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119
RBBGCMuso/inst/examples/hhs/CO2.txt
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119
RBBGCMuso/inst/examples/hhs/CO2.txt
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@ -0,0 +1,119 @@
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|||||||
|
1900 296.10
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||||||
|
1901 296.10
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||||||
|
1902 296.50
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||||||
|
1903 296.80
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||||||
|
1904 297.20
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||||||
|
1905 297.60
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||||||
|
1906 298.10
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||||||
|
1907 298.50
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||||||
|
1908 298.90
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||||||
|
1909 299.30
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||||||
|
1910 299.70
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||||||
|
1911 300.10
|
||||||
|
1912 300.40
|
||||||
|
1913 300.80
|
||||||
|
1914 301.10
|
||||||
|
1915 301.40
|
||||||
|
1916 301.70
|
||||||
|
1917 302.10
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||||||
|
1918 302.40
|
||||||
|
1919 302.70
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||||||
|
1920 303.00
|
||||||
|
1921 303.40
|
||||||
|
1922 303.80
|
||||||
|
1923 304.10
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||||||
|
1924 304.50
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||||||
|
1925 305.00
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||||||
|
1926 305.40
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||||||
|
1927 305.80
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||||||
|
1928 306.30
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||||||
|
1929 306.80
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||||||
|
1930 307.20
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||||||
|
1931 307.70
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||||||
|
1932 308.20
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||||||
|
1933 308.60
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||||||
|
1934 309.00
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||||||
|
1935 309.40
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||||||
|
1936 309.80
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||||||
|
1937 310.00
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||||||
|
1938 310.20
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||||||
|
1939 310.30
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||||||
|
1940 310.40
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||||||
|
1941 310.40
|
||||||
|
1942 310.30
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||||||
|
1943 310.20
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||||||
|
1944 310.10
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||||||
|
1945 310.10
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||||||
|
1946 310.10
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||||||
|
1947 310.20
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||||||
|
1948 310.30
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||||||
|
1949 310.50
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||||||
|
1950 310.70
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||||||
|
1951 311.10
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||||||
|
1952 311.50
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||||||
|
1953 311.90
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||||||
|
1954 312.40
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||||||
|
1955 313.00
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||||||
|
1956 313.60
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||||||
|
1957 314.20
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||||||
|
1958 314.90
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||||||
|
1959 315.79
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||||||
|
1960 316.61
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||||||
|
1961 317.33
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||||||
|
1962 318.08
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||||||
|
1963 318.70
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||||||
|
1964 319.36
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||||||
|
1965 320.02
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||||||
|
1966 321.09
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||||||
|
1967 321.99
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||||||
|
1968 322.93
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||||||
|
1969 324.21
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||||||
|
1970 325.24
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||||||
|
1971 326.06
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1972 327.18
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||||||
|
1973 328.84
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|
1974 329.73
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|
1975 330.73
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||||||
|
1976 331.83
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||||||
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1977 333.25
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||||||
|
1978 334.60
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1979 336.85
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|
1980 338.69
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||||||
|
1981 339.93
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|
1982 341.13
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||||||
|
1983 342.78
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||||||
|
1984 344.42
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|
1985 345.90
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|
1986 347.15
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|
1987 348.93
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1988 351.48
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1989 352.91
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1990 354.19
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1991 355.59
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1992 356.37
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1993 357.04
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1994 358.88
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1995 360.88
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1996 362.64
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1997 363.76
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1998 366.63
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1999 368.31
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2000 369.48
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2001 372.59
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2002 374.37
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2003 378.04
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2004 380.88
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2005 383.88
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2006 385.64
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2007 385.76
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2008 386.13
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2009 387.37
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2010 389.85
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2011 391.62
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2012 393.82
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2013 396.48
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2014 398.61
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2015 400.00
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2016 401.00
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2017 402.00
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2018 404.00
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119
RBBGCMuso/inst/examples/hhs/Ndep.txt
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119
RBBGCMuso/inst/examples/hhs/Ndep.txt
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@ -0,0 +1,119 @@
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1900 0.0003911
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1901 0.0003922
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||||||
|
1902 0.0003952
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||||||
|
1903 0.0003982
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1904 0.0004012
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1905 0.0004043
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|
1906 0.0004073
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1907 0.0004103
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1908 0.0004133
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||||||
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1909 0.0004164
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1910 0.0004224
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|
1911 0.0004267
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|
1912 0.0004310
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1913 0.0004353
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|
1914 0.0004396
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||||||
|
1915 0.0004439
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|
1916 0.0004482
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||||||
|
1917 0.0004525
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|
1918 0.0004568
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1919 0.0004611
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1920 0.0004697
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1921 0.0004741
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|
1922 0.0004786
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|
1923 0.0004830
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|
1924 0.0004875
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||||||
|
1925 0.0004919
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|
1926 0.0004964
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1927 0.0005008
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1928 0.0005053
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|
1929 0.0005097
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|
1930 0.0005186
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1931 0.0005214
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|
1932 0.0005243
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|
1933 0.0005271
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|
1934 0.0005299
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||||||
|
1935 0.0005327
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|
1936 0.0005356
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|
1937 0.0005384
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1938 0.0005412
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1939 0.0005440
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1940 0.0005497
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1941 0.0005600
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1942 0.0005703
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|
1943 0.0005806
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1944 0.0005909
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|
1945 0.0006013
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|
1946 0.0006116
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|
1947 0.0006219
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|
1948 0.0006322
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|
1949 0.0006425
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||||||
|
1950 0.0006632
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|
1951 0.0006775
|
||||||
|
1952 0.0006919
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||||||
|
1953 0.0007063
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|
1954 0.0007207
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|
1955 0.0007350
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|
1956 0.0007494
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1957 0.0007638
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1958 0.0007782
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1959 0.0007925
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1960 0.0008213
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1961 0.0008407
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1962 0.0008601
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1963 0.0008795
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1964 0.0008989
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1965 0.0009183
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1966 0.0009378
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1967 0.0009572
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1968 0.0009766
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1969 0.0009960
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1970 0.0010348
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|
1971 0.0010591
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|
1972 0.0010465
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|
1973 0.0010524
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|
1974 0.0010582
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|
1975 0.0010641
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|
1976 0.0010699
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|
1977 0.0010758
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|
1978 0.0010816
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|
1979 0.0010875
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|
1980 0.0010933
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|
1981 0.0010992
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|
1982 0.0011050
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|
1983 0.0011109
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1984 0.0011167
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1985 0.0011226
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1986 0.0011284
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1987 0.0011343
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1988 0.0011401
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1989 0.0011460
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1990 0.0011519
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|
1991 0.0011577
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1992 0.0011636
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|
1993 0.0011694
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|
1994 0.0011753
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1995 0.0011811
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1996 0.0011870
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1997 0.0011928
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1998 0.0011987
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1999 0.0012045
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2000 0.0012104
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|
2001 0.0012239
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2002 0.0012347
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|
2003 0.0012654
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2004 0.0012762
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2005 0.0012870
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2006 0.0012977
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2007 0.0013085
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2008 0.0013192
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2009 0.0013200
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2010 0.0013407
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2011 0.0013515
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2012 0.0013722
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2013 0.0013830
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2014 0.0013938
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2015 0.0014010
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2016 0.0014020
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2017 0.0014040
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2018 0.0014050
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138
RBBGCMuso/inst/examples/hhs/c3grass_muso6.epc
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138
RBBGCMuso/inst/examples/hhs/c3grass_muso6.epc
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ECOPHYS FILE - C3 grass muso6
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----------------------------------------------------------------------------------------
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FLAGS
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0 (flag) biome type flag (1 = WOODY 0 = NON-WOODY)
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0 (flag) woody type flag (1 = EVERGREEN 0 = DECIDUOUS)
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1 (flag) photosyn. type flag (1 = C3 PSN 0 = C4 PSN)
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----------------------------------------------------------------------------------------
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PLANT FUNCTIONING PARAMETERS
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0 (yday) yearday to start new growth (when phenology flag = 0)
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364 (yday) yearday to end litterfall (when phenology flag = 0)
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1.0 (prop.) transfer growth period as fraction of growing season (when transferGDD_flag = 0)
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1.0 (prop.) litterfall as fraction of growing season (when transferGDD_flag = 0)
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0 (Celsius) base temperature
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-9999 (Celsius) minimum temperature for growth displayed on current day (-9999: no T-dependence)
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-9999 (Celsius) optimal1 temperature for growth displayed on current day (-9999: no T-dependence)
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-9999 (Celsius) optimal2 temperature for growth displayed on current day (-9999: no T-dependence)
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-9999 (Celsius) maxmimum temperature for growth displayed on current day (-9999: no T-dependence)
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-9999 (Celsius) minimum temperature for carbon assimilation on current day (-9999: no T-dependence)
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-9999 (Celsius) optimal1 temperature for carbon assimilation on current day (-9999: no T-dependence)
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-9999 (Celsius) optimal2 temperature for carbon assimilation on current day (-9999: no T-dependence)
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-9999 (Celsius) maxmimum temperature for carbon assimilation on current day (-9999: no T-dependence)
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1.0 (1/yr) annual leaf and fine root turnover fraction
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0.00 (1/yr) annual live wood turnover fraction
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0.0 (1/yr) annual fire mortality fraction
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0.01 (1/vegper) whole-plant mortality fraction in vegetation period
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36.6 (kgC/kgN) C:N of leaves
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45.0 (kgC/kgN) C:N of leaf litter, after retranslocation
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50.0 (kgC/kgN) C:N of fine roots
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36.6 *(kgC/kgN) C:N of fruit
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36.6 (kgC/kgN) C:N of soft stem
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0.0 *(kgC/kgN) C:N of live wood
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0.0 *(kgC/kgN) C:N of dead wood
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0.4 (kgC/kgDM) dry matter carbon content of leaves
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0.4 (kgC/kgDM) dry matter carbon content of leaf litter
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0.4 (kgC/kgDM) dry matter carbon content of fine roots
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0.4 *(kgC/kgDM) dry matter carbon content of fruit
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0.4 (kgC/kgDM) dry matter carbon content of soft stem
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0.4 *(kgC/kgDM) dry matter carbon content of live wood
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0.4 *(kgC/kgDM) dry matter carbon content of dead wood
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0.68 (DIM) leaf litter labile proportion
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0.23 (DIM) leaf litter cellulose proportion
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0.34 (DIM) fine root labile proportion
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0.44 (DIM) fine root cellulose proportion
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0.68 *(DIM) fruit litter labile proportion
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0.23 *(DIM) fruit litter cellulose proportion
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0.68 (DIM) soft stem litter labile proportion
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0.23 (DIM) soft stem litter cellulose proportion
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0.00 *(DIM) dead wood cellulose proportion
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0.01 (1/LAI/d) canopy water interception coefficient
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0.7 (DIM) canopy light extinction coefficient
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0.6 (g/MJ) potential radiation use efficiency
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0.781 (DIM) radiation parameter1 (Jiang et al.2015)
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-13.596 (DIM) radiation parameter2 (Jiang et al.2015)
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2.0 (DIM) all-sided to projected leaf area ratio
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2.0 (DIM) ratio of shaded SLA:sunlit SLA
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0.3 (DIM) fraction of leaf N in Rubisco
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0.03 (DIM) fraction of leaf N in PEP Carboxylase
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0.002 (m/s) maximum stomatal conductance (projected area basis)
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0.00006 (m/s) cuticular conductance (projected area basis)
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0.039 (m/s) boundary layer conductance (projected area basis)
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1.0 (m) maximum height of plant
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0.8 (kgC) stem weight corresponding to maximum height
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0.5 (dimless) plant height function shape parameter (slope)
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1.0 (m) maximum depth of rooting zone
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2.67 (DIM) root distribution parameter
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0.4 (kgC) root weight corresponding to max root depth
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0.5 (dimless) root depth function shape parameter (slope)
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1000 (m/kg) root weight to rooth length conversion factor
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0.3 (prop.) growth resp per unit of C grown
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0.195 (kgC/kgN/d) maintenance respiration in kgC/day per kg of tissue N
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0.1 (DIM) theoretical maximum prop. of non-structural and structural carbohydrates
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0.24 (DIM) prop. of non-structural carbohydrates available for maintanance respiration
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0.0048 (kgN/m2/yr) symbiotic+asymbiotic fixation of N
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0 (day) time delay for temperature in photosynthesis acclimation
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----------------------------------------------------------------------------------------
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CROP SPECIFIC PARAMETERS
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1 (DIM) number of phenophase of germination (from 1 to 7; 0: NO specific)
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2 (DIM) number of phenophase of emergence (from 1 to 7; 0: NO specific)
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0.5 (prop.) critical VWCratio (prop. to FC-WP) in germination
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0 (DIM) number of phenophase of photoperiodic slowing effect (from 1 to 7; 0: NO effect)
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20 (hour) critical photoslow daylength
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0.005 (DIM) slope of relative photoslow development rate
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0 (DIM) number of phenophase of vernalization (from 1 to 7; 0: NO effect)
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0 (Celsius) critical vernalization temperature 1
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5 (Celsius) critical vernalization temperature 2
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8 (Celsius) critical vernalization temperature 3
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15 (Celsius) critical vernalization temperature 4
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0.04 (DIM) slope of relative vernalization development rate
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50 (n) required vernalization days (in vernalization development rate)
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0 (DIM) number of flowering phenophase (from 1 to 7;0: NO effect)
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35 (Celsius) critical flowering heat stress temperature 1
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40 (Celsius) critical flowering heat stress temperature 2
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0.2 (prop.) theoretical maximum of flowering thermal stress mortality parameter
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----------------------------------------------------------------------------------------
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STRESS AND SENESCENCE PARAMETERS
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1.0 (prop) VWC ratio to calc. soil moisture limit 1 (prop. to FC-WP)
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0.95 (prop) VWC ratio to calc. soil moisture limit 2 (prop. to SAT-FC)
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0.4 (prop) minimum of soil moisture limit2 multiplicator (full anoxic stress value)
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1000 (Pa) vapor pressure deficit: start of conductance reduction
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2800 (Pa) vapor pressure deficit: complete conductance reduction
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0.03 (prop.) maximum senescence mortality coefficient of aboveground plant material
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0.02 (prop.) maximum senescence mortality coefficient of belowground plant material
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0.01 (prop.) maximum senescence mortality coefficient of non-structured plant material
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35 (Celsius) lower limit extreme high temperature effect on senescence mortality
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40 (Celsius) upper limit extreme high temperature effect on senescence mortality
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0.01 (prop.) turnover rate of wilted standing biomass to litter
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0.047 (prop.) turnover rate of non-woody cut-down biomass to litter
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0.01 (prop.) turnover rate of woody cut-down biomass to litter
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30 (nday) drought tolerance parameter (critical value of DSWS)
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----------------------------------------------------------------------------------------
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GROWING SEASON PARAMETERS
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5 (kg/m2) crit. amount of snow limiting photosyn.
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20 (Celsius) limit1 (under:full constrained) of HEATSUM index
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60 (Celsius) limit2 (above:unconstrained) of HEATSUM index
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0 (Celsius) limit1 (under:full constrained) of TMIN index
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||||||
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5 (Celsius) limit2 (above:unconstrained) of TMIN index
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|
4000 (Pa) limit1 (above:full constrained) of VPD index
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1000 (Pa) limit2 (under:unconstrained) of VPD index
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0 (s) limit1 (under:full constrained) of DAYLENGTH index
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0 (s) limit2 (above:unconstrained) of DAYLENGTH index
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|
10 (day) moving average (to avoid the effects of extreme events)
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|
0.10 (dimless) GSI limit1 (greater that limit -> start of vegper)
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0.01 (dimless) GSI limit2 (less that limit -> end of vegper)
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----------------------------------------------------------------------------------------
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|
PHENOLOGICAL (ALLOCATION) PARAMETERS (7 phenological phases)
|
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|
phase1 phase2 phase3 phase4 phase5 phase6 phase7 (text) name of the phenophase
|
||||||
|
10 200 500 200 400 200 100 (Celsius) length of phenophase (GDD)
|
||||||
|
0.3 0.3 0.3 0.3 0.3 0.3 0.3 (ratio) leaf ALLOCATION
|
||||||
|
0.52 0.52 0.52 0.52 0.52 0.52 0.52 (ratio) fine root ALLOCATION
|
||||||
|
0.0 0.0 0.0 0.0 0.0 0.0 0.0 (ratio) fruit ALLOCATION
|
||||||
|
0.18 0.18 0.18 0.18 0.18 0.18 0.18 (ratio) soft stem ALLOCATION
|
||||||
|
0 0 0 0 0 0 0 (ratio) live woody stem ALLOCATION
|
||||||
|
0 0 0 0 0 0 0 (ratio) dead woody stem ALLOCATION
|
||||||
|
0 0 0 0 0 0 0 (ratio) live coarse root ALLOCATION
|
||||||
|
0 0 0 0 0 0 0 (ratio) dead coarse root ALLOCATION
|
||||||
|
49 49 49 49 49 49 49 (m2/kgC) canopy average specific leaf area (projected area basis)
|
||||||
|
0.37 0.37 0.37 0.37 0.37 0.37 0.37 (prop.) current growth proportion
|
||||||
|
10000 10000 10000 10000 10000 10000 10000 (Celsius) maximal lifetime of plant tissue
|
||||||
6
RBBGCMuso/inst/examples/hhs/compile_log_linux.txt
Normal file
6
RBBGCMuso/inst/examples/hhs/compile_log_linux.txt
Normal file
@ -0,0 +1,6 @@
|
|||||||
|
System: Linux meteor30 4.19.0-6-amd64 #1 SMP Debian 4.19.67-2+deb10u2 (2019-11-11) x86_64 GNU/Linux
|
||||||
|
Compilation time: Mon 02 Dec 2019 02:03:10 PM CET
|
||||||
|
Compiler: gcc (Debian 8.3.0-6) 8.3.0
|
||||||
|
Compiler flags:
|
||||||
|
Model version: 6.0.3
|
||||||
|
|
||||||
33
RBBGCMuso/inst/examples/hhs/hhs.mgm
Normal file
33
RBBGCMuso/inst/examples/hhs/hhs.mgm
Normal file
@ -0,0 +1,33 @@
|
|||||||
|
MANAGEMENT_INFORMATION MuSo6
|
||||||
|
-------------------------------------------------------------------------------------------------------------------
|
||||||
|
PLANTING
|
||||||
|
0 (flag) flag of management action: 0 - no MGM, 1 - MGM information from file below
|
||||||
|
none
|
||||||
|
-------------------------------------------------------------------------------------------------------------------
|
||||||
|
THINNING
|
||||||
|
0 (flag) flag of management action: 0 - no MGM, 1 - MGM information from file below
|
||||||
|
none
|
||||||
|
-------------------------------------------------------------------------------------------------------------------
|
||||||
|
MOWING
|
||||||
|
1 (flag) flag of management action: 0 - no MGM, 1 - MGM information from file below
|
||||||
|
hhs.mow
|
||||||
|
-------------------------------------------------------------------------------------------------------------------
|
||||||
|
GRAZING
|
||||||
|
0 (flag) flag of management action: 0 - no MGM, 1 - MGM information from file below
|
||||||
|
none
|
||||||
|
-------------------------------------------------------------------------------------------------------------------
|
||||||
|
HARVESTING
|
||||||
|
0 (flag) flag of management action: 0 - no MGM, 1 - MGM information from file below
|
||||||
|
none
|
||||||
|
-------------------------------------------------------------------------------------------------------------------
|
||||||
|
PLOUGHING
|
||||||
|
0 (flag) flag of management action: 0 - no MGM, 1 - MGM information from file below
|
||||||
|
none
|
||||||
|
-------------------------------------------------------------------------------------------------------------------
|
||||||
|
FERTILIZING
|
||||||
|
0 (flag) flag of management action: 0 - no MGM, 1 - MGM information from file below
|
||||||
|
none
|
||||||
|
-------------------------------------------------------------------------------------------------------------------
|
||||||
|
IRRIGATING
|
||||||
|
0 (flag) flag of management action: 0 - no MGM, 1 - MGM information from file below
|
||||||
|
none
|
||||||
19
RBBGCMuso/inst/examples/hhs/hhs.mow
Normal file
19
RBBGCMuso/inst/examples/hhs/hhs.mow
Normal file
@ -0,0 +1,19 @@
|
|||||||
|
DATE afterLAI(m2/m2) transPART(%)
|
||||||
|
2007.06.06 0.5 90
|
||||||
|
2007.08.20 0.4 80
|
||||||
|
2008.06.06 0.5 90
|
||||||
|
2008.08.20 0.4 80
|
||||||
|
2009.06.06 0.5 90
|
||||||
|
2009.08.20 0.4 80
|
||||||
|
2010.06.06 0.5 90
|
||||||
|
2010.08.20 0.4 80
|
||||||
|
2011.06.06 0.5 90
|
||||||
|
2011.08.20 0.4 80
|
||||||
|
2012.06.06 0.5 90
|
||||||
|
2012.08.20 0.4 80
|
||||||
|
2013.06.06 0.5 90
|
||||||
|
2013.08.20 0.4 80
|
||||||
|
2014.06.06 0.5 90
|
||||||
|
2014.08.20 0.4 80
|
||||||
|
2015.06.06 0.5 90
|
||||||
|
2015.08.20 0.4 80
|
||||||
42344
RBBGCMuso/inst/examples/hhs/hhs.mtc43
Normal file
42344
RBBGCMuso/inst/examples/hhs/hhs.mtc43
Normal file
File diff suppressed because it is too large
Load Diff
57
RBBGCMuso/inst/examples/hhs/hhs.soi
Normal file
57
RBBGCMuso/inst/examples/hhs/hhs.soi
Normal file
@ -0,0 +1,57 @@
|
|||||||
|
SOILPROP FILE - hhs muso6
|
||||||
|
----------------------------------------------------------------------------------------
|
||||||
|
NITROGEN AND DECOMPOSITION PARAMETERS
|
||||||
|
0.02 (prop.) denitrification rate per g of CO2 respiration of SOM
|
||||||
|
0.2 (prop.) nitrification coefficient 1
|
||||||
|
0.07 (prop.) nitrification coefficient 2
|
||||||
|
0.02 (prop.) coefficient of N2O emission of nitrification
|
||||||
|
0.1 (prop.) NH4 mobilen proportion
|
||||||
|
1.0 (prop.) NO3 mobilen proportion
|
||||||
|
10 (m) e-folding depth of decomposition rate's depth scalar
|
||||||
|
0.002 (prop.) fraction of dissolved part of SOIL1 organic matter
|
||||||
|
0.002 (prop.) fraction of dissolved part of SOIL2 organic matter
|
||||||
|
0.002 (prop.) fraction of dissolved part of SOIL3 organic matter
|
||||||
|
0.002 (prop.) fraction of dissolved part of SOIL4 organic matter
|
||||||
|
----------------------------------------------------------------------------------------
|
||||||
|
RATE SCALARS
|
||||||
|
0.35 (prop) respiration fractions for fluxes between compartments (l1s1)
|
||||||
|
0.50 (prop) respiration fractions for fluxes between compartments (l2s2)
|
||||||
|
0.26 (prop) respiration fractions for fluxes between compartments (l4s3)
|
||||||
|
0.25 (prop) respiration fractions for fluxes between compartments (s1s2)
|
||||||
|
0.41 (prop) respiration fractions for fluxes between compartments (s2s3)
|
||||||
|
0.50 (prop) respiration fractions for fluxes between compartments (s3s4)
|
||||||
|
0.7 (1/day) rate constant scalar of labile litter pool
|
||||||
|
0.07 (1/day) rate constant scalar of cellulose litter pool
|
||||||
|
0.014 (1/day) rate constant scalar of lignin litter pool
|
||||||
|
0.07 (1/day) rate constant scalar of fast microbial recycling pool
|
||||||
|
0.014 (1/day) rate constant scalar of medium microbial recycling pool
|
||||||
|
0.0014 (1/day) rate constant scalar of slow microbial recycling pool
|
||||||
|
0.0001 (1/day) rate constant scalar of recalcitrant SOM (humus) pool
|
||||||
|
0.001 (1/day) rate constant scalar of physical fragmentation of coarse woody debris
|
||||||
|
----------------------------------------------------------------------------------------
|
||||||
|
CH4 PARAMETERS
|
||||||
|
212.5 (DIM) soil CH4 emission bulk density dependence parameter1
|
||||||
|
1.81 (DIM) soil CH4 emission bulk density dependence parameter2
|
||||||
|
-1.353 (DIM) soil CH4 emission soil water content dependence parameter1
|
||||||
|
0.2 (DIM) soil CH4 emission soil water content dependence parameter2
|
||||||
|
1.781 (DIM) soil CH4 emission soil water content dependence parameter3
|
||||||
|
6.786 (DIM) soil CH4 emission soil water content dependence parameter4
|
||||||
|
0.010 (DIM) soil CH4 emission soil temperature dependence parameter1
|
||||||
|
----------------------------------------------------------------------------------------
|
||||||
|
SOIL PARAMETERS
|
||||||
|
2 (m) depth of soil
|
||||||
|
6 (mm) limit of first stage evaporation
|
||||||
|
20.00 (mm) maximum height of pond water
|
||||||
|
-9999 (dimless) measured runoff curve number (-9999: no measured data, model estimation)
|
||||||
|
----------------------------------------------------------------------------------------
|
||||||
|
SOIL COMPOSITION AND CHARACTERISTIC VALUES (-9999: no measured data)
|
||||||
|
30.0 30.0 30.0 30.0 30.0 30.0 30.0 30.0 30.0 30.0 (%) sand percentage by volume in rock-free soil
|
||||||
|
50.0 50.0 50.0 50.0 50.0 50.0 50.0 50.0 50.0 50.0 (%) silt percentage by volume in rock-free soil
|
||||||
|
7.0 7.0 7.0 7.0 7.0 7.0 7.0 7.0 7.0 7.0 (dimless) soil pH (dimless) measured runoff curve number
|
||||||
|
-9999 -9999 -9999 -9999 -9999 -9999 -9999 -9999 -9999 -9999 (g/cm3) bulk density
|
||||||
|
-9999 -9999 -9999 -9999 -9999 -9999 -9999 -9999 -9999 -9999 (m3/m3) SWC at saturation
|
||||||
|
-9999 -9999 -9999 -9999 -9999 -9999 -9999 -9999 -9999 -9999 (m3/m3) SWC at field capacity
|
||||||
|
-9999 -9999 -9999 -9999 -9999 -9999 -9999 -9999 -9999 -9999 (m3/m3) SWC at wilting point
|
||||||
|
-9999 -9999 -9999 -9999 -9999 -9999 -9999 -9999 -9999 -9999 (m3/m3) SWC at hygroscopic water content
|
||||||
|
-9999 -9999 -9999 -9999 -9999 -9999 -9999 -9999 -9999 -9999 (dimless) drainage coefficient
|
||||||
|
-9999 -9999 -9999 -9999 -9999 -9999 -9999 -9999 -9999 -9999 (cm/day) hydraulic condictivity at saturation
|
||||||
BIN
RBBGCMuso/inst/examples/hhs/muso
Executable file
BIN
RBBGCMuso/inst/examples/hhs/muso
Executable file
Binary file not shown.
Loading…
Reference in New Issue
Block a user