000 compressionrun length packing with level valuescode table 5.0=%dgrid point data - ieee floating point datagrid point data - complex packing and spatial differencinggrid point data - complex packingmatrix value at grid point - simple packinggrid point data - simple packingcode table 5.0=%d %sintegercode table 5.1=%dfloating pointcode table 5.1=%d %scode table 5.4=%dcode table 5.5=%dcode table 5.6=%dcode table 5.7=%da bit map does not apply to this product.code table 6.0=%d %scode table 6.0=%dWarning: if file made with ECMWF API, may be using incompatible chemistry table Cross Section Grid with Points Equally Spaced on the HorizontalEarth model assumed spherical with radius 6,371,200 m, but the horizontal datum of the resulting Latitude/Longitude field is the WGS84 reference frameEarth assumed oblate spheroid with major and minor axes specified (in m) by data producerEarth assumed represented by WGS84 (as used by ICAO since 1998) (Uses IAG-GRS80 as a basis)Earth assumed oblate spheriod as defined in IAG-GRS80 model (major axis = 6,378,137.0 m, minor axis = 6,356,752.314 m, f = 1/298.257222101)Earth assumed oblate spheriod with major and minor axes specified (in km) by data producerEarth assumed oblate spheriod with size as determined by IAU in 1965 (major axis = 6,378,160.0 m, minor axis = 6,356,775.0 m, f = 1/297.0)Earth assumed spherical with radius specified (in m) by data producerHovmoller-type grid with averaging or other statistical processingHovmoller-type grid with no averaging or other statistical processingDerived forecasts based on a cluster of ensemble members over a circular area at a horizontal level or in a horizontal layer, in a continuous or non-continuous time interval.Derived forecasts based on a cluster of ensemble members over a rectangular area at a horizontal level or in a horizontal layer, in a continuous or non-continuous time interval.Derived forecasts based on all ensemble members at a horizontal level or in a horizontal layer, in a continuous or non-continuous time interval.Individual ensemble forecast, control and perturbed, at a horizontal level or in a horizontal layer, in a continuous or non-continuous time interval.Percentile forecasts at a horizontal level or in a horizontal layer in a continuous or non-continuous time interval.Probability forecasts at a horizontal level or in a horizontal layer in a continuous or non-continuous time interval.Average, accumulation, extreme values or other statistically processed values at a horizontal level or in a horizontal layer in a continuous or non-continuous time interval.Analysis or forecast error at a horizontal level or in a horizontal layer at a point in time.Percentile forecasts at a horizontal level or in a horizontal layer at a point in time.Probability forecasts at a horizontal level or in a horizontal layer at a point in time.Derived forecasts based on a cluster of ensemble members over a circular area at a horizontal level or in a horizontal layer at a point in time.Derived forecasts based on a cluster of ensemble members over a rectangular area at a horizontal level or in a horizontal layer at a point in time.Derived forecasts based on all ensemble members at a horizontal level or in a horizontal layer at a point in time.Individual ensemble forecast, control and perturbed, at a horizontal level or in a horizontal layer at a point in time.Analysis or forecast at a horizontal level or in a horizontal layer at a point in time.Cross-section of analysis and forecast, averaged or otherwise statistically-processed over latitude or longitude.Cross-section of averaged or otherwise statistically processed analysis or forecast over a range of time.code_table_4.5a: product definition template #%d not supported code_table_4.5b: product definition template #%d not supported Climate Percentile (percentile values from climate distribution)Floating subinterval of time between forecast time and end of overall time interval.Successive times processed have start time of forecast decremented and forecast time incremented so that valid time remains constant.Successive times processed have start time of forecast incremented and forecast time decremented so that valid time remains constant.Successive times processed have same start time of forecast, forecast time is incremented.Successive times processed have same forecast time, start time of forecast is incremented.neighbor-budget interpolation using the 4 source grid grid-point values surrounding the nominal grid-pointspectral interpolation using the 4 source grid grid-point values surrounding the nominal grid-pointbudget interpolation using the 4 source grid grid-point values surrounding the nominal grid-pointusing the value from the source grid grid-point which is nearest to the nominal grid-pointbicubic interpolation using the 4 source grid grid-point values surrounding the nominal grid-pointbilinear interpolation using the 4 source grid grid-point values surrounding the nominal grid-pointdata is calculated directly from the source grid with no interpolationBetween first and second limit. The range includes the second limit but not the first limit.Between first and second limit. The range includes the first limit and the second limit.Between first and second limit. The range includes the first limit but not the second limit.Biogenic Non-Methane Volatile Organic Compounds Expressed as CarbonAnthropogenic Non-Methane Volatile Organic Compounds Expressed as CarbonTotal Inorganic Bromine Except Hbr, BrONO2:BrOxTotal Inorganic Chlorine Except HCl, ClONO2: ClOxTotal Inorganic and Organic Peroxy Radicals (HO2+RO2)a bit map previously defined in the same grib2 message applies to this product.a bit map applies to this product and is specified in this section.x $AhAD\ A^|0Aj $AnA  $$<A|Ad |$AA 4PBAA DAB,$0A`AEEA,T0A^AABA4PAAA IAA,@BpBAEB,@AjAABA A^<,TpASAA<BBB vBBBA ,BwBAMB, BMBAcB,<@AAA yAA,l0A`AAEA,@AAA yAA,0A`AAEA4AAA _AAA ,40AZAAHA$dpAZA4BAA lABA 4@BcBAHBAHB4BAA hABA 4LPAcAAMAA4@B`BAHBAHB4BAA hABA 4@BcBAHBAHB$,PA2AT $lAA$AAAp<T$l0AA0A$AAMD$ A}AEAEAEAxAQAEl A$ AAM< A}AEAEAxAQAE `A[ P, @$D `A,Al @ 0 Au 0 0$ AA 0, 0$D 0A&Al  $ AAD BAA D0G`DF AAB $ p$< AAd 0$| AA 0 0$ AA 0 , @A8DL BBA A(A0(A ABB 0< `BAA =AABA  0@$pA]AD0$\AA4AAA xAA,@BeBAEB4PAAA HAA,<@BlBAHB4lPAAA HAA,@BlBAHB4PBBA `BBA , 0AZAAHA4<PBBA `BBA ,t0AZAAHA`A].shstrtab.strtab.symtab.data.bss.text.rodata.rodata.str1.4.rodata.str1.32.note.GNU-stack.eh_frame.rela.text.rela.rodata.rela.eh_frame  + 2 9 ,@ <G TN l[ b k    H T f m t  $   < X H \ x    & - ? 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