test_data/write_eco/WHCRP048_ECO.R

structure(list(`ECO#` = c("999991", "999992", "DFAULT", "CA0001", 
"US0001", "UK0001"), ECONAME = c("MINIMA", "MAXIMA", "DEFAULT", 
"CANADA(SPRING)", "USA(WINTER)", "UK(MFUNDIN)"), PARUE = c(1, 
4, 2.7, 2.7, 2.5, 2.7), PARU2 = c(1, 4, 2.7, 2.7, 2.7, 2.7), 
    PHL2 = c(4, 200, 12, 200, 200, 15), PHF3 = c(1, 1.6, 1.3, 
    1, 1, 1.5), SLAS = c(100L, 600L, 400L, 300L, 400L, 485L), 
    LSENI = c(0.1, 2.5, 1.5, 0.3, 1.5, 0.3), LSPHS = c(5, 8.5, 
    8, 5.5, 8.3, 8.7), LSPHE = c(5, 9.5, 9.2, 9, 9.3, 9.2), `TIL#S` = c(2, 
    5, 4, 3, 4.5, 4.5), TILPE = c(2, 5, 3, 3.5, 3, 3), TIFAC = c(0.1, 
    1, 1, 1, 0.8, 0.2), TDPHS = c(1.5, 3.5, 3, 3.7, 3.2, 3), 
    TDPHE = c(4.5, 8, 7, 9, 9, 9), TDFAC = c(0.1, 15, 5, 4, 4, 
    12), TDSF = c(0, 2, 1, 1, 1, 1), RDGS = c(1, 5, 3, 3, 4, 
    3), HTSTD = c(50L, 150L, 100L, 100L, 100L, 100L), AWNS = c(0, 
    10, 5, 0, 5, 0), KCAN = c(0.65, 0.95, 0.85, 0.85, 0.85, 0.85
    ), `RS%A` = c(5L, 30L, 15L, 15L, 10L, 25L), `GN%S` = c(1, 
    4, 2, 4, 2.3, 2.5), `GN%MN` = c(0.5, 2.5, 1.5, 1.5, 1.7, 
    1), `GM%H` = c(0, 25, 15, 15, 8, 15), TKFH = c(-10L, -30L, 
    -15L, -8L, -30L, -10L), SSPHS = c(5, 8.5, 8, 8.7, 8.3, 8.5
    ), SSPHE = c(7, 9.5, 9.3, 9.4, 8.5, 9.7)), class = c("DSSAT_tbl", 
"tbl_df", "tbl", "data.frame"), row.names = c(NA, -6L), v_fmt = c(`ECO#` = "%-7s", 
ECONAME = "%-18s", PARUE = "%5.1f", PARU2 = "%6.1f", PHL2 = "%6.0f", 
PHF3 = "%6.1f", SLAS = "%6.0f", LSENI = "%6.1f", LSPHS = "%6.1f", 
LSPHE = "%6.1f", `TIL#S` = "%6.1f", TILPE = "%6.1f", TIFAC = "%6.1f", 
TDPHS = "%6.1f", TDPHE = "%6.1f", TDFAC = "%6.1f", TDSF = "%6.0f", 
RDGS = "%6.0f", HTSTD = "%6.0f", AWNS = "%6.0f", KCAN = "%6.2f", 
`RS%A` = "%6.0f", `GN%S` = "%6.1f", `GN%MN` = "%6.1f", `GM%H` = "%6.0f", 
TKFH = "%6.0f", SSPHS = "%6.1f", SSPHE = "%6.1f"), first_line = "$ECOTYPES:WHCRP048.20200721   Last edit: 2020-07-21 CHP", comments = c(" Coefficients presented here differ from those used in previous", 
" model versions. They have been developed by taking into account", 
" the characteristics of a limited number of groups of cultivars.", 
" The groupings are likely to change as more experience is gained,", 
" and they should should not be taken as 'fixed'.", " Users should be aware that some of the coefficients are likely", 
" to vary from region to region,reflecting either an incomplete", 
" understanding of the environmental physiology of wheat,or an", 
" inadequate incorporation of aspects of current understanding.", 
" For example,PARUE may vary from region to region,possibly", 
" because of variation in the proportion of diffuse radiation", 
" in the incoming solar and sky components,or because of", " differences in the contribution of photosynthetic surfaces", 
" not accounted for in the model (eg.awns,peduncles),or even", 
" because of differences in disease intensities.", "                        --MAX_RUE--  LEAF_APPEARANCE,AREA/WT,SENESCENCE TILLER_PRODUCTION ------TILLER_DEATH----- ROOTS -----CANOPY------  ------COMPOSITION-----  KILL STEM_SENECE", 
"                            1     2     3     4     5     6     7     8     9    10    11    12    13    14    15    16    17    18    19    20    21    22    23    24    25    26", 
"                         g/MJ  g/MJ   Lf#   Fac cm2/g   %/d GrStg GrStg   Lf# GrStg   Fac GrStg GrStg   Fac   Fac  cm/d    cm Score   Exp     %     %     %     %    oC GrStg GrStg", 
" COEFF   DEFINITION", " =====   ==========", " AWNS    Awn score (0-10;10=very long)", 
" ECO#    Ecotype code (text)", " GM%H    Grain moisture percentage at harvest (%)", 
" GN%MN   Minimum grain nitrogen (%)", " GN%S    Standard grain nitrogen concentration (%)", 
" HTSTD   Standard canopy height (cm)", " KCAN    PAR extinction coefficient (#)", 
" LSENI   Leaf senescence,intermediate phases (%/standard day)", 
" LSPHE   Leaf senescence (final) phase end stage (GrowthStage)", 
" LSPHS   Leaf senescence (final) phase start stage (GrowthStage)", 
" PARU2   PAR conversion factor,after change (g dry matter/MJ)", 
" PARUE   PAR conversion factor,standard (g dry matter/MJ)", 
" PHFn    Factor by which PHINTS multiplied -> PHINT for particular phase (#)", 
" PHLn    Leaf # at end of phyllochron phase (ie,at which PHINT changes) (#)", 
" RDGS    Root depth growth rate,standard (cm/standard day)", 
" RS%A    Reserves concentration in tops at start of anthesis (%)", 
" SLAS    Specific leaf area,standard (cm2/g)", " SSPHE   Stem senescence (final) phase end stage (GrowthStage)", 
" SSPHS   Stem senescence (final) phase start stage (GrowthStage)", 
" TDFAC   Tiller death factor (%/st.day when tiller wt 2xstandard wt)", 
" TDPHE   Tiller death phase end stage (GrowthStage)", " TDPHS   Tiller death phase start stage (GrowthStage)", 
" TDSF    Tiller death stress factor (#;0,2->no,full stress acceleration)", 
" TIFAC   Tiller initiation (rate) factor (fr of phyllochron based) (#)", 
" TIL#S   Tillering phase (production) start stage (leaf #)", 
" TILPE   Tillering phase (production) end (GrowthStage)", " TKFH    Cold tolerance when fully hardened (oC)"
))
palderman/DSSAT documentation built on Feb. 24, 2024, 4:38 a.m.